WO2017032329A1 - 便携式充气包装装置及其制造方法和包装方法 - Google Patents

便携式充气包装装置及其制造方法和包装方法 Download PDF

Info

Publication number
WO2017032329A1
WO2017032329A1 PCT/CN2016/096698 CN2016096698W WO2017032329A1 WO 2017032329 A1 WO2017032329 A1 WO 2017032329A1 CN 2016096698 W CN2016096698 W CN 2016096698W WO 2017032329 A1 WO2017032329 A1 WO 2017032329A1
Authority
WO
WIPO (PCT)
Prior art keywords
package
inflatable
portable
air
packaged
Prior art date
Application number
PCT/CN2016/096698
Other languages
English (en)
French (fr)
Inventor
张嘉盈
吴志伟
Original Assignee
上海艾尔贝包装科技发展有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 上海艾尔贝包装科技发展有限公司 filed Critical 上海艾尔贝包装科技发展有限公司
Publication of WO2017032329A1 publication Critical patent/WO2017032329A1/zh

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/02Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage
    • B65D81/03Wrappers or envelopes with shock-absorbing properties, e.g. bubble films

Definitions

  • the present invention relates to an inflatable packaging device, and more particularly to a portable inflatable packaging device, a method of manufacturing the same, and a method of packaging.
  • the packaging box (packing box).
  • this traditional packaging method does not provide anti-collision, anti-collision and anti-fall functions. That is to say, during the transportation or storage process, the box or the box will be thrown and thrown, which may easily cause deformation, which may result in damage or deformation of the packaged article. Therefore, for some items with high packaging requirements, such as electronic digital products, plastic ceramics, biochemical products, food and medicine, etc., it is necessary to provide a buffering effect on the packaged articles to prevent the packaged articles from being damaged during transportation and storage.
  • Existing solutions, such as conventional paper packaging may be filled with a cushioning material such as a foam material inside the paper package to provide cushioning. However, when such a package and filled cushioning material are transported to the packaging site, the cost of shipping and storage is very expensive. Moreover, the cushioning foam pollutes the environment and is not environmentally friendly.
  • Another improvement is an air-filled bag that is currently available on the market, which is formed by a four-layer film through a series of heat-sealing processes, wherein an air-filled chamber is formed between the two outer film layers, and two inner film forms a one-way inflation valve. It is used to fill the corresponding plenum with gas and prevent gas in the plenum from leaking out.
  • the two outer film layers are folded to form a receiving chamber for accommodating the packaged articles, so that the packaged articles can be buffered on the respective sides by the inflatable packaging bag to prevent external impact stress from acting on the packaged articles, thereby preventing Damage to the packaged item.
  • the cushioning performance of a single-layer inflatable pouch formed by two outer layers of film is still limited.
  • the air in the pouch is not effectively dispersed, and the side of the pouch is inflated.
  • the wall cannot recover the shape in time, causing the impact stress to be too concentrated locally, so that the stress is transmitted to the packaged article, causing damage to the packaged article.
  • the Applicant's prior invention and utility model patent application discloses a number of inflated packaging bags that can be applied to a variety of different packaged articles to provide better package protection for the packaged articles, to facilitate storage of the packaged articles and transport.
  • most of the current inflatable bags on the market are only playing a bigger role in the transportation process. Once purchased by consumers, the inflatable bag is easily discarded by consumers. The main reasons are twofold. One is that in the modern life where people are increasingly pursuing aesthetics, the appearance of these inflatable bags is often not enough for the Aimei consumers to carry them; on the other hand, the portability of these inflatable bags is more portable. difference.
  • Portable electronic products In today's life, the replacement of portable electronic products is fast, and it is widely concerned and loved by people. Portable electronic products have also become a good choice for many consumers to give gifts to relatives and friends. The sales volume of major electronics stores is also very hot. It is necessary to provide a portable air-packing device that is lightweight, easy to carry, easy to access, and capable of protecting electronic products.
  • the Applicant has developed a portable inflatable package and its portable inflatable packaging device.
  • Another object of the present invention is to provide a portable combination of an inflatable package.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein the portable air-filled bag is suitable for packaging a portable electronic device.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein the portable air-filled bag is suitable for packaging portable electronic devices and accessories thereof.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein the portable air-filled bag is suitable for packaging articles that are required to be carried daily.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein in a particular application, the portable air-filled bag is suitable for packaging alcohol, such as red wine.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method, wherein the portable air-filled bag is used for packaging when it is packaged.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein the packaged package packaged by the portable air-filled bag is easily accessible.
  • Another object of the present invention is to provide a portable air-filled packaging device, a method of manufacturing the same, and a packaging method, wherein the portable inflatable packaging bag is convenient, quick, and easy to handle when packaged.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method, wherein the outer surface of the portable air-filled bag can be provided with various patterns and logos.
  • Another object of the present invention is to provide a portable inflatable packaging bag, a manufacturing method thereof and a packaging method, wherein the portable inflatable packaging bag has an opening, wherein the opening is adapted to be provided with an anti-counterfeiting mark when the opening is closed
  • Another object of the present invention is to provide a portable inflatable packaging device, a manufacturing method thereof and a packaging method, wherein the portable inflatable packaging bag is suitable for carrying, wherein when the consumer carries the portable inflatable packaging bag, it can help to be packaged.
  • the packaged product of the portable inflatable package is more securely packaged in the portable inflatable package.
  • Another object of the present invention is to provide a portable inflatable package and inflatable packaging device, a method of manufacturing the same, and a method of packaging, wherein the portable inflatable package is adapted to be disposed in a soft paper bag.
  • Another object of the present invention is to provide a portable air-filled pouch and an air-packing device, a method of manufacturing the same, and a method of packaging, wherein the portable pouch is adapted to be disposed in a portable package.
  • Another object of the present invention is to provide a portable inflatable packaging bag and an air-packing device, a manufacturing method thereof and a packaging method, wherein the air-packing device can provide good protection for the packaged article and has a consumer-like appearance. .
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a method of packaging, wherein the air-packing device is adapted to display information related to the packaged article, such as product logo, product advantages, performance, and method of use.
  • Another object of the present invention is to provide a portable air-packing device, a manufacturing method thereof and a package The method wherein the inflatable packaging device is adapted for hand-held, wherein when the consumer carries the portable inflatable package, the packaged package packaged in the portable inflatable package can be more securely packaged in the inflatable packaging device.
  • Another object of the present invention is to provide a portable air-packing device, a manufacturing method thereof and a packaging method, which can use functional materials to have various functions such as heat preservation and radiation protection, so as to meet transportation and storage requirements.
  • Another object of the present invention is to provide a portable air-packing device, a manufacturing method thereof and a packaging method, wherein the manufacturing method is simple, low in cost, and widely used.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method, that is, capable of satisfying the packaging requirements of the packaged object to be transported and stored, and capable of meeting the daily needs of carrying the packaged article.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method suitable for packaging a portable article.
  • Another object of the present invention is to provide a portable air-packing device, a manufacturing method thereof and a packaging method, wherein the air-packing device comprises an air-filled bag, wherein the air-filled bag includes a carrying portion, wherein the carrying portion is used for The inflatable package is conveniently carried by the consumer.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method, wherein the air-packing device comprises an air-filled bag and an outer bag, wherein the size and shape of the bag and the inflating The package is adapted such that the outer package can be packaged outside of the inflatable package.
  • Another object of the present invention is to provide a portable air-packing device, a method of manufacturing the same, and a packaging method, wherein the air-packing device comprises an air-filled package and an outer package assembly, wherein the outer package assembly is adapted to be provided with the packaged object Related Information.
  • Another object of the present invention is to provide a portable air-packing device, a manufacturing method thereof and a packaging method, wherein the air-packing device comprises an air-filled bag and a functional bag, wherein the function bag can provide a preset function for the packaged object. For example, heat preservation, radiation protection, etc., to meet transportation and storage needs.
  • a portable air-packing device for packaging an object to be packaged wherein the air-packing device comprises:
  • the inflatable packaging bag comprises an inflation cushioning body and a series of flat plastic sealing seams, wherein the inflation cushioning body comprises at least two layers of air chamber membranes, wherein the planar plastic sealing seam can mold the air chamber membrane to form a planar cushioning material;
  • the carrying device is used with the inflatable packaging device to be packaged in the inflatable package
  • the packaged bag is well cushioned and portable.
  • the inflatable package further comprises a series of three-dimensional plastic sealing seams, wherein the three-dimensional plastic sealing seam further molds the planar cushioning material to form the air-filled packaging bag to have a spatial stereo configuration and to accommodate the The three-dimensional packaging device for packaging articles, wherein the size and shape of the portable device are adapted to the inflatable packaging bag such that the portable device further packages the inflatable packaging bag that packages the packaged article.
  • the inflatable package further includes at least one inflation valve to facilitate inflation of the inflatable cushion
  • the carrying device includes a carrying body, wherein the carrying is carried by carrying the carrying body a package and the packaged package that is packaged in the aerated package.
  • the carrying device further comprises a carrying component, wherein the carrying component is disposed on the carrying body to facilitate carrying the carrying body.
  • the carrying body is disposed in the inflatable package for fixed connection with the inflatable package.
  • the carrier body is fixedly coupled to a portion of the inflatable package to facilitate display of the packaged packaged packaged in the inflatable package through the inflatable package.
  • the carrying device in a packaged state of the carrying device, forms a packaging cavity, wherein the packaging cavity is used to receive the inflatable packaging bag to package and pass the inflatable packaging bag Carrying the carrying body to carry the inflatable packaging bag and the packaged article packaged in the inflatable packaging bag.
  • the carrying device can be retracted to store, store and transport the portable device.
  • the means for contracting the carrying device is selected from the group consisting of folding and folding.
  • the material of the carrying body of the carrying device is selected from the group consisting of paper, cloth and plastic.
  • the portable air-packing device further includes a functional bag to provide a predetermined functional protection for the packaged package packaged in the air-filled package.
  • the portable air-packing device further includes a package, wherein the package can be packaged outside the inflatable package.
  • the inflatable package includes a portable component, wherein the portable component is disposed to the inflatable cushion to provide portability when the inflatable package is used alone.
  • the portable component includes a portable body and has a pair of portable apertures, wherein the portable aperture is formed in the portable body, wherein the portable body is formed with the inflation cushion.
  • the inflatable package includes a package body, a side wing cushion portion and a side package body, wherein the package body has a main receiving cavity, wherein the side wing buffer portion has a side wing buffer cavity, wherein The side package has a side receiving cavity, wherein the main receiving cavity, the side wing buffering cavity and the side receiving cavity are separately provided.
  • the planar molding seam comprises a series of bending seams, wherein the planar cushioning material The material is bent along the bent seam to form the package body, the side flap portion, and the side package.
  • the meandering seam comprises a series of side wing bending seams, a series of main package bending seams and a series of side wrapping bending seams, wherein the side wing bending seams are disposed on the side wing cushioning portions, wherein the main package bending seam is disposed on the package body, wherein the side package bending seam is disposed on the side package body.
  • the three-dimensional plastic seal seam comprises a row of first split chamber slits, wherein the first split chamber slit is for spacing the main receiving chamber and the side wing buffer chamber.
  • the three-dimensional molding seam further includes a row of second compartment slits, wherein the second compartment seam is for spacing the main receiving cavity and the side receiving cavity.
  • the three-dimensional plastic seal seam further includes a transverse plastic seal seam, wherein the transverse plastic seal seam is disposed on a bottom side of the package body to seal the package body on the bottom side.
  • the inflatable package further includes a side pressure buffer portion, wherein the side pressure buffer portion cooperates with the package body, the side wing buffer portion and the side package body to be packaged in the The packaged package of the inflatable package provides multiple levels of cushioning.
  • the primary containment chamber has an opening, wherein the inflatable package further includes a closure device, wherein the closure device is used to close the opening.
  • the inflatable package includes a package body and at least one standing portion, wherein the standing portion is coupled to the package body and enables the inflatable package to stand.
  • the planar molding seam comprises a plurality of rows of bending seams, wherein the planar cushioning material is bent along the bending seams to provide the inflatable packaging bag with a predetermined shape.
  • the three-dimensional plastic sealing seam includes one or more longitudinal plastic sealing slits respectively provided at edges of the two sides of the inflatable cushioning body to connect the inflation cushioning body to form the main receiving cavity.
  • Figure 1 illustrates an inflatable package inflatable packaging device in accordance with a preferred embodiment of the present invention.
  • FIG. 2 is a perspective view of an inflatable package of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 3 is a cross-sectional view of the inflatable package of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 4 is a developmental view of an unfilled state of the inflatable package of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 5 illustrates a first embodiment of the inflatable package inflatable packaging device in accordance with the above preferred embodiment of the present invention. Carrying device.
  • Figure 6 illustrates a package of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 7 illustrates a functional bag of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 8A illustrates a state of use of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 8B illustrates another use state of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 9 illustrates an alternative embodiment of the functional bag of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • FIG. 10A illustrates an alternate embodiment of the carrying device of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • Figure 10B illustrates another alternative embodiment of the carrying device of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiments of the present invention.
  • FIG. 10C illustrates another alternative embodiment of the carrying device of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiments of the present invention.
  • FIG. 11A-11D illustrate an alternate embodiment of the inflatable package of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • FIGS 12A-12B illustrate another alternative embodiment of the inflatable package of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiments of the present invention.
  • FIGS 13A-13E illustrate another alternative embodiment of the inflatable package of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiments of the present invention.
  • Figure 14 is a cross-sectional structural view of an inflation valve of an air-filled pouch in accordance with the above-described preferred embodiment of the present invention and its alternative embodiment.
  • Figure 15 is a cross-sectional structural view showing a modified embodiment of an inflation valve of an air-filled pouch according to the above preferred embodiment of the present invention and its alternative embodiment.
  • Figure 16 is a cross-sectional structural view showing another modified embodiment of the inflation valve of the inflatable package according to the above preferred embodiment of the present invention and its alternative embodiment.
  • FIG. 1 of the accompanying drawings illustrates a portable air-packing device in accordance with a preferred embodiment of the present invention.
  • the portable air-packing device includes an inflatable package 1 and a carrying device 9, wherein the portable device 9 is disposed outside the inflatable package 1 to further package the inflatable package 1.
  • the carrying device 9 includes a carrying body 91 and a carrying member 92, wherein the shape and size of the carrying body 91 are adapted to the shape and size of the inflatable packaging bag 1 so that the inflatable packaging bag 1 can be packaged by the carrying body. .
  • the carrying member 92 is disposed on the carrying body 91 to facilitate carrying the carrying body 91 and the air-packing bag 1 packaged in the carrying body 91 through the carrying member 92, and further conveniently packaging the same in the air-filled bag
  • the packaged object W of 1 is carried.
  • the carrying device 9 packages the inflated package 1
  • the carrying device 9 is in a packaged state, wherein in the packaged state of the carrying device 9, the carrying device 9 forms a packaging cavity 900, wherein
  • the packaging chamber is used to accommodate the inflatable packaging bag 1 to package the inflatable packaging bag 1.
  • the shape and size of the packaging cavity 900 are adapted to the outer shape and size of the inflatable packaging bag 1 so that the inflatable packaging bag 1 can be securely packaged.
  • the packaging chamber 900 is sufficiently secured to ensure the aesthetic appearance of the overall appearance of the inflated packaging device and the security of the packaged article W in the packaged state of the portable device 9.
  • the portable device 9 when the portable device 9 does not package the inflatable packaging bag 1, the portable device 9 can be stored by folding, folding, or the like, so that the portable device 9 is in a storage state. .
  • the carrying device 9 occupies a small space and is easily carried, transported, stored and stored.
  • such a stored state of the carrying device 9 can be realized by folding, folding, or the like, and the present invention is not limited in this respect.
  • the carrying device 9 is embodied as a soft bag, such as a bag, a paper bag, a plastic bag or the like.
  • the "soft bag” refers to a bag device that can form the package state of the portable device 9 and can be stored in the stored state of the portable device 9.
  • the shape of the material and the specific storage state of the present invention is not limited as long as the above requirements can be attained.
  • FIGS 2 to 4 of the accompanying drawings illustrate the inflatable package 1 of the inflatable air-packing device in accordance with the above-described preferred embodiment of the present invention.
  • the inflatable package 1 has an inflatable structure to provide a gas buffering effect for various packaged articles such as electronic products, foods, medical products, chemical raw materials, biological materials, plastic ceramics, fast moving consumer goods, etc. after inflation. And when not in use, it can be stored and transported without being inflated, and then inflated on site during use, which is very convenient to use.
  • the inflatable package 1 can be embodied as an air cushioning material, that is, the charged gas is exemplified by air.
  • the charged gas is exemplified by air.
  • the inflation package bag 1 may be filled with a fluid other than a gas as needed. In this preferred embodiment, it can be formed into a three-dimensional package after inflation to provide an air cushioning effect for a packaged item.
  • the inflatable package 1 comprises at least one inflatable cushion body 10, that is, a three-dimensional packaging bag formed by one inflatable cushion body 10 or a plurality of inflatable cushion bodies 10 are formed by plastic sealing such as bonding or heat sealing.
  • Three-dimensional packaging bag In the example shown in Figures 2 to 4 of the present invention, it is provided by an inflation buffer Body 10 is formed. More specifically, referring to FIG. 14, the gas cushion body 10 includes at least two layers of gas chamber films 11 and 12.
  • the three-dimensional package comprising one or more associated gas storage units 13 is formed by a series of planar plastic seals 30 and three-dimensional plastic seals 40.
  • a gas storage chamber 14 for storing gas is formed in each of the gas storage units 13.
  • planar molding seam 30 is used to plastically form a multilayer film to form a planar cushioning material as shown in FIG. 4, which is used to further mold the above-mentioned planar cushioning material.
  • the inflatable package 1 forms the three-dimensional packaging device having a spatial three-dimensional configuration and capable of accommodating the packaged article, as shown in FIG.
  • the planar molding seam 30 and the three-dimensional molding seam 40 can join the multilayer films together by bonding or heat sealing.
  • the planar molding seam 30 and the three-dimensional molding seam 40 may both be formed by a heat sealing process.
  • the planar molding slit 30 includes a plurality of rows of slits 31 that connect the two layers of the chamber films 11 and 12 to divide the aerated cushioning body 10 into a plurality of gas storage units 13.
  • each of the slits 31 is formed by a heat sealing process which heat seals the two gas chamber films 11 and 12 so that a column of slits 31 is formed between the adjacent two gas storage units 13.
  • the partition 31 may be a continuous heat seal line such that the plurality of gas storage units 13 are independent of each other. It can be understood that, as shown in FIG. 4, the two rows of partition slits 31 of the top side and the bottom side can respectively become the top side boundary seam and the bottom side boundary seam of the inflation cushion body 10.
  • the partition slit 31 may also be an intermittent heat seal line, thereby allowing the plurality of gas storage units 13 to communicate with each other.
  • the gas storage unit 13 may be in various shapes such as a strip shape, a circular shape, a polygonal shape or other irregular shape.
  • the inflation cushion body 10 of the present invention may include a plurality of side by side arrangements. Inflatable column, but this party is not limited in this regard.
  • the inflatable package 1 further includes an inflation valve 20 formed of at least two layers of valve membranes 21 and 22, the valve membranes 21 and 22 of the inflation valve 20 and the plenum
  • the membranes 11 and 12 are disposed superposed on each other, and an intake passage 23 for inflating the gas storage chamber 14 is formed between the valve membranes 21 and 22. It is to be understood that the lengths of the valve films 21 and 22 are shorter than the plenum films 11 and 12.
  • the air pressure in the air reservoir 14 acts on the valve membranes 21 and 22 to
  • the valve membranes 21 and 22 are attached to one of the plenum membranes 11 or 12 to close the intake passage 23 so that the inflation valve 20 functions as a one-way valve.
  • At least one intake passage 23 is formed in each of the gas storage units 13, and each of the gas storage units 13 is independent of each other. When one of the gas storage units 13 is damaged and leaks, the other gas storage units 13 are not affected. Can play an air cushioning effect.
  • the plenum films 11 and 12 of the plenum 10 and the valve films 21 and 22 of the inflation valve 20 can be made of various suitable film materials, such as polyethylene film and polypropylene film, respectively.
  • the present invention is not limited in this respect, for example, a polyvinyl chloride film, a polyester film, a polystyrene film or a composite film, as long as it is a suitable flexible film.
  • the valve films 21 and 22 of the inflation valve 20 may also be self-adhesive films modified by adding chemical components to the above-mentioned film.
  • the aerated cushioning body 10 further includes a main passage unit 15 connected to each of the gas storage units 13. Preferably, it extends integrally to each of the gas storage units 13. More specifically, in this preferred embodiment, the main channel unit 15 is perpendicular to the direction in which the gas storage unit 13 extends. For example, in this embodiment, the respective gas storage units 13 extend in the lateral direction, and the main channel unit 15 extends in the longitudinal direction.
  • the main passage unit 15 forms a main passage 151, and the main passage 151 has an inflation port 152. When the position of the inflation port 152 is provided with an inflation nozzle and an inflation operation is performed, gas enters from the inflation port 152 in the longitudinal direction.
  • the main passage 151 enters the respective gas storage units 13 in the lateral direction, and after the predetermined air pressure is reached in each of the gas storage chambers 14, the valve membranes 21 and 22 of the inflation valve 20 are attached to one of the gas chambers.
  • the membrane 11 or 12 is self-sealing to prevent the charged gas from re-infiltrating into the main passage 151.
  • the main channel unit 15 can be formed by two layers of plenum films 11 and 12, or by two layers of valve films 21 and 22, or by one of the plenum films 11 or 12 and one of the valve films 21 or 22 are formed.
  • the planar molding seam 30 further includes a continuous sealed one side seal 32 on the left and right sides of the inflatable cushion body 10 and a continuous sealed main passage sealing slit 33 on the left side, wherein the left side
  • the main passage 151 is formed between the side seal 32 and the main passage seal slit 33.
  • the side seal 32 is formed by a plastic sealing process such as bonding or heat sealing and sealingly connects the two layers of the gas chamber films 11 and 12, wherein the main channel sealing slit 33 is formed by a molding process such as bonding or heat sealing.
  • the two-layer air chamber films 11 and 12 and the two-layer valve films 21 and 22 are respectively connected together, as shown in FIG.
  • the gas chamber membrane 11 and the valve membrane 21 are heat-sealed, and the gas chamber membrane 12 and the valve membrane 22 are heat-sealed.
  • each of the gas storage units 13 includes two rows of mutually spaced air guiding slits 34 adjacent to the main passage 151, which are connected by heat sealing to the valve membranes 21 and 22 and one of the gas chamber membranes. 11 or 12 is formed, and the intake passage 23 formed by the valve membranes 21 and 22 is located between the two rows of air guiding slits 34.
  • valve films 21 and 22 are further heat-sealed to the plenum membrane 11 through a plurality of joint slits 35, such that when a predetermined gas pressure is reached in the plenum 14, the gas pressure acts on the valve membrane 21 and 22, and because the setting of the joint slit 35 is simultaneously pressed against the plenum film 11 and finally attached to the plenum film 11, the intake passage 23 is closed. That is, the joint slit 35 is heat-sealed to connect the two layers of the valve films 21 and 22 and one layer of the gas chamber film 11. Further, as shown in FIG.
  • each of the joint slits 35 is designed such that it further functions to prevent backflow of gas, that is, when the gas in the gas storage chamber 14 wants to flow back, it is The joint seam 35 is blocked and cannot be easily reverse osmosis into the main passage 151.
  • the inlet passages 23 formed by the valve membranes 21 and 22 of the inflation valve 20 may be formed by providing a heat-resistant barrier device, and after the heat sealing process, the removal is performed. Heat resistant barrier.
  • a heat-resistant layer 24 is disposed between the valve films 21 and 22 of the inflation valve 20, as shown in Figs. 4 and 14, for example, may be a heat-resistant ink attached to one of them.
  • the main passage 151 is formed by two layers of plenum films 11 and 12, wherein the heat-resistant layer 24 and the valve films 21 and 22 each have an extension into the main passage 151, wherein the flat plastic seal 30 further includes a row of spaced apart seams 36 arranged in the longitudinal direction corresponding to the position of the extension of the heat resistant layer 24.
  • the joint slit 36 connects the two-layered gas chamber films 11 and 12 and the two-layer valve films 21 and 22, respectively, and the two-layer valve films 21 and 22 are not heat-sealed, and the joint
  • the slit 36 is disposed such that when the gas cushioning body 10 is inflated, after the gas enters the main passage 151, the adjacent valve membranes 21 and 22 can be expanded together with the correspondingly connected gas chamber membranes 11 and 12 to open the corresponding one. Intake passage 23.
  • the planar molding seam 30 also includes a plurality of rows of bent seams 37 that are intermittently heat sealed.
  • the bend seam 37 is formed by a molding process such as bonding or heat sealing.
  • the inflated cushioning body 10 is adapted to be bent along the bending seam 37 such that the inflating cushion body 10 forms a plurality of side walls. More specifically, the bending slits 37 divide the respective gas storage units 13 into a plurality of sub-gas storage units 131, and the bending slits may be located at a central position of the gas storage unit 13 and form a communication passage 132 on both sides, such that the phases
  • the adjacent sub-gas storage units 131 are connected to each other as shown in FIG.
  • the bending slit can also be located at two sides of the gas storage unit 13 , and the communication passage 132 is located at a middle position of the gas storage unit 13 . Accordingly, it will be understood that each of the columns of the bend slits 37 heat seals the two layers of the plenum films 11 and 12.
  • the three-dimensional plastic sealing seam 40 comprises a series of partial slits 41, wherein the partial slits 41 are used to divide the inflatable packaging bag 1 formed by the inflatable cushioning body 10 into a plurality of different receiving spaces.
  • the compartment slits 41 cause the inflated package 1 to form a main main receiving chamber 100a, a side wing buffer chamber 100b and a side receiving chamber 100c, respectively.
  • the compartment slit 41 includes a row of first compartment slits 411 and a row of second compartment slits 412, wherein the first compartment slits 411 are formed by a plastic sealing process such as bonding or heat sealing and sealingly joining the folded plenum films 11 And a four-layer film formed of 12, wherein the second compartment slit 412 is formed by a molding process such as bonding or heat sealing and sealing a six-layer film formed by joining the folded cell films 11 and 12.
  • the first compartment slit 411 and the row of second compartment slits 412 are disposed such that the inflatable cushion body 10 of the inflatable package 1 forms a package body 10a, a side wing cushioning portion 10b, and a side package body 10c.
  • each of the gas storage units 13 is provided with a first compartment slit 411 and a second compartment slit 412.
  • the first compartment slit 411 and the second compartment slit 412 are such that each of the gas storage units 13 forms a pair of main body gas storage units 13a, one side wing gas storage unit 13b and one side gas storage unit 13c at opposite positions.
  • the main body air storage units 13a are connected to each other to form the package main body 10a.
  • the side air storage unit 13b is folded in a specific manner and sealed by the first partial slit 411 to form the side cushion portion 10b, and the side cushion portion 10b is formed into the side buffer chamber 100b.
  • the side air storage unit 13c is folded in a specific manner and sealed by the second compartment slit 412 to form the side package 10c, and the side package 10c is formed into the side accommodating cavity 100c. More specifically, the first compartment slit 411 and the second compartment slit 412 are located at a middle position of the gas storage unit 13, and the communication passages 132 are respectively formed on both sides, so that the main body of each of the gas storage units 13 is stored. The gas unit 13a and the side air storage unit 13b are in communication with each other. Can It is understood that the first compartment slit 411 and the second compartment slit 412 may also be located on both sides of the gas storage unit 13 , and the communication passage 132 is located at a middle position of the gas storage unit 13 .
  • the first compartment slit 411 is heat-sealed to connect two layers of the four-layer gas chamber film formed by folding the gas chamber films 11 and 12. Specifically, after the inflation cushion body 10 is folded, the four-layer air chamber film formed at the corresponding position formed by overlapping the gas chamber films 11 and 12 through the first compartment slit 411 is joined together. It should be noted that the first compartment slit 411 may be formed by one sealing after the inflation cushion body 10 is pre-folded, or may be first sealed in the plane cushioning material, and then folded after being folded. A secondary heat seal is formed at the corresponding position.
  • the second compartment slit 412 is heat sealed to join the six-layer plenum film formed after the plenum films 11 and 12 are folded. It is worth mentioning that the second compartment slit 412 can be formed by one sealing after the inflation cushion body 10 is folded in half, or can be first sealed in the plane cushioning material, and then folded in the corresponding position after folding. A secondary heat seal is formed on the top.
  • the second compartment slit 412 is formed by a plastic sealing process such as bonding or heat sealing, and the left and right sides of the gas cushioning body 10 formed by the gas chamber films 11 and 12 are sealed to a preheating of the gas cushioning body 10.
  • the position is set such that the package main body 10a and the side package 10c respectively form accommodation spaces spaced apart from each other.
  • the left and right sides of the air cushion body 10 are heat sealed to the same position of the air cushion body 10 to simplify the production process and sufficiently ensure the safety and stability of the air bag 1.
  • the invention is not limited in this respect. It should be understood by those skilled in the art that, according to other embodiments of the present invention, the left and right sides of the inflatable cushion body 10 can also be heat sealed at different positions of the inflatable cushion body 10 to meet different packaging requirements.
  • the second compartment slit 412 heat seals the left and right sides of the inflatable cushion body 10 at the outer side of the side seal 32.
  • the invention is not limited in this respect. It should be understood by those skilled in the art that, according to other embodiments of the present invention, the position of the second compartment slit 412 to heat seal the left and right sides of the inflatable cushion body 10 may also be set on the sealing line formed by the side seal 32. on.
  • the second compartment slit 412 may be formed by one sealing after the inflation cushion body 10 is preliminarily folded, or may be first sealed in the plane cushioning material, and then double-sealed at the corresponding position after folding. Formed together. The invention is not limited in this respect.
  • the second compartment slit 412 not only forms the package body 10a and the side package body 10c into mutually spaced accommodation spaces, but also seals the inflation cushion body.
  • the left and right sides of 10 are merely examples of the invention and are not limiting. According to other embodiments of the present invention, the second compartment slit 412 may not be used to seal the left and right sides of the inflatable cushion body 10. Sealing the left and right sides of the inflatable cushion body 10 can also be achieved by other means.
  • the package body 10a formed by sealing the air cushion body 10 along the first compartment slit 411 and the second compartment slit 412 is composed of two parts connected to each other.
  • the three-dimensional plastic sealing seam 40 further includes a transverse plastic sealing slit 42 disposed on the bottom side of the packaging main body 10a to seal the two portions of the packaging main body 10a on the bottom side, thereby making the packaging main body 10a Forming a package front wall 101a And a package rear wall 102a.
  • the package front wall 101a and the package rear wall 102a collectively house the main housing chamber 100a for receiving the packaged article.
  • the transverse molding slits 42 may be located at the position of the partitioning slit 31 on the bottom side of the gas cushioning body 10, or may be formed by one heat sealing at the same time.
  • the inflated package 1 further includes a side pressure buffering portion 10d disposed on the bottom side of the inflating cushion body 10 to provide cushioning to the package body 10a, thereby cooperating with the package body 10a.
  • a multi-stage cushioning is provided for the packaged article packaged in the package body 10a.
  • the side pressure buffer portion 10d includes a one side pressure storage unit 13d.
  • the side pressure gas storage unit 13d is subjected to a series of folding and heat sealing to form the side pressure buffer portion 10d of the air-packing bag 1.
  • the side pressure gas storage unit 13d is heat-sealed along the first compartment slit 411 and the second compartment slit 412 provided therein, and is divided into a main body side pressure storage unit 139d and a side flap side pressure storage unit. 138d and side package side pressure gas storage unit 137d, wherein the main body side pressure storage unit 139d is connected to each other through the transverse plastic sealing slit 42 to form a main body side pressure buffering portion 101d on the bottom side of the package main body 10a.
  • the side flap side pressure storage unit 138d is integrally connected to the side wing air storage unit 13b to form a side flap side pressure buffering portion 102d on the bottom side of the side flap cushioning portion 10b.
  • the side package side pressure gas storage unit 137d is integrally connected to the side air storage unit 13c to form a side package side pressure buffer portion 103d on the bottom side of the side package body 10c.
  • the side flap side pressure buffering portion 102d and the side wrapping side pressure buffering portion 103d not only have the function of side cushioning, but also help the airbag package 1 in which the packaged object is packaged to stand. It is shown that the main body side pressure storage unit 139d is connected by the transverse plastic sealing slit 42 and inflated and expanded, and is subjected to the action of the gas in the two main body side pressure storage units 139d, and the two main body side pressure storage units 139d are opposite. The direction is open.
  • the side flap side pressure buffering portion 102d formed by the side flap side pressure storage unit 138d and the side pack side pressure buffering portion 103d formed by the side pack side pressure storage unit 137d are formed compared to the main body side pressure storage unit 139d.
  • the main body side pressure buffering portion 101d is convex. After the packaged article is packaged by the air-filled pouch 1, the two-legged standing can be performed by the side flap side pressure buffering portion 102d and the side pack side pressure buffering portion 103d. Therefore, the inflatable packaging bag of the present invention forms a standing packaging bag, and the portable inflatable packaging device of the present invention can be conveniently placed on a work surface or other environmental surface in a standing state when the user carries out. Wait.
  • the transverse molding seam 42 may be a continuous heat sealing line such that the body side pressure storage unit 139d is independent of the body gas storage unit 13a adjacent thereto.
  • the transverse plastic sealing slit 42 may also be an intermittent heat sealing line such that the main body side pressure storage unit 139d communicates with the adjacent main body gas storage unit 13a.
  • the transverse molding seam 42 coincides with a portion of one of the slits 31.
  • the transverse molding seam 42 may also be disposed so as not to coincide with the dividing seam 31.
  • the transverse molding seam 42 is parallel to the plurality of slits 31, which is merely an example and not a limitation of the invention.
  • the transverse molding seam 42 can also It is set not to be parallel to the slit 31.
  • the side pressure buffer portion 10d is formed by a pair of side pressure gas storage units 13d at opposite positions. This is merely an example of the invention and not a limitation. It should be understood by those skilled in the art that the side pressure buffering portion 10d can also be formed by a plurality of pairs of side pressure gas storage units 13d, wherein the side pressure gas storage units 13d can be connected to each other through the partitioning slit 31.
  • the main body side pressure storage unit 139d, the side flap side pressure storage unit 138d, and the side package side pressure storage unit 137d are formed by a complete side pressure storage unit 13d.
  • the position of the transverse molding seam 42 may correspond to an intermediate portion of a gas storage unit 13.
  • the lateral pressure storage unit 13d of the side pressure buffering portion 10d may be the main body air storage unit 13a and the side wing buffer portion 10b on the bottom side of the package main body 10a at a position where the lateral molding slit 42 is not provided.
  • the side air storage unit 13b on the bottom side or the side air storage unit 13c on the bottom side of the side package 10c communicates.
  • the flanking side gas storage unit 138d of the side pressure gas storage unit 13d and the adjacent side air storage unit 13b and the side gas storage unit 13c are actually a gas storage unit 13.
  • aerated packaging bags 1 similar to such embodiments are also within the scope of the present invention. In other words, any aerated packaging bag 1 capable of achieving the above object of the present invention is within the scope of the present invention.
  • FIG. 4 in the plan development view, the first compartment slit 411 is unfolded and divided into two columns, and the side flap portion 10b is formed between the two columns.
  • FIG. 4 is a planar cushioning material formed by plastic sealing of the flat plastic sealing seam 30, it further illustrates the position of the three-dimensional plastic sealing slit 40, thereby more conveniently understanding the three-dimensional packaging bag. The formation process.
  • the position of the first compartment slit 411 in the planar development is labeled.
  • the first sub-slot 411 is unfolded and divided into two columns labeled 411a and 411b, respectively.
  • both 411a and 411b refer to the first compartment slit 411, which is merely used to mark the position of the first compartment slit 411 before suturing, which is convenient for the present invention.
  • the embodiments are described in detail and are not intended to limit the invention.
  • the first compartment slit 411 may be formed by one sealing after the inflation cushion body 10 is preliminarily folded, or may be first sealed in the plane cushioning material, and then After folding, a secondary seal is formed at the corresponding position.
  • the invention is not limited in this respect.
  • the markings 411a and 411b can be used to mark the first compartment slit.
  • the planar material is sealed once.
  • the second compartment slit 412 in a plan development view, is unfolded and divided into three columns.
  • the second compartment slit 412 is marked in the planar development view.
  • the second sub-slot 412 is unfolded and divided into three columns labeled 412a, 412b, and 412c, respectively.
  • the side package 10c is formed between the columns 412b and 412c.
  • 412a, 412b, and 412c refer to the second compartment slit 412, which is merely used to mark the position of the second compartment slit 412 prior to suturing, which is convenient.
  • the embodiments of the present invention are described in detail and are not intended to limit the invention.
  • the second compartment slit 412 may be formed by one sealing after the inflation cushion body 10 is preliminarily folded, or may be first sealed in the plane buffer material, and then After folding, a secondary seal is formed at the corresponding position.
  • the invention is not limited in this respect.
  • the markings 412a, 412b and 412c can be used to mark the second portion. The position at which the planar material is sealed once when the slit 412 is divided.
  • the planar molding seam 30 further includes a plurality of rows of intermittently heat-sealed bending seams 37.
  • the inflated cushioning body 10 is adapted to be bent along the bending seams 37 such that the inflatable cushioning body 10 forms a plurality of sides. wall. More specifically, the bending slit 37 divides each of the gas storage units 13 into a plurality of sub-gas storage units 131, and the bending slits may be located at a central position of the gas storage unit 13 and form a communication passage 132 on each side thereof, such that The adjacent sub-gas storage units 131 are connected to each other as shown in FIG.
  • the bending slit 37 can also be located at two sides of the gas storage unit 13 , and the communication passage 132 is located at a middle position of the gas storage unit 13 . Accordingly, it will be understood that each of the columns of the bending slits 37 heat seals the two layers of the plenum films 11 and 12.
  • the bend seam 37 includes a series of side flap bends 371, wherein the side flap bends 371 are arranged in a longitudinal direction.
  • the side wing bending slit 371 includes a row of first side wing bending seams 3711, a row of second side wing bending seams 3712, a row of third side wing bending seams 3713 and a row of fourth side wing bending seams 3714, wherein the first side wing
  • the bending seam 3711, the second wing bending slit 3712, the third wing bending slit 3713, and the fourth wing bending slit 3714 are both disposed on the side air storage unit 13b of the side cushion portion 10b.
  • the side wing buffer portion 10b is bent along the first side wing bending slit 3711, the second side wing bending slit 3712, the third side wing bending slit 3713, and the fourth side wing bending slit 3714 and passes through the first compartment
  • the side flap buffer portion 10b formed after the slit 411 is sealed has a pentagonal cross section as shown.
  • the side wing buffer portion 10b includes a front support wall 101b, a rear support wall 102b, a side buffer wall 103b, a front buffer wall 104b and a rear buffer wall 105b, wherein the front support wall 101b is defined by the first compartment
  • the sub-gas storage unit 131 is formed between the slit 411a and the first flanking slit 3711.
  • the rear support wall 102b is formed by the sub-storage unit 131 between the first sub-slot 411b and the fourth flanking slit 3714.
  • the side buffer wall 103b is formed by the sub-gas storage unit 131 between the second side wing bending slit 3712 and the third side wing bending slit 3713.
  • the front bumper wall 104b is formed by the sub-storage unit 131 between the second flanking bend 3712 and the first flanking slit 3711.
  • the rear buffer wall 105b is formed by the sub-gas storage unit 131 between the third wing bending slit 3713 and the fourth wing bending slit 3714. More specifically, along the first side wing bending slit 3711, the second side wing bending slit 3712, the third side wing bending slit 3713 and the fourth side wing bending slit 3714, after bending and passing through the first compartment
  • the sub-storage unit 131 formed by each of the gas storage units 13 after the slit 411 is sealed is used to form the front support wall, respectively.
  • the distance from the first side wing bending seam 3711 to the second side wing bending seam 3712 is equal to the fourth side wing bending seam 3714 to the third side wing.
  • a distance between the bending seams 3713 and a distance from the first side wing bending seam 3711 to the first compartment slit 411 is equal to a distance from the fourth side wing bending seam 3714 to the first compartment slit 411, so that after inflation
  • the package body 10a of the air-filled package 1 sealed by the transverse molding slit 42 is perpendicular to the side buffer wall 103b.
  • the folding of the side flap portion 10b to have a pentagonal cross section is merely an example and not a limitation of the invention.
  • the side flap portion 10b can also be folded into other shape cross sections.
  • the side flap portion 10b may not be folded, but may be bent into a certain shape, such as a cylindrical shape, depending on the action of the air column itself.
  • the flat molding seam 30 further includes a series of main package bending seams 372, wherein the main packaging bending seams 372 include a row of first main package bending seams 3721 and a row of second main packaging bending seams 3722, wherein The first main package bending slit 3721 and the second main package bending slit 3722 are disposed on the inflation cushion body 10.
  • the package main body 10a is bent along the first main package bending slit 3721 so that the package front wall 101a of the package main body 10a forms a main package front wall 1011a and a support package front wall 1012a.
  • the package body 10a is bent along the second main package bending slit 3722 such that the package rear wall 102a of the package body 10a forms a main package rear wall 1021a and a support package rear wall 1022a.
  • the packaging main body 10a is not provided with a distinct third column main packaging bending seam, but the packaging The main body 10a can be bent along the main passage sealing slit 33 such that the package front wall 101a of the package main body 10a forms a main package side wall 103a having an inflated structure.
  • the structure on the left side of the main channel sealing slit 33 forms an inflated structure
  • the structure on the right side of the main channel sealing slit 33 forms an inflatable structure. Therefore, the package body 10a can be bent along the main channel sealing slit 33.
  • the inflatable structure on the right side of the main channel sealing slit 33 as shown in FIG. 4 forms a main package front wall 1011a as shown in FIGS. 2 and 3, wherein the main channel
  • the non-inflated structure on the left side of the sealing seam 33 forms the main package side wall 103a as shown in Figures 2 and 3.
  • the main package side wall 103a is of a non-inflated structure, since it is close to the side package 10c, it can be protected by the side package 10c and further accommodated in the package body 10a. The packaged article of the main accommodating chamber 100a is protected.
  • the main package side wall 103a is an inflated structure, which is merely an example and not a limitation of the present invention. According to other embodiments of the present invention, the main package side wall 103a can also be an inflatable structure.
  • the front support wall 101b of the side flap buffer portion 10b and the support package front wall 1012a support each other on both sides of the first compartment slit 411 and the rear support wall of the side flap buffer portion 10b.
  • the 102b and the support package rear wall 1022a are mutually supported to better maintain the inflatable package 1 in a preset state.
  • the front support wall 101b and the support package front wall 1012a are close to each other to increase the contact area between the two, thereby The front support wall 101b and the support package front wall 1012a are supported to each other.
  • the rear support wall 102b and the support package rear wall 1022a are close to each other to increase the contact area between the two, so that the rear support wall 102b and the support package rear wall 1022a support each other, thereby enhancing the cushioning effect.
  • the package main body 10a and the side flap buffer portion 10b are better maintained at a predetermined relative position.
  • the side air storage unit 13b of each of the side wing buffer portions 10b is provided with the first side wing bending seam 3711, the second side wing bending seam 3712, and the third side wing bending seam. 3713 and the fourth side flap bend seam 3714.
  • the side wing buffer portion 10b is bent along the first side wing bending slit 3711, the second side wing bending slit 3712, the third side wing bending slit 3713, and the fourth side wing bending slit 3714 and passes through the first compartment
  • the side flap buffer portion 10b formed after the slit 411 is sealed has a pentagonal cross section as shown.
  • the side wing buffer portion 10b includes a front support wall 101b, a rear support wall 102b, a side buffer wall 103b, a front buffer wall 104b and a rear buffer wall 105b, wherein the front support wall 101b is defined by the first compartment
  • the sub-gas storage unit 131 is formed between the slit 411a and the first flanking slit 3711.
  • the rear support wall 102b is formed by the sub-storage unit 131 between the first sub-slot 411b and the fourth flanking slit 3714.
  • the side buffer wall 103b is formed by the sub-gas storage unit 131 between the second side wing bending slit 3712 and the third side wing bending slit 3713.
  • the front bumper wall 104b is formed by the sub-storage unit 131 between the second flanking bend 3712 and the first flanking slit 3711.
  • the rear buffer wall 105b is formed by the sub-gas storage unit 131 between the third wing bending slit 3713 and the fourth wing bending slit 3714.
  • the sub-storage unit 131 formed by each of the gas storage units 13 after the slit 411 is sealed is used to form the front support wall 101b, the rear support wall 102b, the side buffer wall 103b, the front buffer wall 104b, and The rear buffer wall 105b.
  • the distance from the first side wing bending seam 3711 to the second side wing bending seam 3712 is equal to the fourth side wing bending seam 3714 to the third side wing bending a distance between the creases 3713 and a distance from the first side wing bending seam 3711 to the first compartment slit 411 is equal to a distance from the fourth side wing bending seam 3714 to the first compartment slit 411, so as to be inflated
  • the package main body 10a of the air-filled packaging bag 1 sealed by the transverse molding seam 42 is perpendicular to the side buffer wall 103b, thereby facilitating the repackaging of the air-filled packaging bag 1 by other packaging devices.
  • the bend seam 37 further includes a series of side pack bend seams 373, wherein the side pack bend seams 373 are arranged in a longitudinal direction.
  • the side package bending slit 373 comprises a row of first side wrapping bending seams 3731, a row of second side packaging bending seams 3732 and a row of third side packaging bending seams 3733, wherein the first side packaging bending seams 3731
  • the second side package bending seam 3732 and the third side package bending seam 3733 are both disposed on the side gas storage unit 13c of the side package body 10c.
  • the side package 10c The side package formed after the first side package bending seam 3731, the second side packaging bending seam 3732 and the third side packaging bending seam 3733 are bent and sealed by the second compartment slit 412
  • the body 10c has a rectangular cross section as shown.
  • the side package 10c includes a side package front wall 101c, a side package rear wall 102c, a side package inner side wall 103c and a side package outer side wall 104c, wherein the side package front wall 101c is packaged by the first side
  • the sub-gas storage unit 131 is formed between the bent seam 3731 and the second side package bending slit 3732.
  • the side package outer side wall 104c is formed by the sub-storage unit 131 between the second side package bending seam 3732 and the third side package bending seam 3733.
  • the side package rear wall 102c is formed by the sub-storage unit 131 between the third side package bend seam 3733 and the second compartment slit 412.
  • the side package inner side wall 103c is formed by the sub-storage unit 131 between the first side package bending slit 3731 and the second compartment slit 412.
  • the side package rear wall 102c is formed by the third side package bending slit 3733 and the sub gas storage unit 131 between 412c in the plan development view shown in FIG.
  • the side package inner side wall 103c is formed by the first side package bending slit 3731 and the sub gas storage unit 131 between the planar development views shown in FIG.
  • Each of the sub-gas storage units 131 formed by the gas storage unit 13 is used to form the side package front wall 101c, the side package rear wall 102c, the side package inner side wall 103c, and the side package outer side wall 104c, respectively.
  • the distance from the first side package bending seam 3731 to the second side packaging bending seam 3732 is equal to the third side package bending seam 3733 to the a distance between the second compartment slits 412 and a distance from the first side package bending seam 3731 to the second compartment slit 412 is equal to a distance from the third side packaging bending seam 3733 to the second compartment slit 412, and
  • the package main body 10a of the inflated packaging bag 1 that has been inflated by the transverse molding seam 42 is arranged side by side with the side package body 10c.
  • the distance from the first side package bending seam 3731 to the second side packaging bending seam 3732 in the plane development view is equal to the distance between the third side package bending seams 3733 to 412c and the first
  • the distance of the side package bending seams 3731 to 412b is equal to the distance of the third side package bending seam 3733 to the second compartment slit 412.
  • the side package 10c is designed to have a rectangular cross section not only to provide cushioning to the package body 10a at the side, but also has a relatively stable relative positional relationship and mutual support with the package body 10a, so that The packaged object can receive better protection.
  • the size of the side package 10c can also be preset as needed. For example, when the side package 10c is designed to accommodate a power cord of a notebook computer, the shape of the side package 10c may be set to be compatible with the shape and size of the power cord.
  • the side package 10c is arranged side by side with the side package 10c and supports each other so that the inflatable package 1 is better maintained in a preset state.
  • the main package side wall 103a and the side package inner side wall 103c are close to each other to provide mutual cushioning.
  • the side air storage unit 13c of the side package body 10c is provided with the first side package bending seam 3731, the second side packaging bending seam 3732 and the third side packaging bending seam 3733.
  • the side package body 10c is bent along the first side package bending seam 3371, the second side package bending seam 3732 and the third side package bending seam 3733, and is sealed by the second compartment slit 412.
  • the side package 10c is formed to have a rectangular cross section as shown.
  • the side package 10c includes a side package front wall 101c, a side package rear wall 102c, a side package inner side wall 103c and a side package outer side wall 104c, wherein the side package front wall 101c is packaged by the first side
  • the sub-gas storage unit 131 is formed between the bent seam 3731 and the second side package bending slit 3732.
  • the side package rear wall 102c is formed by the sub-storage unit 131 between the third side package bend seam 3733 and the second compartment slit 412.
  • the side package inner side wall 103c is formed by the sub-storage unit 131 between the first side package bending slit 3731 and the second compartment slit 412. More specifically,.
  • the side package rear wall 102c is formed by the sub-gas storage unit 131 between the third side package bending slits 3733 and 412c.
  • the side package inner side wall 103c is formed by the sub-gas storage unit 131 between the first side package bending slits 3731 and 412b.
  • the side package outer side wall 104c is formed by the sub-storage unit 131 between the second side package bending seam 3732 and the third side package bending seam 3733.
  • the sub-gas storage unit 131 formed by each of the gas storage units 13 is used to form the side package front wall 101c, the side package rear wall 102c, the side package inner side wall 103c, and the side package outer side wall 104c, respectively.
  • the distance from the first side package bending seam 3731 to the second side packaging bending seam 3732 is equal to the second dividing chamber slit 412 to the third side.
  • the distance between the package bend seams 3733 and the distance from the first side package bend seam 3731 to the second compartment slit 412 is equal to the distance from the third side package bend seam 3733 to the second compartment slit 412.
  • the side cushioning chamber 100b formed by the side cushioning portion 10b of the air-packing bag 1 can not only help enhance the cushioning effect, but can also be used to accommodate articles, such as the main accommodating chamber 100a housed in the package body 10a. Electronic products inside, such as accessories for tablets.
  • the main accommodating chamber 100a formed by the package main body 10a is used to package the packaged article, and the side flap buffer portion 10b on the side is used to reinforce the side cushioning effect. That is, the side flap portion 10b provides a primary cushioning effect on the side, and the package body 10a provides another level of cushioning. On the side having the side package 10c, the side package 10c provides a primary cushioning effect, and the package body 10a provides another level of cushioning. On the bottom side having the side pressure buffer portion 10d, the side pressure buffer portion 10d provides a primary cushioning effect on the side surface, and the package main body 10a provides another stage of cushioning.
  • the three-dimensional package formed by the inflatable cushion body 10 of this preferred embodiment of the present invention provides a multi-stage cushioning effect on a plurality of sides.
  • the side flap buffer portion 10b on the left side, the side side package body 10c on the right side, the side pressure buffer portion 10d on the bottom side, and the air bag 1 of the air bag 1 The top side structures cooperate to provide the multi-stage cushioning effect around the packaged article to provide better protection of the packaged article.
  • the inflatable package 1 further includes a portable component 50.
  • the portable component 50 is integrally disposed to the inflatable cushioning body 10.
  • the portable component 50 includes a portable body 51 and has a pair of portable holes 500 formed in the portable body 51.
  • the portable body 51 of the portable component 50 is integrally connected to the inflatable cushion body 10 and formed by the gas storage unit 13 of the inflatable cushion body 10.
  • the portable apertures 500 are respectively disposed at respective positions of the package front wall 101a and the package rear wall 102a.
  • the portable body 51 includes a first portable body 511 disposed on the front wall 101a of the package and a second portable body 512 disposed on the rear wall 102a of the package, wherein the first portable body 511 and the second portable body
  • the bodies 512 correspond to each other and respectively correspond to a portable hole 500.
  • the inflatable packaging bag 1 of such a structure has a simple production process, low manufacturing cost, and the inflatable structure is suitable for carrying the inflatable packaging bag 1 by means of a handcuff or the like.
  • the inflatable structure of the portable body 51 can make such carrying more comfortable.
  • the portable component 50 is disposed at the top end of the inflatable package 1.
  • the inflatable structure of the portable component 50 can also provide cushioning.
  • the main accommodating chamber 100a of the package main body 10a of the inflatable package 1 has an opening 1000a for picking up and dropping the packaged object.
  • the inflatable package 1 further includes a closure device 60 for closing the opening 1000a.
  • the closure device 60 includes two pairs of closure assemblies 61 that are respectively disposed on the left and right sides of the portable aperture 500 of the portable member 50 to enhance while closing the opening 1000a.
  • the portable performance of the portable component 50 More specifically, when the closing device 60 closes the opening 1000a, the first portable body 511 and the second portable body 512 can also be brought close to each other, so as to facilitate the first portable body 511 and the second portable body.
  • the body 512 as a whole enhances the portable performance of the portable component 50, thereby facilitating carrying of the inflatable package 1 .
  • each closure assembly 61 includes a first closure element 611 and a second closure element 612, wherein the first closure element 611 and the second closure element 612 cooperate to close The opening 1000a.
  • the first closure element 611 is disposed on the package front wall 101a
  • the second closure element 612 is disposed on the package rear wall 102a.
  • the first closure member 611 is disposed in the package front wall 101a and the second closure member 612 is disposed in the package rear wall 102a.
  • the planar molding seam 30 further includes two sets of sealing portions 38 for respectively providing the first closing member 611 and the second closing member 612.
  • an anti-counterfeiting mark is provided at the front wall 101a of the package and the rear wall 102a of the package at the opening 1000a for the purpose of the consumer's judgment on the authenticity of the packaged object.
  • the planar molding seam 30 further includes a pair of sealing rings 39 to correspond to the pair of portable holes 500, respectively.
  • Each of the stitching rings 39 seals the plenum films 11 and 12 of the gas cushioning body 10 around the corresponding portable hole 500 to prevent the corresponding gas storage unit 13 from leaking.
  • each stitching ring 39 is disposed in the adjacent two gas storage units 13 but does not block the respective gas storage unit 13 but in the respective gas storage unit A series of passages 133 are formed to facilitate inflating the respective gas storage unit 13.
  • the structure of the sewing ring 39 of the preferred embodiment disposed on the adjacent two gas storage units 13 has the advantages of simple structure, simple and easy operation, and low production cost, but those skilled in the art should be able to understand that The structures are merely examples of the invention and are not limiting. According to other embodiments of the present invention, the sewing ring 39 may also be disposed in the plurality of gas storage units 13, wherein the gas storage unit 13 partitioned by the sewing ring 39 may be inflated by other means, for example, adjacent gas storage units. 13 connected.
  • the first closure element 611 and a second closure element 612 are detachably connected by snapping.
  • the closure assembly 61 can be embodied as a snap. Those skilled in the art should understand that this is merely an example and not a limitation of the invention. Any other manner in which the opening 1000a can be closed is within the scope of the invention, and the invention is not limited in this respect.
  • the first partial slits 411 are each heat-sealed to connect four layers of film, that is, two layers of the gas chamber films 11 and 12 are heat-sealed.
  • the first compartment slit 411 is implemented as an intermittent heat sealing seam, so that the side wing cushioning portion 10b can be in gas communication with the package body 10a, that is, the communication passage 132 communicating with each other is formed, thereby passing The inflation operation can simultaneously inflate the side cushion portion 10b and the package body 10a.
  • the first compartment slit 411 may be disposed at an intermediate portion of the gas storage unit 13 or may be both side portions and integrally connected with the partition slits 31 on both sides, and this aspect of the invention is Not limited.
  • the manufacturing process of the air-filled packaging bag 1 is simplified and the overall performance and appearance of the air-filled packaging bag 1 are maintained.
  • the folding and sealing of the side pressure storage unit 13d of the side pressure buffer portion 10d is the same as that of the other gas storage unit 13.
  • the gas storage unit 13 along the first side wing bending seam 3711, the second side wing bending seam 3712, the third side wing bending seam 3713, and the fourth side wing bending seam 3714 The first compartment slit 411, the first main package bending seam 3721, the second main packaging bending seam 3722, the first side packaging bending seam 3731, the second side packaging bending seam 3732, the first The three-side package bending seam 3733 and the second compartment slit 412 are bent and/or sealed to form a plurality of the sub-gas storage units 131 arranged in a preset manner to form the inflatable packaging bag 1 into a predetermined shape. .
  • the gas storage unit 13 along the first side wing bending seam 3711, the second side wing bending seam 3712, the third side wing bending seam 3713, the fourth side wing bending seam 3714, the first dividing seam 411, the first main package bending seam 3721, the second main packaging bending seam 3722, the first side packaging bending seam 3731, the After the second side package bending seam 3732, the third side packaging bending seam 3733, and the second compartment slit 412 are bent and/or sealed, the gas storage unit 13 forms a main package front sub-gas storage unit 1311a.
  • a support pre-storage gas storage unit 1312a a support pre-storage gas storage unit 1312a, a main package post-storage gas storage unit 1313a and a support package post-storage gas storage unit 1314a
  • a front support sub-storage unit 1311b a rear support sub-storage unit 1312b
  • a side buffer gas storage unit 1313b a side buffer gas storage unit 1313b
  • a side packaging front sub gas storage unit 1311c a side packaging rear sub gas storage unit 1312c
  • a side package inner side The sub-gas storage unit 1313c and the one side package outer sub-gas storage unit 1314c.
  • a plurality of the main package front sub-storage units 1311a are connected to each other to form the main package front wall 1011a and a portion of the front portion of the main body side pressure storage unit 139d connected to the main package front wall 1011a.
  • a plurality of the support package front sub-gas storage units 1312a are connected to each other to form the support package front wall 1012a and a portion of the front portion of the main body side pressure storage unit 139d connected to the support package front wall 1012a.
  • a plurality of the main package rear sub-storage units 1313a are connected to each other to form the main package rear wall 1021a and a portion of the rear portion of the main body side pressure storage unit 139d connected to the main package rear wall 1021a.
  • a plurality of the support package post sub-storage units 1314a are connected to each other to form the support package rear wall 1022a and a portion of the rear portion of the main body side pressure storage unit 139d connected to the support package rear wall 1022a.
  • a plurality of the front support sub-gas storage units 1311b are connected to each other to form the front support wall 101b and a portion of the flanking side pressure storage unit 138d connected to the front support wall 101b.
  • a plurality of the rear support sub-gas storage units 1312b are connected to each other to form the rear support wall 102b and a portion of the flanking side pressure storage unit 138d connected to the rear support wall 102b.
  • a plurality of the side buffer gas storage units 1313b are connected to each other to form the side buffer wall 103b and a portion of the side flap side pressure storage unit 138d connected to the side buffer wall 103b.
  • a plurality of the front buffer gas storage units 1314b are connected to each other to form the front buffer wall 104b and a portion of the side flap side pressure storage unit 138d connected to the front buffer wall 104b.
  • a plurality of the rear buffer gas storage units 1315b are connected to each other to form the rear buffer wall 105b and a portion of the side flap side pressure storage unit 138d connected to the rear buffer wall 105b.
  • a plurality of the side package front sub-storage units 1311c are connected to each other to form the side package front wall 101c and a portion of the side package side pressure storage unit 137d connected to the side package front wall 101c.
  • a plurality of the side package rear sub-storage units 1312c are connected to each other to form the side package rear wall 102c and a portion of the side package side pressure storage unit 137d connected to the side package rear wall 102c.
  • a plurality of the side package inner sub-storage units 1313c are connected to each other to form the side package inner side wall 103c and a portion of the side package side pressure storage unit 137d connected to the side package inner side wall 103c.
  • a plurality of the side package outer sub-storage units 1314c are connected to each other to form the side package outer side wall 104c and a portion of the side package side pressure storage unit 137d connected to the side package outer side wall 104c.
  • the shape and size of the carrying device 9 and the inflatable package 1 The shape is adapted to the size.
  • the shape and size of the carrying body 91 are adapted to the shape and size of the inflatable cushioning body 10 of the inflatable packaging bag 1 folded, sealed and inflated, wherein the position, shape and size of the carrying member 92 are The position, shape and size of the portable component 50 of the inflated package 1 are adapted. More specifically,
  • the carrying member 92 is integrally provided to the carrying body 91.
  • the carrying member 92 includes a carrier 921 and has a pair of carrying holes 920 formed therein.
  • the carrying hole 920 is formed in the carrying body 921.
  • the carrier body 91 includes a carrying front wall 911, a carrying rear wall 912, a carrying left side wall 913 and a carrying right side wall 914.
  • the carrying front wall 911, the carrying rear wall 912, the carrying left side wall 913 and the carrying right side wall 914 together surround the packaging cavity 900.
  • the carrying holes 920 are respectively disposed at the corresponding positions of the carrying front wall 911 and the carrying rear wall 912, wherein the carrying position of the carrying hole 920 is opposite to the setting position of the carrying hole 500 in the inflatable buffer body 10 adapt
  • the carrier 921 includes a first carrier 9211 disposed on the front wall 911 and a second carrier 9212 disposed on the rear wall 912, wherein the first carrier The carrier body 9211 and the second carrier body 9212 correspond to each other and respectively provide a carrying hole 920.
  • the carrying member 92 is disposed at the top end of the carrier body 91.
  • the main accommodating chamber 100a of the package main body 10a of the inflatable package 1 has an opening 1000a for picking up and dropping the packaged object.
  • the consumer can pass the hand through the carrying aperture 920 and the carrying aperture 500 to carry the inflatable packaging device and the packaged package packaged by the inflatable packaging device.
  • the carrier device 9 further includes a display member 93, wherein the display member 93 is disposed on the carrier body 91 for displaying information about the packaged article.
  • the display member 93 can also be used to decorate the carrying body 91 to make the appearance of the carrying body 91 more pleasing to the eye, making the consumer more willing to carry.
  • the display element 93 can also be used for publicity.
  • the carrying device 9 is used for accommodating and carrying the inflatable packaging bag 1 and its packaged articles, but is not limited to accommodating and carrying the inflatable packaging bag 1 and its packaged articles.
  • the carrying device 9 may be provided with spare receiving parts for accommodating items required for daily travel, such as a mobile phone, a wallet, a key, and the like.
  • the carrying device 9 can be connected to the inflatable packaging bag 1 or separately from the inflatable packaging bag 1, and the invention is not limited in this respect.
  • the air-packing device further includes a functional bag 8 to provide a preset function for the packaged object, such as heat preservation, radiation protection, etc., to meet the requirements of transportation, storage, and carrying.
  • the shape and size of the functional bag 8 is adapted to the shape and size of the inflated state of the inflated package 1.
  • the functional bag 8 includes a functional bag body 81 and a functional bag closing member 89.
  • the functional bag body 81 forms a functional receiving chamber 800 and has a functional bag opening 8000, wherein the functional bag opening 8000 is used to facilitate picking up and dispensing of the packaged object, such as the inflated packaging bag 1, wherein the functional bag is closed.
  • the functional bag body 81 includes a functional front bag body 811 and a functional rear bag body 812 integrally connected with the functional front bag body, wherein the functional front bag body 811 and the functional rear bag body 812 together form the same The accommodation room 800.
  • the functional bag closure member 89 includes a first functional bag closure member 891 and a second functional bag closure member 892, wherein the first functional bag closure member 891 is disposed on the functional front bag 811, wherein the second functional bag A closure member 892 is provided to the functional rear pocket 812.
  • the functional bag opening 8000 is closed.
  • the functional bag closure member 891 and the second functional bag closure member 892 are relatively separated, the functional bag opening 8000 is opened.
  • the functional bag closure member 89 further includes a functional bag closure switch 893 in which the functional bag closure member 89 can be opened or closed by controlling the functional bag closure switch 893, i.e., the first functional bag closure member 891.
  • the functional bag 8 of this configuration is suitable for use with the carrying device 9 or other device suitable for carrying when carrying the packaged article.
  • the packaged article is packaged with the inflatable package 1 to provide cushioning for the packaged package, and then the inflatable packaged bag 1 packaged with the packaged package is packaged in the functional bag 8 to provide a preset for the packaged article.
  • Functional protection and then the functional bag 8 packaged with the packaged object and the inflatable package 1 is packaged in the carrying device 9 to facilitate carrying of the packaged article.
  • the packaged object can also be packaged in the functional bag 8 and then packaged in the inflatable package bag 1 and the carrying device 9, and the buffer protection, the preset function protection and the portable effect can also be achieved.
  • the invention is not limited in this respect.
  • the inflatable package 1, the functional bag 8 and the carrying device 9 are separately provided, which are merely examples of the invention and are not limiting. According to other embodiments of the present invention, the inflatable package 1, the functional bag 8 and the carrying device 9 can also be arranged in a multi-layered structure that is connected to each other, and can also achieve the effects of cushioning protection, preset function protection and portability. The invention is not limited in this respect.
  • the air-packing device further includes a package 7, wherein the package 7 can be disposed outside the functional bag 8 and the carrying device 9 in which the inflatable package 1 is packaged, and can be set
  • the inflatable package 1 is further packaged on the outside of the inflatable package 1.
  • the portable device 9 can be folded to facilitate placement by the package 7.
  • the consumer needs to use the carrying device 9, it can be taken out.
  • the package 7 includes a casing 71, wherein the shape and size of the casing 71 are adapted to the shape and size of the inflatable packaging bag 1 to enable the inflatable packaging bag 1 to be
  • the casing 71 is packaged.
  • the package 7 Since the package 7 is easy to maintain the preset shape and facilitates the placement and arrangement of the preset direction, the package 7 can not only facilitate carrying the packaged package 1 with the packaged article, but also facilitate transportation thereof.
  • the inflatable package 1 in which the packaged article is packaged is carried by the package 7 for carrying, and the package further includes a package carrying unit 72. As shown, the package carrying unit 72 is disposed in the case 71.
  • the package portable component 72 includes a package carrying body 721 and has a pair of package carrying holes 720, wherein the package carrying holes 720 are formed in the package carrying body 721.
  • the consumer can hold the hand in the box carrying aperture 720 to carry the inflatable packaging device and the packaged package packaged by the inflatable packaging device.
  • the package 7 further includes a package display member 73, wherein the package display member 73 is disposed on the case 71 for being used to display the packaged article Relevant information, such as brand logo, product type, usage, precautions, etc.
  • the package display member 73 can also be used to decorate the case 71 to make the appearance of the case 71 more pleasing to the eye, making the consumer more willing to carry.
  • the package display 73 can also be used for publicity promotion.
  • FIGS 8A and 8B illustrate two states of use of the air-filled pouch inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • the above described structures of the inflatable package 1, the functional bag 8, the carrying device 9, and the package 7 of the air-packing device according to the above preferred embodiment of the present invention are merely examples of the present invention. Not a limitation. According to other embodiments of the present invention, the inflatable package 1, the functional bag 8, the carrying device 9, and the package 7 may be of other constructions.
  • Figure 9 illustrates an alternative embodiment of the functional bag 8 of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiment of the present invention.
  • the functional bag 8' may also have no closure elements. It is worth mentioning that the functional bag 8' is also suitable for folding, so that it can be stored, transported and carried without being used.
  • FIGS 10A through 10C illustrate several alternative embodiments of the carrying device of the inflatable package inflatable packaging device in accordance with the above-described preferred embodiments of the present invention.
  • the carrying device 9' shown in FIG. 10A includes a carrying body 91', a carrying member 92' and a display member 93', wherein the shape and size of the carrying body 91' is different from the shape and size of the air-packing bag 1.
  • the carrying member 92' is disposed on the carrying body 91 to facilitate carrying the carrying body 91' and the air-packing bag 1 packaged in the carrying body 91' through the carrying member 92', and further facilitating packaging The packaged article W of the inflated packaging bag 1 is carried.
  • the portable device 9' when the portable device 9' is packaged, the portable device 9' is in a packaged state, wherein in the packaged state of the portable device 9', the portable device 9' forms a package A cavity 900', wherein the packaging cavity is used to house the inflatable package 1 to package the inflatable package 1.
  • the shape of the packaging cavity 900' is The size is adapted to the outer shape and size of the air-filled pouch 1 so that the pouch 1 can be securely packaged in the packaging chamber 900' to fully secure the inflating state of the carrying device 9'.
  • the portable device 9' when the portable device 9' is not packaged, the portable device 9' can be stored by folding, folding, etc., so that the portable device 9' is A storage state.
  • the portable device 9' occupies a small space and is easily carried, transported, stored and stored.
  • such a stored state of the carrying device 9' can be realized by folding, folding, or the like, and the present invention is not limited in this respect.
  • the display member 93' is disposed on the carrying body 91', which is used to display information about the packaged object, such as a logo of the brand, a product type, a method of use, a precaution, and the like.
  • the display member 93' can also be used to decorate the carrying body 91' to make the appearance of the carrying body 91' more pleasing to the eye, making the consumer more willing to carry.
  • the display element 93' can also be used for publicity.
  • the carrying device 9" as shown in Fig. 10B further includes a cover member 94", wherein the cover member 94 is used to close the packaging chamber 900" of the carrying device 9" To better protect the packaged objects, such as dust, dust, and theft.
  • the carrying device 9"' shown in FIG. 10C is firmly disposed in an inflatable packaging bag 1', but does not completely cover the inflatable packaging bag 1', so when the inflatable packaging bag 1' is made of a transparent material, The packaged article packaged in the air-filled pouch 1' can be seen from the outside of the pouch pack 1'.
  • the air-packing device of this structure has visibility to facilitate display of the packaged article.
  • 11A to 11D are an air-filled pouch 1A of a first alternative embodiment of the pouch 1A of the air-packing device according to the above preferred embodiment of the present invention.
  • the inflated package 1A includes at least one inflatable cushioning body 10A, that is, a three-dimensional packaging bag or a plurality of inflatable cushioning bodies 10A are formed by one inflatable cushioning body 10A.
  • the connection such as bonding or heat sealing forms the three-dimensional packaging bag.
  • the gas cushion body 10A includes at least two layers of gas chamber films 11A and 12A.
  • the three-dimensional packaging bag including one or more connected gas storage units 13A is formed through a series of flat plastic sealing slits 30A and three-dimensional plastic sealing slits 40A.
  • a gas storage chamber 14A capable of storing gas is formed in each of the gas storage units 13A.
  • planar molding seam 30A is used to plastically form a multilayer film to form a planar cushioning material as shown in FIG. 11D for further molding the above-mentioned planar cushioning material.
  • the inflatable package 1A forms the three-dimensional packaging device having a spatial three-dimensional configuration and capable of accommodating the packaged article, as shown in Fig. 11B.
  • the planar molding seam 30A and the three-dimensional molding seam 40A may be joined together by bonding or heat sealing.
  • the planar molding seam 30A and the three-dimensional molding seam 40A may both be implemented to be formed by a heat sealing process.
  • the planar molding seam 30A includes a plurality of rows of slits 31A which are opposed to the two layers of the chamber film 11A.
  • the connection with 12A is performed to divide the aeration buffer body 10A into a plurality of gas storage units 13A.
  • each of the slits 31A is formed by a heat sealing process which heat seals the two gas chamber films 11A and 12A so that a column of slits 31A is formed between the adjacent two gas storage units 13A.
  • the partition 31A may be a continuous heat seal line such that the plurality of gas storage units 13A are independent of each other. It can be understood that, as shown in FIG.
  • the two rows of partition slits 31A of the top side and the bottom side can respectively become the top side boundary slit and the bottom side boundary slit of the inflation cushion body 10A.
  • the partitioning slit 31A may also be an intermittent heat seal line, thereby allowing the plurality of gas storage units 13A to communicate with each other.
  • the gas storage unit 13A may be in various shapes such as a strip shape, a circular shape, a polygonal shape or other irregular shape, and the like, as shown in FIGS. 11B to 11D, the inflation cushion body 10A of the present invention may include a plurality of side by side arrangements. Inflatable column, but this party is not limited in this regard.
  • the inflation cushioning body 10A further includes an inflation valve 20 formed of at least two layers of valve membranes 21 and 22, the inflation valve 20 of the inflation valve 20
  • the valve films 21 and 22 are disposed superposed on each other with the plenum films 11A and 12A, and an intake passage 23A for inflating the plenum 14A is formed between the valve films 21 and 22. It is to be understood that the lengths of the valve films 21 and 22 are shorter than the plenum films 11A and 12A.
  • the air pressure in the air reservoir 14A acts on the valve membranes 21 and 22 to The valve membranes 21 and 22 are attached to one of the plenum membranes 11A or 12A, thereby closing the intake passage 23A so that the inflation valve 20 functions as a one-way valve.
  • At least one intake passage 23A is formed in each of the gas storage units 13A, and each of the gas storage units 13A is independent of each other. When one of the gas storage units 13A is damaged and leaks, the other gas storage units 13A are not affected, and Can play an air cushioning effect.
  • the plenum films 11A and 12A of the gas cushion body 10A and the valve films 21 and 22 of the gas filling valve 20 can be made of various suitable film materials, such as polyethylene film and polypropylene film, respectively.
  • the present invention is not limited in this respect, for example, a polyvinyl chloride film, a polyester film, a polystyrene film or a composite film, as long as it is a suitable flexible film.
  • the valve films 21 and 22 of the inflation valve 20 may also be self-adhesive films modified by adding chemical components to the above-mentioned film.
  • the gas cushion body 10A further includes a main channel unit 15A connected to each of the gas storage units 13A. Preferably, it integrally extends through each of the gas storage units 13A. More specifically, in the first alternative embodiment of the above preferred embodiment, the main channel unit 15A is perpendicular to the direction in which the gas storage unit 13A extends. For example, in the first alternative embodiment, each of the gas storage units 13A extends in a lateral direction, and the main channel unit 15A extends in the longitudinal direction.
  • the main passage unit 15A forms a main passage 151A, and the main passage 151A has an inflation port 152A.
  • gas enters from the inflation port 152A in the longitudinal direction.
  • the main passage 151A and then enters each of the gas storage units 13A in the lateral direction, and after a predetermined gas pressure is reached in each of the gas storage chambers 14A, the valve membranes 21 and 22 of the inflation valve 20 are attached to one of the gas chambers.
  • the film 11A or 12A is thereby self-sealed to prevent the charged gas from being reverse osmosis into the main passage 151A.
  • the main channel unit 15A may be formed by two layers of plenum films 11A and 12A, or may be formed by two layers of valve films 21 and 22, or by one of the plenum films 11A or 12A is formed with one of the valve films 21 or 22.
  • the flat molding seam 30A further includes a continuous sealed one side seal 32A on the left and right sides of the air cushion body 10A and a continuous sealed main passage seal seam 33A on the left side, wherein the left side
  • the main passage 151A is formed between the side seal 32A and the main passage seal slit 33A.
  • the side seal 32A is formed by a plastic sealing process such as bonding or heat sealing and sealingly connects the two layers of the gas chamber films 11A and 12A, wherein the main channel sealing slit 33A is formed by a molding process such as bonding or heat sealing.
  • the two-layer air chamber films 11A and 12A and the two-layer valve films 21 and 22 are respectively connected together, as shown in FIG.
  • the main channel sealing slits 33A formed on the upper and lower sides by a single heat sealing process respectively
  • the gas chamber film 11A and the valve film 21 are heat-sealed, and the gas chamber film 12A and the valve film 22 are heat-sealed.
  • each of the gas storage units 13A includes two rows of mutually spaced air guiding slits 34 adjacent to the main passage 151A, which are connected by heat sealing to the valve films 21 and 22 and one of the gas chamber films.
  • the air chamber films 11A and 12A are formed by 11A or 12A, and the intake passage 23A formed by the valve films 21 and 22 is located between the two rows of air guiding slits 34.
  • valve films 21 and 22 are further heat-sealed to the gas chamber film 11A through a plurality of joint slits 35A, so that when a predetermined gas pressure is reached in the gas storage chamber 14A, gas pressure acts on the valve film 21 and 22, and because the setting of the joint slit 35A is simultaneously pressed toward the plenum film 11A and finally attached to the plenum film 11A, the intake passage 23A is closed. That is, the joint slit 35A is heat-sealed to connect the two layers of the valve films 21 and 22 and one layer of the gas chamber film 11A. Further, as shown in Fig.
  • each of the joint slits 35A is designed such that it further functions to prevent backflow of gas, that is, when the gas in the gas storage chamber 14A is intended to flow back, it is The joint seam 35A is blocked and cannot be easily reverse osmosis into the main passage 151A.
  • the inlet passages 23A formed by the valve membranes 21 and 22 of the inflation valve 20 may be formed by providing a heat-resistant barrier device, and after the heat sealing process, the removal is performed. Heat resistant barrier.
  • a heat-resistant layer 24A is disposed between the valve films 21 and 22 of the inflation valve 20, as shown in FIGS.
  • valve films 21 or 22 for example, a hot ink attached to an inner surface of one of the valve films 21 or 22 such that when the main passage sealing slit 33A is formed by heat sealing, the two layers of the valve films 21 and 22 are not heat-sealed, so that the intake air
  • the passage 23A is able to communicate with the main passage 151A without closing its inlet port due to heat sealing.
  • the main passage 151A is formed by two layers of plenum films 11A and 12A, wherein the heat-resistant layer 24A and the valve films 21 and 22 each have an extension into the The main passage 151A, wherein the flat molding slit 30A further includes a row of mutually spaced joint seams 36A arranged in the longitudinal direction corresponding to the positions of the extensions of the heat-resistant layer 24A. Because of the arrangement of the heat-resistant layer 24A, the joint seam 36A connects the two-layered gas chamber films 11A and 12A and the two-layer valve films 21 and 22, respectively.
  • valve films 21 and 22 are not heat-sealed, and the joints 36A are disposed such that when the gas-filled cushion body 10A is inflated, after the gas enters the main passage 151A, the adjacent valve films 21 and 22 correspond to The connected plenum films 11A and 12A can be expanded together to open the corresponding intake passage 23A.
  • the inflatable packaging bag with a cylindrical main accommodating cavity 100a is formed, which is suitable for packaging cylindrical articles such as wine bottles and Lamps, etc.
  • the main accommodating chamber 100a is adapted to the size of a single wine bottle so that the wine bottle can stand in the main accommodating chamber 100a, and the respective side walls of the air cushion body 10A can be closely attached to the wine bottle. In order to enable the bottle to be stably placed in the main accommodating chamber 100a to better protect the safety of the bottle.
  • the inflatable cushion body 10A forms a package body 10a', at least one support portion 10b'.
  • the package body 10a includes a front side wall 101a', a rear side wall 102a', a bottom wall 103a', a top wall 104a', a top wall cover 105a' and a plug wall 106a', wherein the front side Both sides of the wall 101a' are connected to both sides of the rear side wall 102a', and the periphery of the bottom wall 103a' is adjacent to the bottom end of the front side wall 101a' and the bottom end of the rear side wall 102a'.
  • top wall 104a' Connecting, one side of the top wall 104a' is connected to the top end of the rear side wall 102a', the other side of the top wall 104a' is connected to the top wall cover 105a', and the top wall cover 105a 'connecting to the plug wall 106a' to allow the package to be placed into the main accommodate by opening an opening formed at the junction of the front side wall 101a' and the top wall cover 105a' a cavity 100a, and the junction of the front side wall 101a' and the top wall cover 105a' is closed by the plug wall 106a', wherein the plug wall 106a' enables the top wall cover 105a 'Removably closed with the front side wall 101a' to prevent the package to be slid out, increasing safety, as shown in Figs. 11A to 11D.
  • the length of the front side wall 101a' is smaller than the length of the rear side wall 102a', and the sum of the length of the front side wall 101a' and the length of the top wall cover 105a' is equal to the rear side wall.
  • the length of 102a', and the plugging wall 106a' can be inserted into the main accommodating cavity 100a, thereby making the abutment of the top wall cover 105a' and the front side wall 101a' tighter, preventing the package to be packaged The object slides out of the main housing chamber 100a.
  • a part of the gas storage unit 13A forms one or more folding units 10c', for example, the two folding units 10c' are respectively disposed on the bottom wall 103a' and the top wall 104a'.
  • the bottom wall 103a' and the top wall 104a' are each folded into a circular or elliptical shape, and are respectively fitted with the bottom side and the top side support portion 10b' to facilitate standing to form the air-filled package of the present invention.
  • the inflatable package may provide a standing function on the side of the bottom wall 103a' or a standing function on the side of the top wall 104a'.
  • the gas cushioning body 10A includes a series of gas barrier slits 301A, wherein the gas barrier slits 301A are provided in a predetermined number of gas storage units 13A of the folding unit 10c' to reduce the folding unit 10c'
  • the inflation amount is such that the inflation amount of the folding unit 10c' is smaller than the inflation amount of the other air storage unit 13A of the air cushion body 10A, thereby making the folding unit 10c' suitable for being folded, folding the inflation cushion body 10A The required stereo configuration.
  • the gas barrier slits 301A are arranged in columns in the gas storage unit.
  • two of the gas barrier slits 301A are respectively disposed on the two gas storage units 13A on both side edges of the gas cushioning body 10A, so that the top wall 104a' and the bottom wall 103a' are suitable.
  • the folding is such that the top and bottom of the inflatable package are oval in shape for easy standing.
  • the number of the gas barriers 301A of the gas storage unit 13A on the outer side is larger, or the gas barrier slits 301A are provided on the second gas storage unit 13A on both sides of the gas cushion body 10A,
  • the length of the row is smaller than the length of the gas barrier slit 301A provided in the first gas storage unit 13A, or the gas barrier of the second gas storage unit 13A of the folding unit 10c'
  • the area of the 301A is smaller than the area of the gas barrier 301A of the first gas storage unit 13A on the outer side, so that the folding of the top wall 104a' and the bottom wall 103a' is simpler and more convenient, and the ellipse is easily formed.
  • the arrangement of the gas barrier slits 301A is such that the aeration amount of the top wall 104a' and the bottom wall 103a' gradually decreases from the central portion to the both ends to form a stable connection structure. To facilitate standing.
  • the gas storage unit 13A partially forms four folding units 10c', each of which is passed through
  • the two gas storage units 13A are partially formed by a plurality of gas barrier slits 301A that heat seal the two gas chamber films 11A and 12A of the gas cushion body 10A without being inflated.
  • the unsealed position around the slit 301A is still an inflatable structure and each gas storage unit 13A can still be in a connectable state in its length direction.
  • the folding unit 10c' or a different number of the folding units 10c' may not be formed, or the shape and size of the gas barrier 301A may be designed as needed.
  • the folding unit 10c' may also be implemented as a non-inflatable portion, ie, the whole cannot be inflated, and the gas storage unit 13A forming the folding unit 10c' may pass through other adjacent ones.
  • the lateral communication passages of the gas storage unit 13A are in communication.
  • the folding is more three-dimensional, and the flat plastic sealing seam 30A is further A plurality of rows of bent slits 37A are provided which are disposed in the aerated cushion body 10A, and each of the bent slits 37A connects the two layers of the plenum films 11A and 12A together by heat sealing. As shown in FIG.
  • the bending seam 37A includes a first row of bending slits 371A, a second row of bending slits 372A, a third row of bending slits 373A, a fourth row of bending slits 374A, a fifth row of bending slits 375A, a sixth row of bending slits 376A, a seventh row of bending slits 377A and an eighth row of bending slits 378A, wherein the first row of bending slits 371A forms the inflatable cushioning body on the lower side
  • the front side wall 101a' of the 10A, the bottom wall 103a' is formed between the second and third column bending slits 372A and 373A, and the fourth column and the fifth column bending slit 374A and
  • the rear side wall 102a' of the gas cushion body 10A is formed between 375A
  • the top wall 104a' is formed between the sixth and seventh column
  • the bending slits 37A may be all disposed in the gas storage unit 13A, or may be partially disposed in the gas storage unit 13A, and partially disposed in the heat sealing line between the two gas storage units 13A. That is, the points On the partition 31A, and ensuring that the adjacent gas storage units 13A on both sides of the bending slit 37A are in communication with each other, such that the bending slit 37A makes the inflation cushion body 10A suitable for being bent, Further, the air cushion body 10A is formed into a three-dimensional packaging device having the main housing chamber 100a.
  • the adjacent bending seams 37A are joined to form a support portion 10b', and the connection between the two rows of the bending slits 37A can be implemented by heat sealing.
  • the first row of bending slits 371A are connected to the second row of bending slits 372A
  • the third row of bending slits 373A are connected to the fourth row of bending slits 374A
  • the fifth row of bending slits 375A is connected with the sixth row of bending slits 376A
  • the seventh row of bending slits 377A is connected with the eighth row of bending slits 378A, and is located at two connected joints
  • the inflating unit forms the support portion 10b', and four support portions 10b' are formed to form an elliptical support structure around the bottom wall 103a' and the top wall 104a', respectively.
  • the bag stands up. Taking the first row of bending slits 371A and the second row of bending slits 372A as an example, in practical applications, the first column bending slits 371A and the second column bending seams may be respectively passed first. 372A heat-sealed the two-layer gas chamber films 11A and 12A, and then the portion of the gas storage unit 13A between the first row of bending slits 371A and the second row of bending slits 372A is folded in half and then heat-sealed. The first row of bending slits 371A are joined to the second row of bending slits 372A. It is also possible to form the first row of bent slits 371A and the second row of bent slits 372A which are joined by one heat sealing.
  • the folding unit 10c' is adapted to be folded, wherein the folding unit 10c' and the inflation cushioning body 10A may be two independent members or may be integrally formed.
  • the folding unit 10c' is integrally formed with the inflation cushion body 10A, wherein the folding unit 10c' may be disposed at any position of the inflation unit that needs to be folded, such that The aeration cushion body 10A is formed into a variety of three-dimensional configurations to meet packaging requirements.
  • the bottom wall 103a' and the edge of the top wall 104a' are folded into a corner to form an end support structure, thereby facilitating the airbag to stand up, and The size of the space of the main accommodating chamber 100a is not affected.
  • the support portion 10b' encloses an approximately circular or elliptical shape protruding from the bottom wall 103a' and the top wall 104a', and
  • the support portion 10b' has an air cushioning function to support the air-filled packaging bag.
  • the bottom end of the support portion 10b' may be supported on the environmental surface in a standing state when placed on an environmental surface, thereby realizing the standing function of the air-filled pouch of the present invention.
  • FIG. 11A and FIG. 11B taking the top side as an example (the bottom side is a similar structure), the two supporting portions 10b' in FIG. 11A are formed by heat sealing to form a top annular integral supporting structure, that is, formed.
  • each of the support portions 10b' includes two portions, an inner support portion 101b' and an outer support portion 102b', and the inner support portion 101b' and the outer support portion 102b' are formed after being folded up and arranged one on another.
  • the inner support portion 101b' and the outer support portion 102b' are joined to form an annular support surface 104b', and the annular support surface 104b' is adapted to be in contact with an environmental surface, so that the inflatable package has a standing function. . That is to say, in the prior art, the entire end side is an inflatable gas column, so When placed on an environmental surface, the prior art inflatable package is not easy to stand because of the varying heights of the air column.
  • the annular support surface 104b' enables the inflatable package of the present invention to be more securely in a standing condition.
  • the support portion 10b' and the top wall 104a' form a concave buffer chamber 100b'.
  • similar buffer grooves 100b' may be formed on the underside of the inflatable package.
  • the top wall 104a' or the bottom wall is applied to both the top wall 104a' or the bottom wall 103a'.
  • 103a' may be deformed in the buffer tank 100b', and it is not easy to protrude from the buffer tank 100b' to contact other environmental objects, thereby further preventing the packaged articles from being subjected to the recoil force of the environmental object. Damage.
  • the gas storage units 13A are longitudinally arranged in the aeration buffer body 10A such that after the inflation cushion body 10A is folded into a body configuration, each of the gas storage units 13A is longitudinally arranged.
  • the main passage 151A and the inflation port 152A are both disposed at the top end of the front side wall 101a', and the inflation valve 20 is also mounted to the front side wall 101a'. The top end of the gas storage unit 13A.
  • the three-dimensional plastic sealing seam 40A includes longitudinal plastic sealing slits 43A respectively provided at edges of the two sides of the inflatable cushioning body 10A to connect the side walls of the inflatable cushioning body 10A together to form the main receiving space. Cavity 100a.
  • four rows of said longitudinal molding seams 43A are included, which include two rows of lower longitudinal molding seams 431A and two rows of longitudinal molding seams 432A.
  • the lower longitudinal molding seam 431A extends from the top end of the front side wall 101a' to the middle end of the rear side wall 102a' to connect the two edges of the front side wall 101a' with the rear side wall 10a
  • the two edges are connected, and when folded, a corner of the bottom wall 103a' is formed at the lower longitudinal molding slit 431A corresponding to the bottom wall 103a'
  • the upper longitudinal molding seam 432A is A bottom end of the top wall cover 105a' extends toward a middle end of the rear side wall 102a', and a predetermined distance is maintained between the upper longitudinal molding seam 432A and the lower longitudinal molding seam 431A, so that the top wall a cover 105a' is coupled to the rear side wall 102a', and a bottom end of the top wall cover 105a' is in contact with a top end of the front side wall 101a', thereby forming the opening at the predetermined interval, and When folded, the corners of the top wall 104a' are formed at the upper
  • connection between the longitudinal molding seams 43A can be carried out by heat sealing, wherein the longitudinal molding seams 43A can be implemented as heat sealing lines or a plurality of heat sealing points.
  • the folding unit 10c' provided at the corners of the bottom wall 103a' and the top wall 104a' is adapted to be folded inwardly to form the bottom wall 103a' and the corner of the top wall 104a'
  • the support structure facilitates standing up the inflatable package.
  • each of the standing support structures includes an inflatable end wall, and a support portion 10b' projecting outwardly from the inflatable end wall, the support portion 10b' and the inflatable end wall
  • the buffer groove 100b' is formed, and the support portion 10b' includes inner and outer portions 101b' and 102b' which are overlapped with each other, and the joint portion thereof can stand on the environmental surface, so that the support portion 10b' provides a supporting action.
  • the inflatable end wall may be the bottom wall 103a' or the top wall 104a'.
  • the planar molding seam 30A further includes a boundary slit 302A that heat seals the two gas chamber films 11A and 12A, wherein the boundary slit 302A is disposed on the top wall cover 105a' and the plug Between the walls 106a' and preventing the gas reaching the inflation unit of the top wall cover 105a' from entering the plug wall 106a', in other words, when inflating from the inflation port 152A, the gas enters the chamber
  • the front side wall 101a', the rear side wall 102a', the bottom wall 103a', the top wall 104a', and the top wall cover 105a' do not enter the plug wall 106a',
  • the inflation cushion body 10A is folded, the unfilled the plugging wall 106a' is more easily plugged into the main accommodating cavity 100a without affecting the size of the main accommodating cavity 100a, if When the plugging wall 106a' is inflated, when the bottle is loaded into the main accommodating chamber 100a, the inflated plugging wall 106a
  • the presence of the boundary seam 302A can well solve the problem of inflation of the plug wall 106a'.
  • the boundary seam 302A may also not completely render the plug wall 106a' inflated, but rather reduce the amount of inflation such that the plug wall 106a' forms a small air chamber inflatable wall.
  • the inflatable package provided by the preferred embodiment is suitable for packaging cylindrical articles, such as red wine bottles, beer bottles, lamps, etc., so that it can stand in the main accommodating cavity 100a, which not only protects the articles well, but also Increased beauty.
  • the second alternative embodiment forms an inflation cushion body 10B by splicing a plurality of inflation cushion bodies 10B together.
  • the inflation cushion body 10B forms an air-package bag 1B capable of accommodating a plurality of articles to be packaged.
  • the aeration buffer body 10B forms a gas storage unit 13B, a gas storage chamber 14B, an inflation port 152B and an inflation passage 14B by overlapping each other with a two-layer gas chamber film 11B and a second gas chamber film 12B.
  • the gas inlet 152B is connected to an air pump, and the gas is sent to the gas passage 14B, and then distributed to each of the gas storage chambers 14B, so that the gas storage unit 13B is filled with gas, thereby causing the gas cushion body 10B. With air cushioning.
  • the inflatable cushioning body 10B is folded to accommodate three items to be packaged, wherein the inflating cushion body 10B is equivalent to including three sub-inflated bodies, preferably three sub-inflating bodies.
  • the main body integrally forms the air cushion body 10B, thereby forming three receiving chambers 100B, each of which is separately opened and closed, and is suitable for separately placing each of the objects to be packaged.
  • each of the sub-inflating units in each of the accommodating chambers 100B is identical to the venting buffer body 10B in the first alternative embodiment described above, by sequentially connecting the side edges
  • the inflatable cushioning body 10B is then formed, which is then folded side by side to form the inflatable packaging bag 1B capable of accommodating three articles to be packaged.
  • the inflatable cushioning body 10B includes a plurality of rows of longitudinal plastic sealing slits 43B, wherein the longitudinal plastic sealing slits 43B are longitudinally disposed between adjacent ones of the sub-inflating units, and when the inflatable cushioning body 10B is folded, in the same longitudinal row
  • the longitudinal molding slits 43B are bonded together to form the respective accommodating cavities 100B, and each of the accommodating cavities 100B can be separated.
  • the two longitudinal longitudinal molding slits 43B are disposed on both sides of the central sub-inflating unit, so that the folded inflatable cushioning body 10B forms three receiving cavities 100B, and due to the longitudinal molding
  • the slit 43B is relatively thin, and the different portions of the inflatable cushion body 10B can be sealed without affecting the air cushioning effect after folding, so that the air-buffering effect between the objects to be packaged in different receiving chambers 100B is provided. Prevent them from colliding with each other to better protect the object to be packaged.
  • the air cushion body 10B is continuously provided with a plurality of rows of bending slits 37B, which are sequentially disposed laterally and at intervals, and the two adjacent bending slits 37B are connected to form four supporting portions 10b", specifically, the first column
  • the bending slit 371B is connected with the second row of bending slits 372B to form one of the connecting portions 10b", and the third row of the bending slits 373B is connected with the fourth row of the bending slits 374B to form one of the supporting portions 10b", and is located at
  • the sub-inflating unit between the second row of bending slits 372B and the third row of bending slits 373B forms a bottom wall 16B, and the supporting portion 10b" at the bottom is surrounded by the bottom wall 16B.
  • the three accommodating cavities 100B formed by the inflating unit in the second alternative embodiment are by way of example only, and other variants are conceivable by those skilled in the art, and two or more than three may be designed according to actual conditions.
  • the inflatable package 1B provided by the second alternative embodiment can meet the needs of the user to package a plurality of articles at the same time, for example, can simultaneously package a plurality of bottles of wine, beer, beverages, milk, etc., if people buy or transport at the same time When multiple items are available, fewer packages can be used to meet demand, saving costs and reducing space.
  • an inflatable packaging bag 1C is suitable for packaging a cylindrical article such as a wine bottle, and the bottle preferably has a bottle neck smaller than the bottle body thereof, and the bottle neck and the bottle body are both cylindrical.
  • the inflatable packaging bag 1C is folded to form the same shape as the wine bottle, so that the wine bottle is tightly wrapped in the air-filled packaging bag 1C, that is, the folded shape of the inflatable packaging bag 1C is shaped like the shape of the wine bottle Adapted and wrapped tightly around the outside of the bottle.
  • the at least one inflation valve 20 is installed in an inflation cushion body 10C, and the inflation cushion body 10C is inflated by an air pump to have an air cushioning effect, and the package to be packaged is packaged. Thereafter, it is suitable for protecting the object to be packaged.
  • the gas cushioning body 10C is formed by superposing a two-layer gas chamber film 11C and a second gas chamber film 12C, wherein the gas chamber films 11C and 12C are stacked together to form at least one gas storage unit 13C and a gas storage chamber. 14C, an inflation port 152C and a main passage 151C, each of the air storage chambers 14C is in communication with the main passage 151C and the inflation port 152C, and the inflation valve 20 is installed in each of the air storage chambers 14C to buffer the air.
  • the body 10C is inflated to have an air cushioning effect.
  • the aeration buffer body 10C is divided into a plurality of gas storage units 13C by a plurality of partition slits 31C, and each of the gas storage units 13C is independent of each other. If one of the gas storage units 13C is damaged, the other gas storage units 13C are not affected. Air cushioning.
  • the air cushioning body 10C is provided with a plurality of rows of fold seams 44C, wherein the fold seams 44C are longitudinally disposed at the upper and lower ends of the gas cushioning body 10C, respectively, on the heat seal line between the two gas storage units 13C, wherein
  • the lower portion of the inflatable cushioning body 10C includes three rows of lower folding slits 441C extending from the bottom of the inflatable cushioning body 10C toward the central portion of the inflatable cushioning body 10C, and the upper portion of the inflatable cushioning body 10C includes four rows of upper folding slits 442C.
  • the main passage 151C extends in the direction of the middle of the inflation cushion body 10C.
  • the upper folding slit 442C is present such that the upper end of the folding unit 10c"' is easily squeezed so that the space formed at the upper end of the folding unit 10c"' is smaller than the space formed by the lower end of the folding unit 10c"', so that The upper end of the folding unit 10c"' is adapted to the bottle neck of the bottle to be packaged so as to be in close contact with the bottle neck, so that the package is more tight, and the lower folding seam 441C is present, so that the bottom of the folding unit 10c"' is easily folded and formed.
  • the smoother bottom wall 16C forms an obstacle at the bottom of the accommodating chamber 100C to prevent the article to be package from slipping out of the accommodating chamber 100C.
  • the presence of the upper folding slit 442C and the lower folding slit 441C can change the lateral size of the air-filled pouch 1C so that the pouch pouch 1C can be attached to the pouch to be wrapped.
  • the heat seal line between the folding slit 44C and the gas storage unit 13C may be integrally formed, that is, the folding slit 44C may be implemented by heat sealing.
  • the air cushion body 10C is provided with four rows of bending slits 37C which heat seal the two air chamber films, so that the air cushion body 10C is easily folded to form the air bag 1C, from the lower end to the upper end of the folding unit 10c"'
  • a first row of bending slits 371C, a second row of bending slits 372C, a third row of bending slits 373C and a fourth row of bending slits 374C are sequentially disposed.
  • the first row of bending slits 371C and the second row of bending slits 372C are laterally disposed at the lower end of the inflatable cushioning body 10C, and the inflatable cushioning body 10C is bent by the first row of bending slits 371C and the second row
  • the slit 372C is laterally bent to form the bottom of the inflatable packaging bag 1C, wherein the sub-inflating chamber between the first row of bending slits 371C and the second row of bending slits 372C forms a supporting portion 10b"', wherein the support
  • the portion 10b"' encloses an elliptical structure to support the inflated package 1C, and the support portion 10b"' has an air cushioning function, so that the inflated package 1C can be stably stood and can also be well protected. Packing.
  • the lower portion of the inflatable cushioning body 10C is bent to form the bottom of the inflatable packaging bag 1C, and at the same time, It is convenient to manually open the bottom of the inflatable packaging bag 1C. After opening, it is convenient to put the wine bottle into the inflatable packaging bag 1C, and then bend it to form the bottom of the inflatable packaging bag 1C, along which the first column is bent.
  • the bottom portion is adapted to be bent and adapted to be stretched to open the air-filled pouch 1C to place or take out the article to be packaged therein, while also allowing the pouch pouch 1C to stand stably.
  • the third row of bending slits 373C and the fourth row of bending slits 374C are located at an upper portion of the inflatable cushioning body 10C such that the inflatable cushioning body 10C is adapted to bend along the third row of the bending slits 373C and the fourth row.
  • the crease 374C is bent, and after bending, the sub-inflating chamber between the third row of the bending slit 373C and the fourth row of the bending slit 374C is attached to the bottle of the package, for the cylindrical bottle Especially for beer bottles and red wine bottles, the bottle body and the bottle neck are cylindrical, and at the joint of the bottle body and the bottle neck, there is a bottle shoulder which is tapered from the bottle body to the bottle neck, and the folding unit 10c" 'The third column bending slit 373C and the fourth row bending slit 374C are laterally bent so that the upper and lower portions of the gas cushioning body 10C form an inclined angle, similar to the shape of the bottle, and then the third In the case where the column bending slit 373C and the fourth row bending slit 374C are bent, the sub-inflating chamber between the two is also bent into a shape corresponding to the bottle shoulder of the bottle, so that the inflation is enabled.
  • the buffer body 10C closely fits
  • the inflatable cushioning body 10C is laterally pressed, so that the upper folded portion of the folding unit 10c"' is smaller in size than the lower folded portion, that is, It is said that the four upper folding slits 442C are evenly and spacedly distributed in the air cushion body 10C.
  • the upper folding slits 442C are respectively located at the front and the rear of the air-filled bag 1C.
  • the upper folding slit 442C at the front portion and the upper folding slit 442C at the rear portion may be bonded together, so that the upper portion of the air-filled packaging bag 1C forms three small accommodating cavities, and the accommodating cavity size in the middle portion is
  • the bottle neck is sized so that the upper portion of the inflatable bag 1C is tightly attached to the bottle neck, preventing the bottle from shaking and protecting the bottle.
  • the inflatable cushioning body 10C is provided with two longitudinal plastic sealing slits 43C, wherein the longitudinal plastic sealing slits 43C are longitudinally disposed on both sides of the inflatable cushioning body 10C, so that the two sides of the inflatable cushioning body 10C are connected together to form a
  • the accommodating chamber 100C is configured to accommodate the object to be packaged, wherein the connection between the two sides of the venting buffer body 10C can be fixed by heat sealing or by other bonding means to fix the air cushion body 10C.
  • the top of the inflatable package 1C can be closed or not closed.
  • the top of the inflatable package 1C is closed to better protect the package to prevent debris from entering.
  • the receiving chamber 100C is a part of the receiving chamber 100C.
  • the inflation valve 20 includes valve membranes 21 and 22 which are shorter than the two layers of the plenum membranes 11 and 12, which are respectively superposed with the plenum membranes 11 and 12 for forming each
  • the air reservoir 14 of the gas storage unit 13 is inflated with an intake passage 23.
  • the inflation valve 20 may further include an additional layer of valve membrane 25 positioned between the two layers of the valve membranes 21 and 22 for enhanced sealing performance. As shown in Fig.
  • the inflation valve 20 may further include a layer of a valve membrane 26 located between a layer of the plenum membrane 12 and the valve membrane 22, i.e., on the outside of the two layers of the valve membranes 21 and 22, Thereby, the joint between the valve film 22 and the plenum film 12 is prevented from being torn to enhance the stable connection.
  • a layer of a valve membrane 26 located between a layer of the plenum membrane 12 and the valve membrane 22, i.e., on the outside of the two layers of the valve membranes 21 and 22, Thereby, the joint between the valve film 22 and the plenum film 12 is prevented from being torn to enhance the stable connection.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Buffer Packaging (AREA)

Abstract

一种便携式充气包装装置及其制造方法和使用方法,该便携式充气包装装置包括一充气包装袋(1)和一携带装置(9)。该充气包装袋包(1)括一充气缓冲体(10)和一系列平面塑封缝(30)。该充气缓冲体包括至少两层气室膜(11,12)。该平面塑封缝(30)能够将该气室膜(11,12)进行塑封,以形成一平面缓冲材料。该携带装置与该充气包装装置一起使用,以使包装于该充气包装袋的被包装物得到良好的缓冲并便于携带。

Description

便携式充气包装装置及其制造方法和包装方法 技术领域
本发明涉及一充气包装装置,尤其涉及一便携式充气包装装置及其制造方法和包装方法。
背景技术
在现代物流业中,最广泛应用的是包装盒(包装箱)。然而,这种传统的包装盒的包装方式,都没有提供防撞防碰防跌功能。也就是说,在运输或储存过程中,包装盒或包装箱会被扔来扔去,很容易导致其变形,从而可能会导致被包装物品的损坏或变形。所以对一些包装要求较高的物品,例如电子数码产品、塑料陶瓷、生物化工产品、食品医药等,都需要给包装物品提供缓冲作用,以防止包装物品在运输和储存过程中遭到损坏。现有的解决方案,例如传统的纸质包装盒,其可以是在纸质包装盒内部填充有缓冲材料如泡沫材料来达到提供缓冲作用的目的。然而,将这种包装盒和填充的缓冲材料运送到包装地时,其运输和储存的成本是非常昂贵的。而且缓冲泡沫材料污染环境,并不环保。
另外的改进方案是现在市面上可见的充气包装袋,其由四层薄膜经过一系列热封工艺形成,其中两层外层薄膜之间形成充气室,两层内层薄膜形成单向充气阀,以用于向对应的充气室中充入气体并且防止充气室中的气体泄露出去。其中两层外层薄膜经过一系列的折叠后形成可以容纳包装物品的容纳腔室,这样,包装物品可以在各个侧面受到充气包装袋的缓冲,以防止外界的冲击应力作用至包装物品,从而防止包装物品的损坏。然而,由两层外层薄膜形成的单层式充气包装袋的缓冲性能仍然有限,例如充气包装袋的一侧壁受到撞击时,该充气包装袋内空气不能有效分散,并且充气包装袋的侧壁不能及时恢复形状,造成冲击应力在局部过于集中,从而应力传递至包装物品,造成包装物品的损坏。
本申请人的在先发明和实用新型专利申请中揭露了一些能够应用于各种不同被包装物品的充气包装袋,以对被包装物品提供更好的包装盒保护,便于被包装物品的存储和运输。但是,目前市场上的大多数充气包装袋都仅仅是在运输过程中发挥更大作用。而一旦被消费者购买使用,该充气包装袋便容易被消费者抛弃。其主要原因有两方面,一是在人们越来越追求美感的现代生活中,这些充气包装袋的外观往往不足以令爱美的消费者随身携带;另一方面是,这些充气包装袋的便携性较差。
以便携电子产品为例,随着电子产品的日益便携化及其在人们日常生活中地位的不断上升,越来越多的消费者选择随身携带电子产品。很多消费者无论出差、 旅游还是探亲都随身携带笔记本电脑、平板电脑等便携电子产品,以满足工作、生活、娱乐、消费、学习等方面的需要。随着社会的进步,人们日常的工作环境的可选择性也日益增强。例如,许多消费者可以并且愿意自己选择喜欢的工作环境,例如公园、咖啡吧、甚至于海边,而无需一定要坐在固定的办公室里。这就给电子产品的包装和携带提出了更多新的要求。
传统的便携电子设备通常是被包装于固定的包装盒中,其中在包装盒中防止尺寸和形状与该包装盒以及所要容纳的电子设备相适应的泡沫缓冲材料。这种包装方法除了具有泡沫缓冲材料包装具有的共有缺点外,还具有以下几方面的缺点:
首先,便携性差。由于泡沫材料本身就比较脆弱,在进行包装设计使通常需要将泡沫材料外的包装盒需要密封严密、材质牢固。这在无形中增加了整体包装的重量。
其次,取用和存放不便。传统包装方式的外面的包装盒的包装密封严密,以防止该包装盒内的泡沫材料和电子产品受到损坏。这种包装盒的打开和闭合通常极为不便。这将大大影响消费者使用其作为日常携带包装装置的兴趣。
目前,市场上存在各种各样的便携电子设备保护壳。许多消费者选择在电子设备外加一个保护壳,然后将电子设备放置于双肩包、手提包中进行携带。所以消费者在携带电子设备使必须选择能够容纳电子设备的双肩包或者手提包。这样所携带的双肩包和手提包的尺寸需要与该电子设备相适应。虽然对于一些消费者来说这也能实现携带电子设备的目的。但是也会对许多消费者造成困扰。例如,一个爱美的女士,本想携带当今流行的迷你双肩包出门,却不得不为了携带尺寸较大的平板电脑而选择具有较大容纳空间的帆布包。比如,一些平时不喜欢带包的男士不得不为了携带一iPad而背起家里的双肩包出门。当然,这些还都不是问题的关键所在。采用这种携带方式的消费者可能都有过这样的担忧:包里的尖锐物品,例如钥匙是否会伤害到同样放置于包里的电子设备,例如电子设备的屏幕;电子设备所在的包所存放的东西是否太多,当需要其中一种物品时,很难快速找到。所以,消费者通常会为自己心爱的便携电子设备贴上保护膜并加上厚厚的保护壳,以免包里的其它物品对其造成伤害。
现今生活中,便携电子产品更新换代速度快,且广受人们的关注和喜欢。便携电子产品也成为许多消费者馈赠亲友的一个很好选择。各大电子产品门店的销售量也很火爆。提供一种轻便、易于携带、方便取用、且能够对电子产品进行良好保护的便携充气包装装置很有必要。
为更好满足消费者和市场的需求,本申请人研究出一种便携式充气包装袋及其便携充气包装装置。
发明内容
本发明的一个目的在于提供一种便携式充气包装袋。
本发明的另一目的在于提供一种充气包装袋的便携式组合。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于包装便携电子设备。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于包装便携电子设备及其配件。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于包装日常所需携带的物品。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中在一个具体应用中,该便携式充气包装袋适于包装酒类,例如红酒。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋被单独用于包装被包装物时具有便携性。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中被该便携式充气包装袋包装的被包装物易于被取用。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋包装被包装物时,包装方便、快速、易操作。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋的外表面能够被设置各种图案和logo。
本发明的另一目的在于提供一种便携式充气包装袋及其制造方法和包装方法,其中该便携式充气包装袋具有一开口,其中该开口被闭合时适于设置防伪标志
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于手提,其中当消费者对该便携式充气包装袋进行手提时,能够帮助被包装于该便携式充气包装袋的被包装物更安全地包装于该便携式充气包装袋。
本发明的另一目的在于提供一种便携式充气包装袋和充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于被设置于一软纸袋。
本发明的另一目的在于提供一种便携式充气包装袋和充气包装装置及其制造方法和包装方法,其中该便携式充气包装袋适于被设置于一便携包装盒。
本发明的另一目的在于提供一种便携式充气包装袋和充气包装装置及其制造方法和包装方法,其中该充气包装装置即能为被包装物品提供良好的保护,又具有符合消费者审美的外观。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该充气包装装置适于展示被包装物品相关的信息,例如产品logo、产品优势、性能和使用方法等。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装 方法,其中该充气包装装置适于手提,其中当消费者对该便携式充气包装袋进行手提时,能够帮助被包装于该便携式充气包装袋的被包装物更安全地包装于该充气包装装置。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,可使用功能材料,使其具有保温、防辐射等多种功效,得以满足运输、储存需求。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该制造方法简单,成本低廉,用途广泛。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,即能够满足被包装物的被运输和存储的包装需求,又能够满足日常携带被包装物的需求。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,适于包装便携物品。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该充气包装装置包括一充气包装袋,其中该充气包装袋包括一携带部,其中该携带部被用于使该充气包装袋方便被消费者携带。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该充气包装装置包括一充气包装袋和一外包装袋,其中该外包装袋的尺寸和形状与该充气包装袋相适应,以使该外包装袋能够被包装于该充气包装袋的外部。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该充气包装装置包括一充气包装袋和一外包装组件,其中该外包装组件适于设置被包装物的相关信息。
本发明的另一目的在于提供一种便携式充气包装装置及其制造方法和包装方法,其中该充气包装装置包括一充气包装袋和一功能袋,其中该功能袋能够为被包装物提供预设功能,例如保温、防辐射等,以满足运输、储存需求。
通过下面的描述,本发明的其它优势和特征将会变得显而易见,并可以通过权利要求书中特别指出的手段和组合得到实现。
依本发明,前述以及其它目的和优势可以通过一用于包装被包装物的便携式充气包装装置实现,其中所述充气包装装置包括:
一充气包装袋;和
一携带装置;
其中所述充气包装袋包括一充气缓冲体和一系列平面塑封缝,其中所述充气缓冲体包括至少两层气室膜,其中所述平面塑封缝能够将所述气室膜进行塑封,以形成一平面缓冲材料;
其中所述携带装置与所述充气包装装置一起使用,以使包装于所述充气包装 袋的该被包装物得到良好的缓冲并具有便携性。
根据一个实施例,所述充气包装袋还包括一系列立体塑封缝,其中所述立体塑封缝将所述平面缓冲材料进一步塑封而使所述充气包装袋形成具有空间立体构型并且能够容纳所述包装物品的所述立体包装装置,其中在所述携带装置的大小和形状与所述充气包装袋相适应,以使所述携带装置对包装该被包装物的充气包装袋进行进一步包装。
根据一个实施例,所述充气包装袋还包括至少一充气阀,以方便对所述充气缓冲体进行充气,其中所述携带装置包括一携带主体,其中通过携带所述携带主体来携带所述充气包装袋及被包装于所述充气包装袋的该被包装物。
根据一个实施例,所述携带装置还包括一携带元件,其中所述携带元件被设置于所述携带主体,以方便对所述携带主体进行携带。
根据一个实施例,所述携带主体被设置于所述充气包装袋,以与所述充气包装袋进行固定连接。
根据一个实施例,所述携带主体与所述充气包装袋的一部分进行固定连接,以方便通过所述充气包装袋展示包装于所述充气包装袋的被包装物。
根据一个实施例,在所述携带装置的一包装状态,所述携带装置形成一包装腔,其中所述包装腔被用于容纳所述充气包装袋,以对所述充气包装袋进行包装并通过携带所述携带主体来携带所述充气包装袋及被包装于所述充气包装袋的该被包装物。
根据一个实施例,所述携带装置能够被收缩,以便对所述携带装置进行存放、储存和运输。
根据一个实施例,对所述携带装置进行收缩的方式选自折叠和卷折。
根据一个实施例,所述携带装置的所述携带主体的材质选自纸、布和塑料。
根据一个实施例,所述便携式充气包装装置还包括一功能袋,以为包装于所述充气包装袋的该被包装物提供预设功能的保护。
根据一个实施例,中所述便携式充气包装装置还包括一包装箱,其中所述包装箱能够被包装于所述充气包装袋的外部。
根据一个实施例,所述充气包装袋包括一便携元件,其中所述便携元件被设置于所述充气缓冲体,以使所述充气包装袋被单独使用时也具有便携性。
根据一个实施例,所述便携元件包括一便携体并具有一对便携孔,其中所述便携孔形成于所述便携体,其中所述便携体形成与所述充气缓冲体。
根据一个实施例,所述充气包装袋包括一包装主体、一侧翼缓冲部和一侧包装体,其中所述包装主体具有一主容纳腔,其中所述侧翼缓冲部具有一侧翼缓冲腔,其中所述侧包装体具有一侧容纳腔,其中所述主容纳腔、所述侧翼缓冲腔和所述侧容纳腔分开设置。
根据一个实施例,所述平面塑封缝包括一系列弯折缝,其中所述平面缓冲材 料沿所述弯折缝进行弯折以形成所述包装主体、所述侧翼缓冲部和所述侧包装体。
根据一个实施例,所述弯折缝包括一系列侧翼弯折缝、一系列主包装弯折缝和一系列侧包装弯折缝,其中所述侧翼弯折缝被设置于所述侧翼缓冲部,其中所述主包装弯折缝被设置于所述包装主体,其中所述侧包装弯折缝被设置于所述侧包装体。
根据一个实施例,所述立体塑封缝包括一列第一分室缝,其中所述第一分室缝用于间隔所述主容纳腔和所述侧翼缓冲腔。
根据一个实施例,所述立体塑封缝还包括一列第二分室缝,其中所述第二分室缝用于间隔所述主容纳腔和所述侧容纳腔。
根据一个实施例,所述立体塑封缝还包括一横向塑封缝,其中所述横向塑封缝被设置于所述包装主体的底侧,以在底侧对所述包装主体进行封合。
根据一个实施例,所述充气包装袋还包括一侧压缓冲部,其中所述侧压缓冲部与所述包装主体、所述侧翼缓冲部和所述侧包装体相互配合,以为包装于所述充气包装袋的该被包装物提供多级缓冲。
根据一个实施例,所述主容纳腔具有一开口,其中所述充气包装袋还包括一闭合装置,其中所述闭合装置被用于闭合所述开口。
根据一个实施例,所述充气包装袋包括一包装主体和至少一站立部,其中所述站立部与所述包装主体连接并使所述充气包装袋能够站立。
根据一个实施例,所述平面塑封缝包括多列弯折缝,其中所述平面缓冲材料沿所述弯折缝进行弯折,以使所述充气包装袋具有预设形状。
根据一个实施例,所述立体塑封缝包括一个以上纵向塑封缝,其分别设于所述充气缓冲体两侧的边缘,以将所述充气缓冲体连接,以形成所述主容纳腔。通过对随后的描述和附图的理解,本发明进一步的目的和优势将得以充分体现。
本发明的这些和其它目的、特点和优势,通过下述的详细说明,附图和权利要求得以充分体现。
附图说明
图1阐释了根据本发明的优选实施例的一充气包装袋充气包装装置。
图2是根据本发明的上述优选实施例的该充气包装袋充气包装装置的一充气包装袋的立体图。
图3是根据本发明的上述优选实施例的该充气包装袋充气包装装置的该充气包装袋的剖视图。
图4是根据本发明的上述优选实施例的该充气包装袋充气包装装置的该充气包装袋的一未充气状态的展开示意图。
图5阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的一 携带装置。
图6阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的一包装盒。
图7阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的一功能袋。
图8A阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的一种使用状态。
图8B阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的另一种使用状态。
图9阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该功能袋的一种可替换实施方式。
图10A阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该携带装置的一种可替换实施方式。
图10B阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该携带装置的另一种可替换实施方式。
图10C阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该携带装置的另一种可替换实施方式。
图11A~11D阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该充气包装袋的一种可替换实施方式。
图12A~12B阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该充气包装袋的另一种可替换实施方式。
图13A~13E阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该充气包装袋的另一种可替换实施方式。
图14是根据本发明的上述优选实施例及其可替换实施方式的充气包装袋的充气阀的剖视结构示意图。
图15是根据本发明的上述优选实施例及其可替换实施方式的充气包装袋的充气阀的一个变形实施方式的剖视结构示意图。
图16是根据本发明的上述优选实施例及其可替换实施方式的充气包装袋的充气阀的另一个变形实施方式的剖视结构示意图。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
附图之图1阐释了依据本发明的优选实施例的一便携式充气包装装置。如图 所示,该便携式充气包装装置包括一充气包装袋1和一携带装置9,其中该携带装置9被设置于该充气包装袋1的外部,以对该充气包装袋1进行进一步包装。该携带装置9包括一携带主体91和一携带元件92,其中该携带主体91的形状与尺寸与该充气包装袋1的形状与尺寸相适应,以使该充气包装袋1能够被该携带主体包装。该携带元件92被设置于该携带主体91,以方便通过该携带元件92对该携带主体91及包装于该携带主体91的该充气包装袋1进行携带,并进一步方便对包装于该充气包装袋1的被包装物W进行携带。
更具体地,在该携带装置9对该充气包装袋1进行包装时,该携带装置9处于一包装状态,其中在该携带装置9的该包装状态,该携带装置9形成一包装腔900,其中该包装腔被用于容纳该充气包装袋1,以对该充气包装袋1进行包装。值得一提的是,在该携带装置9的该包装状态,该包装腔900的形状与尺寸与该充气包装袋1的外部形状与尺寸相适应,以使该充气包装袋1能够被牢固包装于该包装腔900,以充分保障,在该携带装置9的该包装状态,该充气包装袋1充气包装装置的整体外观的美观以及被包装物W的安全。
依据本发明的该优选实施例,在该携带装置9未对该充气包装袋1进行包装时,该携带装置9能够通过折叠、卷折等方式被收纳,以使该携带装置9处于一收纳状态。在该携带装置9的该收纳状态,该携带装置9占用较小的空间,易于被携带、运输、存储和收纳。依据本发明,该携带装置9的这种收纳状态可以通过折叠、卷折等方式来实现,本发明在这方面不受限制。
依据本发明的该优选实施例,该携带装置9具体实施为一软质袋,例如布袋、纸袋、塑料袋等。依据本发明,“软质袋”是指即能形成该携带装置9的该包装状态,又能够被收纳为该携带装置9的该收纳状态的袋装置。只要能够达到上述要求,本发明对材质和具体收纳状态的形状不受限制。
附图之图2~图4阐释了依据本发明的上述优选实施例的该充气充气包装装置的该充气包装袋1。如图所示,该充气包装袋1具有可充气结构,以在充气后可以为各种包装物品如电子产品、食品、医药产品、化工原料、生物材料、塑料陶瓷、快速消费品等提供气体缓冲效果,而且在未使用时,可以不充气而方便存储和运输,在使用时再现场充气,从而使用非常方便。
在本发明的这个优选实施例中,该充气包装袋1可以实施为空气缓冲材料,即充入的气体以空气为例,当然本领域技术人员可以理解的是,在应用中根据需要也可能是其他气体。依据本发明,在应用中,根据需要,对该充气包装袋1进行填充的也可以是除气体之外的其它流体。在这个优选实施例中,其在充气后可以形成一立体包装袋,从而为一包装物品提供空气缓冲效果。
在这个优选实施例中,该充气包装袋1包括至少一充气缓冲体10,即由一个充气缓冲体10形成一个立体包装袋或多个充气缓冲体10经塑封连接如粘接或热封形成该立体包装袋。在本发明的图2至图4所示的示例中,其由一个充气缓冲 体10形成。更具体地,参照图14,该充气缓冲体10包括至少两层气室膜11和12。经一系列平面塑封缝30和立体塑封缝40形成包括一个或多个相连接的储气单元13的该立体包装袋。各个储气单元13内形成一个可储气的储气室14。
本领域技术人员可以理解的是,该平面塑封缝30用于将多层薄膜经塑封形成如图4所示的一个平面缓冲材料,该立体塑封缝40用于将上述平面缓冲材料进一步塑封而使该充气包装袋1形成具有空间立体构型并且能够容纳该包装物品的该立体包装装置,如图2中所示。该平面塑封缝30和该立体塑封缝40可以通过粘接或热封连接的方式将多层薄膜连接在一起。优选地,在这个实施例中,该平面塑封缝30和该立体塑封缝40可以都实施为由热封工艺形成。
更具体地,该平面塑封缝30包括多列分隔缝31,其对两层气室膜11和12进行连接,以将该充气缓冲体10分隔成多个储气单元13。优选地,各列该分隔缝31通过热封工艺形成,其热封连接两层气室膜11和12,从而相邻两个储气单元13之间形成一列分隔缝31。该分隔缝31可以是连续的热封线,从而使多个储气单元13互相独立。可以理解的是,如图4中所示,顶侧和底侧的两列分隔缝31能够分别成为该充气缓冲体10的顶侧边界缝和底侧边界缝。依据本发明,该分隔缝31也可以是断续的热封线,从而使多个储气单元13互相连通。该储气单元13可以是各种形状,如条形,圆形,多边形或其他不规则形状等,如图2至图4中所示,本发明的该充气缓冲体10可以包括多个并排排列的充气柱,但本方明在这方面并不受到限制。
在这个优选实施例中,参考图14,该充气包装袋1进一步地包括由至少两层阀膜21和22形成的一充气阀20,该充气阀20的该阀膜21和22与该气室膜11和12互相叠合地设置,并且在该阀膜21和22之间形成用于向该储气室14充气的进气通道23。可以理解的是,该阀膜21和22的长度短于该气室膜11和12。当通过该进气通道23向该储气室14中充气并且该储气室14中的气压达到预定要求时,该储气室14中的气压作用在该阀膜21和22上,以使该阀膜21和22贴合于其中一层气室膜11或12,从而封闭该进气通道23,以使该充气阀20起到单向阀的作用。每个储气单元13内形成至少一个进气通道23,并且各个储气单元13互相独立,当其中一个储气单元13发生损坏漏气时,其他的储气单元13并不会被影响,还能起到空气缓冲效果。
可以理解的是,该充气缓冲体10的该气室膜11和12以及该充气阀20的该阀膜21和22分别可以由各种合适的薄膜材料制成,如聚乙烯薄膜、聚丙烯薄膜、聚氯乙烯薄膜、聚酯薄膜、聚苯乙烯薄膜或复合薄膜等,本发明在这方面也并不受到限制,只要是合适的柔性薄膜即可。值得一提的是,为了增加单向密封效果,该充气阀20的该阀膜21和22也可以是由上述薄膜经添加化学成分而改性得到的自粘性薄膜。
该充气缓冲体10进一步地包括一主通道单元15,其连接于各个储气单元13。 优选地,其一体地延伸于各个储气单元13。更具体地,在这个优选实施例中,该主通道单元15与该储气单元13的延伸方向相垂直。例如,在这个实施例中,各个储气单元13沿着横向方向延伸,该主通道单元15沿着纵向方向延伸。该主通道单元15形成一主通道151,并且该主通道151具有一充气口152,当该充气口152的位置设置有充气嘴并且执行充气操作时,气体从该充气口152沿着纵向方向进入该主通道151,并且再沿着横向方向进入各个储气单元13,并且当各个储气室14中达到预定气压后,该充气阀20的该阀膜21和22贴合于其中一层气室膜11或12,从而实现自封闭,以防止充入的气体再反渗进入该主通道151。
值得一提的是,可以理解的是,该主通道单元15可以由两层气室膜11和12形成,也可以由两层阀膜21和22形成,或者由其中一层气室膜11或12和其中一层阀膜21或22形成。
如图4中所示,该平面塑封缝30进一步地包括分别位于该充气缓冲体10的左右两侧的连续密封的一边封缝32和左侧的一连续密封的主通道密封缝33,其中左侧边封缝32和该主通道密封缝33之间形成该主通道151。可以理解的是,该边封缝32通过塑封工艺如粘接或热封形成并且封合连接两层气室膜11和12,其中该主通道密封缝33通过塑封工艺如粘接或热封形成并且将两层气室膜11和12和两层阀膜21和22分别连接在一起,如图14中所示,例如通过一次热封工艺而形成的上下两侧的该主通道密封缝33分别将该气室膜11和该阀膜21热封连接,以及将该气室膜12和该阀膜22热封连接。
如图4中所示,各个储气单元13在邻近该主通道151的位置各自包括两列互相间隔的导气缝34,其由热封连接该阀膜21和22以及其中一层气室膜11或12形成,该阀膜21和22形成的该进气通道23位于两列导气缝34之间。
参照图14,该阀膜21和22进一步地通过多个连接缝35热封连接至该气室膜11,这样在该储气室14中达到预定的气压时,气压作用于该阀膜21和22,并且因为该连接缝35的设置而同时被压向该气室膜11并最终贴合于该气室膜11,从而关闭该进气通道23。即该连接缝35热封连接两层阀膜21和22以及一层气室膜11。另外,如图4中所示,各个连接缝35的形状的设计使得其还进一步地起到防止气体回流的作用,也就是说,当该储气室14中的气体想要回流时,会被该连接缝35所阻挡而不能轻易地反渗进入该主通道151。
另外,在热封形成这些平面塑封缝30时,该充气阀20的该阀膜21和22形成的该进气通道23可以通过设置耐热阻隔装置而形成,在热封工艺之后,再取出该耐热阻隔装置。在这个优选实施例中,该充气阀20的该阀膜21和22之间设置有一耐热层24,如图4和图14中所示,例如可以是耐热油墨,其贴附于其中一层阀膜21或22的内表面,这样,在热封形成该主通道密封缝33时,两层阀膜21和22不会热封连接,从而该进气通道23得以能够与该主通道151相连通,而不会因热封而将其进入口关闭。
在这个优选实施例中,该主通道151由两层气室膜11和12形成,其中该耐热层24和该阀膜21和22各自有延伸段进入该主通道151,其中该平面塑封缝30还包括对应于该耐热层24的延伸段的位置的一列互相间隔的沿纵向方向排列的接合缝36。因为该耐热层24的设置,该接合缝36将两层气室膜11和12和两层阀膜21和22分别连接在一起,而两层阀膜21和22没有热封连接,该接合缝36的设置使得该充气缓冲体10在充气时,气体进入该主通道151后,相邻的该阀膜21和22与对应连接的该气室膜11和12能够一起膨胀而打开对应的该进气通道23。
该平面塑封缝30还包括多列呈间断热封的弯折缝37。该弯折缝37通过塑封工艺如粘接或热封形成。充气后的该充气缓冲体10适合于沿着该弯折缝37弯折,从而使该充气缓冲体10形成多个侧壁。更具体地,该弯折缝37将各个储气单元13分成多个子储气单元131,该弯折缝可以位于该储气单元13的中部位置,并且两侧分别形成一连通通道132,这样相邻的该子储气单元131得以互相连通,如图4所示。可以理解的是,该弯折缝也可以位于该储气单元13的两侧,而该连通通道132位于该储气单元13的中部位置。相应地,可以理解的是,各列该弯折缝37热封连接两层气室膜11和12。
该立体塑封缝40包括一系列分室缝41,其中该分室缝41被用于将该充气缓冲体10形成的该充气包装袋1分为多个不同的容纳空间。例如,依据本发明的该优选实施例,该分室缝41使该充气包装袋1分别形成一主主容纳腔100a、一侧翼缓冲腔100b和一侧容纳腔100c。
具体地,该分室缝41包括一列第一分室缝411和一列第二分室缝412,其中该第一分室缝411通过塑封工艺如粘接或热封形成并且封合连接折叠后的气室膜11和12形成的四层膜,其中该第二分室缝412通过塑封工艺如粘接或热封形成并且封合连接折叠后的气室膜11和12形成的六层膜。该第一分室缝411和一列第二分室缝412的设置使该充气包装袋1的该充气缓冲体10形成一包装主体10a、一侧翼缓冲部10b和一侧包装体10c。
具体的,每一储气单元13设置一第一分室缝411和一第二分室缝412。该第一分室缝411和第二分室缝412该使各个该储气单元13形成一对处于相对位置的主体储气单元13a、一侧翼储气单元13b和一侧储气单元13c。该主体储气单元13a之间相互连接,以形成该包装主体10a。该侧翼储气单元13b通过特定方式进行折叠并通过该第一分室缝411进行封合,以形成该侧翼缓冲部10b,并使该侧翼缓冲部10b形成该侧翼缓冲腔100b。该侧储气单元13c通过特定方式进行折叠并通过该第二分室缝412进行封合,以形成该侧包装体10c,并使该侧包装体10c形成该侧容纳腔100c。更具体的,该第一分室缝411和该第二分室缝412位于该储气单元13的中部位置,并且两侧分别形成该连通通道132,以使每一该储气单元13的该主体储气单元13a和该侧翼储气单元13b相互连通。可以 理解的是,所第一分室缝411和该第二分室缝412也可以位于该储气单元13的两侧,而该连通通道132位于该储气单元13的中部位置。相应地,可以理解的是,该第一分室缝411热封连接两层该气室膜11和12折叠后形成的四层气室膜。具体地,将该充气缓冲体10折叠后,通过该第一分室缝411将该气室膜11和12重叠后形成的处于相对应位置上的四层气室膜连接于一起。值得一提的是,该第一分室缝411既可以在将该充气缓冲体10进行预设折叠后通过一次封合形成,也可以首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次热封形成。
如图所示,依据本发明的该优选实施例,该第二分室缝412热封连接该气室膜11和12折叠后形成的六层气室膜。值得一提的是,该第二分室缝412既可以在将该充气缓冲体10进行对折后通过一次封合形成,也可以首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次热封形成。
具体地,该第二分室缝412通过塑封工艺如粘接或热封形成并且将该气室膜11和12形成的该充气缓冲体10的左右两侧封合于该充气缓冲体10的一预设位置,以使该包装主体10a和该侧包装体10c分别形成相互间隔的容纳空间。依据本发明的该优选实施例,该充气缓冲体10的左右两侧被热封于该充气缓冲体10的同一位置,以简化生产工艺,并充分保证该充气包装袋1的安全、稳定性。本发明在这方面不受限制。本领域技术人员应该能够理解,依据本发明的其它实施例,该充气缓冲体10的左右两侧也可以被热封于该充气缓冲体10的不同位置,以满足不同的包装需求。
依据本发明的该优选实施例,该第二分室缝412热封该充气缓冲体10左右两侧的位置均位于该边封缝32的外侧。本发明在这方面不受限制。本领域技术人员应该能够理解,依据本发明的其它实施例,该第二分室缝412热封该充气缓冲体10左右两侧的位置也可以被设置于该边封缝32所形成的封合线上。该第二分室缝412可以在将该充气缓冲体10进行预设折叠后通过一次封合形成,也可以首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次封合形成。本发明在这方面不受限制。
值得一提的是,依据本发明的该优选实施例,该第二分室缝412不仅仅使该包装主体10a和该侧包装体10c分别形成相互间隔的容纳空间,而且封合了该充气缓冲体10的左右两侧,这仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该第二分室缝412也可以不用来封合该充气缓冲体10的左右两侧。封合该充气缓冲体10左右两侧也可以通过其它的方式来实现。
如图所示,该充气缓冲体10沿该第一分室缝411和该第二分室缝412进行封合后所形成的该包装主体10a由相互连接的两部分组成。具体地,该立体塑封缝40还包括一横向塑封缝42,其被设置于该包装主体10a的底侧,以在底侧对该包装主体10a的两部分进行封合,从而使该包装主体10a形成一包装前壁101a 和一包装后壁102a。该包装前壁101a和该包装后壁102a共同包容该主容纳腔100a,其被用于容纳被包装物品。
该横向塑封缝42可以各自位于该充气缓冲体10底侧的该分隔缝31的位置,也可以通过一次热封同时形成该分隔缝31和该塑封缝42。
如图所示,该充气包装袋1还包括一侧压缓冲部10d,其被设置于该充气缓冲体10的底侧,以对该包装主体10a提供缓冲,进而与该包装主体10a相互配合,以对被包装于该包装主体10a的被包装物品提供多级缓冲。具体地,该侧压缓冲部10d包括一侧压储气单元13d。该侧压储气单元13d经过一系列折叠、热封,以形成该充气包装袋1的该侧压缓冲部10d。更具体地,该侧压储气单元13d沿设置于其的该第一分室缝411和该第二分室缝412进行热封后被分为主体侧压储气单元139d、侧翼侧压储气单元138d和侧包装侧压储气单元137d,其中该主体侧压储气单元139d通过该横向塑封缝42相互连接,以形成该包装主体10a底侧的主体侧压缓冲部101d。该侧翼侧压储气单元138d与该侧翼储气单元13b一体连接,以形成该侧翼缓冲部10b底侧的侧翼侧压缓冲部102d。该侧包装侧压储气单元137d与该侧储气单元13c一体连接,以形成该侧包装体10c底侧的侧包装侧压缓冲部103d。
值得一提的是,该侧翼侧压缓冲部102d以及该侧包装侧压缓冲部103d不仅具有侧部缓冲的作用,还能够帮助包装有被包装物的该充气包装袋1进行站立,如图所示,该主体侧压储气单元139d被该横向塑封缝42连接并进行充气膨胀后,受到两个主体侧压储气单元139d内的气体的作用,两个主体侧压储气单元139d向相反的方向张开。所以,该侧翼侧压储气单元138d形成的该侧翼侧压缓冲部102d以及该侧包装侧压储气单元137d形成的该侧包装侧压缓冲部103d较之该主体侧压储气单元139d形成的该主体侧压缓冲部101d较为凸出。当被包装物通过该充气包装袋1进行包装后,可以通过该侧翼侧压缓冲部102d和该侧包装侧压缓冲部103d进行类似两脚的站立。从而使本发明的所述充气包装袋形成一站立式包装袋,在使用者携带外出时,可以方便地将本发明的所述便携式充气包装装置以站立式状态摆放于工作台面或其他环境表面等。
该横向塑封缝42可以是连续的热封线,从而使该主体侧压储气单元139d与其所临近的该主体储气单元13a互相独立。该横向塑封缝42也可以是断续的热封线,从而使该主体侧压储气单元139d与其所临近的该主体储气单元13a互相连通。
值得一提的是,依据本发明的该优选实施例,该横向塑封缝42与该分隔缝31的其中之一的其中一部分重合。这仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该横向塑封缝42也可以设置为不与该分隔缝31重合。依据本发明的该优选实施例,该横向塑封缝42与该多个分隔缝31平行,这也仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该横向塑封缝42也可以 设置为不与该分隔缝31平行。
值得一提的是,依据本发明的该优选实施例,该侧压缓冲部10d由一对处于相对位置的侧压储气单元13d形成。这仅仅是对本发明的示例而非限制。本领域技术人员应该能够理解,该侧压缓冲部10d也可以由多对侧压储气单元13d形成,其中多对该侧压储气单元13d之间可以通过该分隔缝31连接。
依据本发明的该优选实施例,该主体侧压储气单元139d、该侧翼侧压储气单元138d以及该侧包装侧压储气单元137d由一个完整的侧压储气单元13d形成。这仅仅是对本发明的示例而非限制。本领域技术人员应该能够理解,当该横向塑封缝42不与该分隔缝31重合时,该横向塑封缝42的位置可能对应于一个储气单元13的中间部位。这时,在未设置该横向塑封缝42的位置,该侧压缓冲部10d的该侧压储气单元13d可能要与该包装主体10a底侧的该主体储气单元13a、该侧翼缓冲部10b底侧的该侧翼储气单元13b或者该侧包装体10c底侧的该侧储气单元13c相连通。比如,该侧压储气单元13d的该侧翼侧压储气单元138d与相邻的侧翼储气单元13b以及侧储气单元13c在实际结构上为一个储气单元13。本领域技术人员应该能够理解,类似于这种实施方式的充气包装袋1也属于本发明的范围。换言之,任何能够实现本发明的上述目的的充气包装袋1都在本发明的范围之内。
如图4所示,在平面展开图中,该第一分室缝411被展开而分成两列,并且两列之间形成该侧翼缓冲部10b。另外,需要指出的是,虽然图4所示的是经该平面塑封缝30塑封形成的平面缓冲材料,其也进一步地示意了该立体塑封缝40的位置,从而更方便地理解该立体包装袋的形成过程。为方便对该充气包装袋1进行进一步详细介绍,将该第一分室缝411在该平面展开图中的位置予以标记。如图4所示,该第一分室缝411被展开而分成的两列分别被标记为411a和411b。本领域技术人员应该能够理解,在本发明中,411a和411b均是指该第一分室缝411,其仅仅是用来标记该第一分室缝411在进行缝合前的位置,其为方便对本发明的实施例进行详细介绍而进行标记,并非对本发明的限制。值得一提的是,如前所述,该第一分室缝411可以在将该充气缓冲体10进行预设折叠后通过一次封合形成,也可以首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次封合形成。本发明在这方面不受限制。如果该第一分室缝411是通过首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次封合形成,上述标记411a和411b能够用来标记形成该第一分室缝411时对该平面材料进行一次封合的位置。
如图4所示,依据本发明的该优选实施例,在平面展开图中,该第二分室缝412被展开而分成三列。为方便对该充气包装袋1进行进一步详细介绍,将该第二分室缝412在该平面展开图中的位置予以标记。如图4所示,该第二分室缝412被展开而分成的三列分别被标记为412a、412b和412c。在如图4所示的两 列412b和412c之间形成该侧包装体10c。本领域技术人员应该能够理解,在本发明中,412a、412b和412c均是指该第二分室缝412,其仅仅是用来标记该第二分室缝412在进行缝合前的位置,其为方便对本发明的实施例进行详细介绍而进行标记,并非对本发明的限制。值得一提的是,如前所述,该第二分室缝412可以在将该充气缓冲体10进行预设折叠后通过一次封合形成,也可以首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次封合形成。本发明在这方面不受限制。如果该第二分室缝412是通过首先在该平面缓冲材料进行一次封合,然后在折叠后于相应位置上进行二次封合形成,上述标记412a、412b和412c能够用来标记形成该第二分室缝412时对该平面材料进行一次封合的位置。
该平面塑封缝30还包括多列呈间断热封的弯折缝37,充气后的该充气缓冲体10适合于沿着该弯折缝37弯折,从而使该充气缓冲体10形成多个侧壁。更具体地,该弯折缝37将各个该储气单元13分成多个子储气单元131,该弯折缝可以位于该储气单元13的中部位置,并且两侧分别形成一连通通道132,这样相邻的该子储气单元131得以互相连通,如图4所示。可以理解的是,该弯折缝37也可以位于该储气单元13的两侧,而该连通通道132位于该储气单元13的中部位置。相应地,可以理解的是,各列该弯折缝37热封连接两层该气室膜11和12。依据本发明的该优选实施例,该弯折缝37包括一系列侧翼弯折缝371,其中该侧翼弯折缝371分列纵向排布。具体地该侧翼弯折缝371包括一列第一侧翼弯折缝3711、一列第二侧翼弯折缝3712、一列第三侧翼弯折缝3713和一列第四侧翼弯折缝3714,其中该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714均被设置于该侧翼缓冲部10b的该侧翼储气单元13b。该侧翼缓冲部10b沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714进行弯折并通过该第一分室缝411进行封合后形成的该侧翼缓冲部10b具有一五边形截面,如图所示。具体地,该侧翼缓冲部10b包括一前支撑壁101b、一后支撑壁102b、一侧缓冲壁103b、一前缓冲壁104b和一后缓冲壁105b,其中该前支撑壁101b由该第一分室缝411a和该第一侧翼弯折缝3711之间的该子储气单元131形成。该后支撑壁102b由该第一分室缝411b和该第四侧翼弯折缝3714之间的该子储气单元131形成。该侧缓冲壁103b由该第二侧翼弯折缝3712和该第三侧翼弯折缝3713之间的该子储气单元131形成。该前缓冲壁104b由该第二侧翼弯折缝3712和该第一侧翼弯折缝3711之间的该子储气单元131形成。该后缓冲壁105b由该第三侧翼弯折缝3713和该第四侧翼弯折缝3714之间的该子储气单元131形成。更具体地,沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714进行弯折后并通过该第一分室缝411进行封合后每一该储气单元13形成的子储气单元131分别被用于形成该前支撑壁 101b、该后支撑壁102b、该侧缓冲壁103b、该前缓冲壁104b和该后缓冲壁105b。依据本发明的该优选实施例,对每一该储气单元13,该第一侧翼弯折缝3711到该第二侧翼弯折缝3712的距离等于第四侧翼弯折缝3714到该第三侧翼弯折缝3713之间的距离并且该第一侧翼弯折缝3711到该第一分室缝411的距离与该第四侧翼弯折缝3714到该第一分室缝411的距离相等,以使充气后的该充气包装袋1的通过该横向塑封缝42封合后的该包装主体10a与该侧缓冲壁103b垂直。本领域技术人员应该能够理解,这种结构只是为实现该充气包装袋1站立功能的一个示例而非限制。
值得一提的是,该侧翼缓冲部10b被折叠为具有五边形截面仅仅是对本发明的示例而非限制。依据本发明的气体实施方式该侧翼缓冲部10b还可以被折叠为其他形状截面。该侧翼缓冲部10b也可以不被折叠,而仅仅是依靠气柱自身的作用弯曲为一定的形状,例如圆柱形。
如图所示,平面塑封缝30进一步包括一系列主包装弯折缝372,其中该主包装弯折缝372包括一列第一主包装弯折缝3721和一列第二主包装弯折缝3722,其中该第一主包装弯折缝3721和该第二主包装弯折缝3722被设置于该充气缓冲体10。该包装主体10a沿该第一主包装弯折缝3721进行弯折,以使该包装主体10a的该包装前壁101a形成一主包装前壁1011a和一支撑包装前壁1012a。该包装主体10a沿该第二主包装弯折缝3722进行弯折,以使该包装主体10a的该包装后壁102a形成一主包装后壁1021a和一支撑包装后壁1022a。
值得一提的是,除该第一主包装弯折缝3721和该第二主包装弯折缝3722之外,该包装主体10a并未设置明显的第三列主包装弯折缝,但是该包装主体10a能够沿该主通道密封缝33进行弯折,以使该包装主体10a的该包装前壁101a形成具有不充气结构的一主包装侧壁103a。具体地,如图4所示,在第一该充气包装袋1进行充气后,该主通道密封缝33左侧的结构形成不充气结构,而该主通道密封缝33右侧的结构形成充气结构,所以该包装主体10a能够沿该主通道密封缝33进行弯折。沿该主通道密封缝33进行弯折后,如图4所示的该主通道密封缝33右侧的充气结构形成了如图2和图3所示的主包装前壁1011a,其中该主通道密封缝33左侧的不充气结构形成了如图2和图3所示的主包装侧壁103a。值得一提的是,虽然该主包装侧壁103a为不充气结构,但是由于其与该侧包装体10c相互靠近,所以能够受到该侧包装体10c的保护,进而被容纳于该包装主体10a的该主容纳腔100a的被包装物品得到保护。本领域技术人员应该能够理解,依据本发明的该优选实施例,该主包装侧壁103a为不充气结构仅仅是对本发明的示例而非限制,依据本发明的其它实施例,该主包装侧壁103a也可以为充气结构。
值得一提的是,该侧翼缓冲部10b的该前支撑壁101b和该支撑包装前壁1012a在该第一分室缝411的两侧相互支撑并且该侧翼缓冲部10b的该后支撑壁 102b和该支撑包装后壁1022a相互支撑,以使该充气包装袋1更好地保持预设状态。当该充气包装袋1的该包装主体10a受到来自该侧翼缓冲部10b的挤压时,该前支撑壁101b和该支撑包装前壁1012a相互靠近,以增大两者之间的接触面积,从而使该前支撑壁101b和该支撑包装前壁1012a相互支撑。同样,该后支撑壁102b和该支撑包装后壁1022a相互靠近,以增大两者之间的接触面积,从而使该后支撑壁102b和该支撑包装后壁1022a相互支撑,进而在增强缓冲效果的同时使该包装主体10a和该侧翼缓冲部10b更好地保持预设相对位置。
依据本发明的该优选实施例,每一侧翼缓冲部10b的该侧翼储气单元13b均设置有该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714。该侧翼缓冲部10b沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714进行弯折并通过该第一分室缝411进行封合后形成的该侧翼缓冲部10b具有一五边形截面,如图所示。具体地,该侧翼缓冲部10b包括一前支撑壁101b、一后支撑壁102b、一侧缓冲壁103b、一前缓冲壁104b和一后缓冲壁105b,其中该前支撑壁101b由该第一分室缝411a和该第一侧翼弯折缝3711之间的该子储气单元131形成。该后支撑壁102b由该第一分室缝411b和该第四侧翼弯折缝3714之间的该子储气单元131形成。该侧缓冲壁103b由该第二侧翼弯折缝3712和该第三侧翼弯折缝3713之间的该子储气单元131形成。该前缓冲壁104b由该第二侧翼弯折缝3712和该第一侧翼弯折缝3711之间的该子储气单元131形成。该后缓冲壁105b由该第三侧翼弯折缝3713和该第四侧翼弯折缝3714之间的该子储气单元131形成。更具体地,沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713和该第四侧翼弯折缝3714进行弯折后并通过该第一分室缝411进行封合后每一该储气单元13形成的该子储气单元131分别被用于形成该前支撑壁101b、该后支撑壁102b、该侧缓冲壁103b、该前缓冲壁104b和该后缓冲壁105b。依据本发明的该优选实施例,对每一储气单元13,该第一侧翼弯折缝3711到该第二侧翼弯折缝3712的距离等于第四侧翼弯折缝3714到该第三侧翼弯折缝3713之间的距离并且该第一侧翼弯折缝3711到该第一分室缝411的距离与该第四侧翼弯折缝3714到该第一分室缝411的距离相等,以使充气后的该充气包装袋1的通过该横向塑封缝42封合后的该包装主体10a与该侧缓冲壁103b垂直,进而方便该充气包装袋1被其他包装装置进行再次包装。本领域技术人员应该能够理解,这种结构只是对本发明的一个示例而非限制。
依据本发明的该优选实施例,该弯折缝37还包括一系列侧包装弯折缝373,其中该侧包装弯折缝373分列纵向排布。具体地该侧包装弯折缝373包括一列第一侧包装弯折缝3731、一列第二侧包装弯折缝3732和一列第三侧包装弯折缝3733,其中该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733均被设置于该侧包装体10c的该侧储气单元13c。该侧包装体10c 沿该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733进行弯折并通过该第二分室缝412进行封合后形成的该侧包装体10c具有一矩形截面,如图所示。具体地,该侧包装体10c包括一侧包装前壁101c、一侧包装后壁102c、一侧包装内侧壁103c和一侧包装外侧壁104c,其中该侧包装前壁101c由该第一侧包装弯折缝3731和该第二侧包装弯折缝3732之间的该子储气单元131形成。该侧包装外侧壁104c由该第二侧包装弯折缝3732和该第三侧包装弯折缝3733之间的该子储气单元131形成。该侧包装后壁102c由该第三侧包装弯折缝3733和该第二分室缝412之间的该子储气单元131形成。该侧包装内侧壁103c由该第一侧包装弯折缝3731和该第二分室缝412之间的该子储气单元131形成。具体地,该侧包装后壁102c由该第三侧包装弯折缝3733和如图4所示的平面展开图中的412c之间的该子储气单元131形成。该侧包装内侧壁103c由该第一侧包装弯折缝3731和如图4所示的平面展开图中的之间的该子储气单元131形成。
更具体地,沿该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733进行弯折后并通过该第二分室缝412进行封合后每一该储气单元13形成的子储气单元131分别被用于形成该侧包装前壁101c、该侧包装后壁102c、该侧包装内侧壁103c和该侧包装外侧壁104c。依据本发明的该优选实施例,对每一储气单元13,该第一侧包装弯折缝3731到该第二侧包装弯折缝3732的距离等于该第三侧包装弯折缝3733到该第二分室缝412之间的距离并且该第一侧包装弯折缝3731到该第二分室缝412的距离与该第三侧包装弯折缝3733到该第二分室缝412的距离相等,并且充气后的该充气包装袋1的通过该横向塑封缝42封合后的该包装主体10a与该侧包装体10c并排排列。更具体地,在平面展开图中该第一侧包装弯折缝3731到该第二侧包装弯折缝3732的距离等于该第三侧包装弯折缝3733到412c之间的距离并且该第一侧包装弯折缝3731到412b的距离与该第三侧包装弯折缝3733到该第二分室缝412的距离相等。
值得一提的是,该侧包装体10c设计为具有矩形截面不仅能够在侧边对该包装主体10a提供缓冲,而且其与该包装主体10a的相对位置关系和相互支撑作用更为稳定,以使被包装物能够收到更好的保护。同时,该侧包装体10c的尺寸也可以根据需要进行预设。例如,该侧包装体10c被设计用于容纳笔记本电脑的电源线时,该侧包装体10c的形状可设置为与该电源线的形状与尺寸相适应。
值得一提的是,该侧包装体10c被折叠为具有矩形截面仅仅是对本发明的示例而非限制。
值得一提的是,该侧包装体10c与该侧包装体10c并排排列并且相互支撑,以使该充气包装袋1更好地保持预设状态。当该充气包装袋1的该包装主体10a受到来自该侧包装体10c的挤压时,该主包装侧壁103a和该侧包装内侧壁103c相互靠近,以相互提供缓冲。
该侧包装体10c的该侧储气单元13c均设置有该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733。该侧包装体10c沿该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733进行弯折并通过该第二分室缝412进行封合后形成的该侧包装体10c具有一矩形截面,如图所示。具体地,该侧包装体10c包括一侧包装前壁101c、一侧包装后壁102c、一侧包装内侧壁103c和一侧包装外侧壁104c,其中该侧包装前壁101c由该第一侧包装弯折缝3731和该第二侧包装弯折缝3732之间的该子储气单元131形成。该侧包装后壁102c由该第三侧包装弯折缝3733和该第二分室缝412之间的该子储气单元131形成。该侧包装内侧壁103c由该第一侧包装弯折缝3731和该第二分室缝412之间的该子储气单元131形成。更具体地,。该侧包装后壁102c由该第三侧包装弯折缝3733和412c之间的该子储气单元131形成。该侧包装内侧壁103c由该第一侧包装弯折缝3731和412b之间的该子储气单元131形成。该侧包装外侧壁104c由该第二侧包装弯折缝3732和该第三侧包装弯折缝3733之间的该子储气单元131形成。更具体地,沿该第一侧包装弯折缝3731、该第二侧包装弯折缝3732和该第三侧包装弯折缝3733进行弯折后并通过该第二分室缝412进行封合后每一该储气单元13形成的该子储气单元131分别被用于形成该侧包装前壁101c、该侧包装后壁102c、该侧包装内侧壁103c和该侧包装外侧壁104c。依据本发明的该优选实施例,对每一储气单元13,该第一侧包装弯折缝3731到该第二侧包装弯折缝3732的距离等于该第二分室缝412到该第三侧包装弯折缝3733之间的距离并且该第一侧包装弯折缝3731到该第二分室缝412的距离与该第三侧包装弯折缝3733到该第二分室缝412的距离相等。本领域技术人员应该能够理解,这种结构只是对本发明的一个示例而非限制。
如图所示,该充气包装袋1的该侧翼缓冲部10b形成的侧翼缓冲腔100b不仅能够帮助增强缓冲效果,而且能够被用于容纳物品,例如容纳于该包装主体10a的该主容纳腔100a内的电子产品,例如平板电脑的配件。
更具体地,该包装主体10a形成的主容纳腔100a用于包装该包装物品,而侧边的该侧翼缓冲部10b用于加强侧边缓冲效果。也就是说,该侧翼缓冲部10b在侧面提供一级缓冲作用,而该包装主体10a提供另一级缓冲作用。在具有该侧包装体10c的一侧,该侧包装体10c提供一级缓冲作用,而该包装主体10a提供另一级缓冲作用。而在具有该侧压缓冲部10d的底侧,该侧压缓冲部10d在该侧面提供一级缓冲作用,而该包装主体10a提供另一级缓冲作用。从而本发明这个优选实施例的该充气缓冲体10形成的该立体包装袋得以在多个侧面提供多级缓冲效果。如图所示,在该充气包装袋1的使用过程中,左侧的该侧翼缓冲部10b、右侧的该侧包装体10c、底侧的该侧压缓冲部10d以及该充气包装袋1的顶侧结构相互配合,以使该充气包装袋1能够在被包装物品的四周提供多级缓冲作用,以对被包装物品进行更好地保护。
该充气包装袋1还包括一便携元件50。依据本发明的该优选实施例,该便携元件50被一体设置于该充气缓冲体10。具体地,该便携元件50包括一便携体51并具有一对便携孔500,其中该便携孔500形成于该便携体51。值得一提的是,该便携元件50的该便携体51与该充气缓冲体10一体连接并且由该充气缓冲体10的该储气单元13形成。具体地,该便携孔500被分别设置于该包装前壁101a和该包装后壁102a的相应位置。该便携体51包括一设置于该包装前壁101a的一第一便携体511和一设置于该该包装后壁102a的一第二便携体512,其中该第一便携体511和该第二便携体512相互对应并分别对应设置一便携孔500.
这种结构的充气包装袋1生产工艺简单,制作成本低,且充气结构适合通过手拎等方式对该充气包装袋1进行携带。例如通过手拎携带该充气包装袋1时,手穿过该便携孔500后握于该便携体51,以对该充气包装袋1进行携带。该便携体51的充气结构能够使这种携带更为令人舒适。
依据本发明的该优选实施例,该便携元件50被设置于该充气包装袋1的顶端。该便携元件50的充气结构也能够提供缓冲。
该充气包装袋1的该包装主体10a的该主容纳腔100a具有一开口1000a,以用于对被包装物体进行取放。
该充气包装袋1还包括一闭合装置60,以用于闭合该开口1000a。依据本发明的该优选实施例,该闭合装置60包括两对闭合组件61,其被分别设置于该便携元件50的该便携孔500的左右两侧,以在对该开口1000a进行闭合的同时增强该便携元件50的便携性能。更具体地,当该闭合装置60对该开口1000a进行闭合的同时还能够帮助该第一便携体511和该第二便携体512相互靠近,以便于将该第一便携体511和该第二便携体512作为一个整体,以增强该便携元件50的便携性能,进而方便对该充气包装袋1进行携带。
依据本发明的该优选实施例,每一闭合组件61包括一第一闭合元件611和一第二闭合元件612,其中该第一闭合元件611和该第二闭合元件612相互配合,以用于闭合该开口1000a。具体地,该第一闭合元件611被设置于该包装前壁101a,其中该第二闭合元件612被设置于该包装后壁102a。当该第一闭合元件611和该第二闭合元件612进行闭合时,该包装前壁101a和该包装后壁102a相互靠近并通过该闭合组件61相互连接,以对该开口1000a进行闭合。
如图所示,该第一闭合元件611于该包装前壁101a的设置位置以及该第二闭合元件612于该包装后壁102a的设置位置均为不充气结构。具体地,该平面塑封缝30进一步包括两组封合部38,以分别用于设置该第一闭合元件611和该第二闭合元件612。
值得一提的是,在该开口1000a处的该包装前壁101a和该包装后壁102a处设置防伪标记,为用于消费者对被包装物的真伪进行判断。
值得一提的是,该便携孔500的设置并未影响该充气缓冲体10在相应位置 的储气单元13的气密性和充气性能。具体地,该平面塑封缝30还包括一对封合圈39,以分别对应于一对便携孔500。每一缝合圈39在相应的便携孔500的周围对该充气缓冲体10的该气室膜11和12进行封合,以防止相应的储气单元13漏气。更具体地,依据本发明的该优选实施例,每一缝合圈39设置于相邻的两个储气单元13但并未将相应的储气单元13隔断,而是分别在相应的储气单元形成一连通道133,以方便对相应的储气单元13进行充气。该优选实施例的这种该缝合圈39设置于相邻的两个储气单元13的结构具有结构简单,生产工艺简单易操作,生产成本低的优点,但是本领域技术人员应该能够理解,这种结构仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该缝合圈39也可以被设置于多个储气单元13,其中被该缝合圈39隔断的储气单元13可以通过其它方式进行充气,例如于相邻储气单元13相连通。
依据本发明的该优选实施例,该第一闭合元件611和一第二闭合元件612通过卡扣的方式进行可分离的连接。该闭合组件61可以具体实施为一按扣。本领域技术人员应该能够理解这仅仅是对本发明的示例而非限制。任何其它能够实现关闭该开口1000a的方式都在本发明的范围之内,本发明在这方面不受限制。
当该充气缓冲体10由两层该气室膜11和12形成时,该第一分室缝411各自热封连接四层薄膜,即将前后各两层该气室膜11和12热封连接。可以理解的是,该第一分室缝411实施为间断的热封缝,以使该侧翼缓冲部10b与该包装主体10a可气体连通,即形成两者之间相连通的连通通道132,从而通过充气操作可以同时对该侧翼缓冲部10b和该包装主体10a进行充气。另外,值得一提的是,该第一分室缝411可以设置在该储气单元13的中间部位,也可以是两侧部位并与两侧的该分隔缝31一体连接,本发明的这方面并不受到限制。
值得一提的是,依据本发明的该优选实施例,为增强该侧压缓冲部10d的缓冲效果,精简该充气包装袋1的制造工艺并保持该充气包装袋1的整体性能和外观,该侧压缓冲部10d的该侧压储气单元13d的折叠和封合方式其它该储气单元13的折叠和封合方式相同。本领域技术人员应该能够理解这仅仅是对本发明的示例而非限制。
依据本发明的该优选实施例,该储气单元13沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713、该第四侧翼弯折缝3714、该第一分室缝411、该第一主包装弯折缝3721、该第二主包装弯折缝3722、该第一侧包装弯折缝3731、该第二侧包装弯折缝3732、该第三侧包装弯折缝3733以及该第二分室缝412进行弯折和/或封合后形成多个以预设方式布置的该子储气单元131,以使该充气包装袋1形成预设形状。
具体地,该储气单元13沿该第一侧翼弯折缝3711、该第二侧翼弯折缝3712、该第三侧翼弯折缝3713、该第四侧翼弯折缝3714、该第一分室缝411、该第一主包装弯折缝3721、该第二主包装弯折缝3722、该第一侧包装弯折缝3731、该 第二侧包装弯折缝3732、该第三侧包装弯折缝3733以及该第二分室缝412进行弯折和/或封合后,该储气单元13形成一主包装前子储气单元1311a、一支撑包装前子储气单元1312a、一主包装后子储气单元1313a和一支撑包装后子储气单元1314a,一前支撑子储气单元1311b、一后支撑子储气单元1312b、一侧缓冲子储气单元1313b、一前缓冲子储气单元1314b和一后缓冲子储气单元1315b,一侧包装前子储气单元1311c、一侧包装后子储气单元1312c、一侧包装内侧子储气单元1313c和一侧包装外侧子储气单元1314c。
多个该主包装前子储气单元1311a相互连接,以形成该主包装前壁1011a以及与该主包装前壁1011a相连接的该主体侧压储气单元139d的前部的一部分。
多个该支撑包装前子储气单元1312a相互连接,以形成该支撑包装前壁1012a以及与该支撑包装前壁1012a相连接的该主体侧压储气单元139d的前部的一部分。
多个该主包装后子储气单元1313a相互连接,以形成该主包装后壁1021a以及与该主包装后壁1021a相连接的该主体侧压储气单元139d的后部的一部分。
多个该支撑包装后子储气单元1314a相互连接,以形成该支撑包装后壁1022a以及与该支撑包装后壁1022a相连接的该主体侧压储气单元139d的后部的一部分。
多个该前支撑子储气单元1311b相互连接,以形成该前支撑壁101b以及与该前支撑壁101b相连接的该侧翼侧压储气单元138d的一部分。
多个该后支撑子储气单元1312b相互连接,以形成该后支撑壁102b以及与该后支撑壁102b相连接的该侧翼侧压储气单元138d的一部分。
多个该侧缓冲子储气单元1313b相互连接,以形成该侧缓冲壁103b以及与该侧缓冲壁103b相连接的该侧翼侧压储气单元138d的一部分。
多个该前缓冲子储气单元1314b相互连接,以形成该前缓冲壁104b以及与该前缓冲壁104b相连接的该侧翼侧压储气单元138d的一部分。
多个该一后缓冲子储气单元1315b相互连接,以形成该后缓冲壁105b以及与该后缓冲壁105b相连接的该侧翼侧压储气单元138d的一部分。
多个该侧包装前子储气单元1311c相互连接,以形成该侧包装前壁101c以及与该侧包装前壁101c相连接的该侧包装侧压储气单元137d的一部分。
多个该侧包装后子储气单元1312c相互连接,以形成该侧包装后壁102c以及与该侧包装后壁102c相连接的该侧包装侧压储气单元137d的一部分。
多个该侧包装内侧子储气单元1313c相互连接,以形成该侧包装内侧壁103c以及与该侧包装内侧壁103c相连接的该侧包装侧压储气单元137d的一部分。
多个该侧包装外侧子储气单元1314c相互连接,以形成该侧包装外侧壁104c以及与该侧包装外侧壁104c相连接的该侧包装侧压储气单元137d的一部分。
依据本发明的该优选实施例,该携带装置9的形状与尺寸与该充气包装袋1 的形状与尺寸相适应。具体地,该携带主体91的形状与尺寸与该充气包装袋1的充气缓冲体10折叠、封合并且充气后的形状与尺寸相适应,其中该携带元件92的设置位置、形状和尺寸与该充气包装袋1的该便携元件50的设置位置、形状和尺寸相适应。更具体地,
该携带元件92被一体设置于该携带主体91。该携带元件92包括一携带体921并具有一对携带孔920,其中该携带孔920形成于该携带体921。与该充气包装袋1相适应,该携带主体91包括一携带前壁911、一携带后壁912、一携带左侧壁913和一携带右侧壁914。该携带前壁911、该携带后壁912、该携带左侧壁913和该携带右侧壁914共同包围该包装腔900。该携带孔920被分别设置于该被设置于该携带前壁911和该携带后壁912的相应位置,其中该携带孔920的设置位置与该便携孔500于该充气缓冲体10的设置位置相适应
与该充气包装袋1相适应,该携带体921包括一设置于该携带前壁911的一第一携带体9211和一设置于该携带后壁912的一第二携带体9212,其中该第一携带体9211和该第二携带体9212相互对应并分别对应设置一携带孔920。
与该充气包装袋1相适应,该携带元件92被设置于该携带主体91的顶端。
该充气包装袋1的该包装主体10a的该主容纳腔100a具有一开口1000a,以用于对被包装物体进行取放。
如图所示,消费者可以将手穿过该携带孔920以及该便携孔500,以对该充气包装装置以及被该充气包装装置包装的被包装物进行手提携带。
如图所示,依据本发明的该优选实施例,该携带装置9还包括一展示元件93,其中该展示元件93被设置于该携带主体91,其被用于展示被包装物的相关信息,例如品牌的logo、产品种类、使用方法、注意事项等。该展示元件93还可以被用于装饰该携带主体91,以使该携带主体91的外观更为赏心悦目,使消费者更愿意携带。当然,该展示元件93也可以被用于进行公益宣传。
值得一提的是,该携带装置9被用于容纳和携带该充气包装袋1及其被包装物,但不局限于容纳和携带该充气包装袋1及其被包装物。例如,该携带装置9可以设置一些备用容纳部件,以用于收纳人们日常出行所需的物品,例如手机、钱包、钥匙等。
值得一提的是,该携带装置9既可以与该充气包装袋1相连也可以与该充气包装袋1分开设置,本发明在这方面不受限制。
本领域技术人员应该能够理解,这种设置方式以及该携带装置9的具体结构仅仅是对本发明的示例而非限制。
如图1和图7所示,该充气包装装置还包括一功能袋8,以为被包装物提供预设功能,例如保温、防辐射等,以满足运输、储存、携带的需求。值得一提的是该功能袋8的形状和尺寸与该充气包装袋1的充气状态的形状和尺寸相适应。如图1和图7所示,该功能袋8包括一功能袋体81和一功能袋闭合元件89,其 中该功能袋体81形成一功能容纳室800并具有一功能袋口8000,其中该功能袋口8000被用来方便对被包装物,例如该充气包装袋1进行取放,其中该功能袋闭合元件89被用于闭合该功能袋口8000。具体地,该功能袋体81包括一功能前袋体811和一与该功能前袋体一体连接的一功能后袋体812,其中该功能前袋体811和该功能后袋体812共同形成该容纳室800。该功能袋闭合元件89包括一第一功能袋闭合部件891和一第二功能袋闭合部件892,其中该第一功能袋闭合部件891被设置于该功能前袋体811,其中该第二功能袋闭合部件892被设置于该功能后袋体812。当该第一功能袋闭合部件891和该第二功能袋闭合部件892相互结合时,该功能袋口8000被闭合。当该第一功能袋闭合部件891和该第二功能袋闭合部件892相对分离时,该功能袋口8000被打开。
如图所示,该功能袋闭合元件89还包括一功能袋闭合开关893,其中能够通过控制该功能袋闭合开关893来打开或者关闭该功能袋闭合元件89,即该第一功能袋闭合部件891和该第二功能袋闭合部件892的相对结合和分离,进而控制该功能袋口8000的打开和闭合。
在对被包装物进行携带时,这种结构的功能袋8适合于与该携带装置9或者其它适于携带的装置一起使用。例如,将被包装物包装与该充气包装袋1,以为该被包装物提供缓冲,然后将包装有被包装物的该充气包装袋1包装于该功能袋8,以为该被包装物提供预设功能的保护,然后将包装有该被包装物和该充气包装袋1的该功能袋8包装于该携带装置9,以方便对该被包装物进行携带。
值得一提的是,也可以先把被包装物包装于该功能袋8,然后再包装于该充气包装袋1和该携带装置9,也能够达到缓冲保护、预设功能保护和便携的效果。本发明在这方面不受限制。
值得一提的是,依据本发明的该第一优选实施例,该充气包装袋1、该功能袋8和该携带装置9进行分别设置,这仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该充气包装袋1、该功能袋8和该携带装置9也可以被设置为相互连接的多层结构,同样能够达到缓冲保护、预设功能保护和便携的效果。本发明在这方面不受限制。
如图1所示,该充气包装装置进一步包括一包装盒7,其中该包装盒7即能够被设置于包装有该充气包装袋1该功能袋8和该携带装置9的外部,又能够被设置于该充气包装袋1的外部,以对该充气包装袋1进行进一步包装。
在采用该包装盒7对包装有被包装物的该充气包装袋1进行携带时,该携带装置9能够被折叠,以方便放置被该包装盒7所收纳。当消费者需要使用该携带装置9时,即可取出。
依据本发明的该优选实施例,该包装盒7包括一盒体71,其中该盒体71的形状与尺寸与该充气包装袋1的形状与尺寸相适应,以使该充气包装袋1能够被该盒体71包装。
由于该包装盒7容易保持预设形状,方便进行预设方向的放置和排列,该包装盒7不仅能够方便对包装有被包装物的该充气包装袋1进行携带,而且方便对其进行运输。
为便携通过该包装盒7对包装有被包装物的该充气包装袋1进行携带,该包装盒还包括一包装盒便携组件72。如图所示,该包装盒便携组件72被设置于该盒体71。该包装盒便携组件72包括一包装盒便携体721并具有一对包装盒便携孔720,其中该包装盒便携孔720形成于该包装盒便携体721。
如图所示,消费者可以将手握于该包装盒便携孔720,以对该充气包装装置以及被该充气包装装置包装的被包装物进行手提携带。
如图所示,依据本发明的该优选实施例,该包装盒7还包括一包装盒展示件73,其中该包装盒展示件73被设置于该盒体71,其被用于展示被包装物的相关信息,例如品牌的logo、产品种类、使用方法、注意事项等。该包装盒展示件73还可以被用于装饰该盒体71,以使该盒体71的外观更为赏心悦目,使消费者更愿意携带。当然,该包装盒展示件73也可以被用于进行公益宣传。
图8A和图8B阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的两种使用状态。
值得一提的是,依据本发明的上述优选实施例的该充气包装装置的该充气包装袋1、该功能袋8、该携带装置9以及该包装盒7的上述结构都仅仅是对本发明的示例而非限制。依据本发明的其它实施例,该充气包装袋1、该功能袋8、该携带装置9以及该包装盒7还可以是其它结构。
图9阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该功能袋8的一种可替换实施方式。如图所示,该功能袋8’也可以不具有闭合元件。值得一提的是,该功能袋8’也适合进行折叠,从而方便在不使用时对其进行存放、运输和携带。
图10A至图10C阐释了依据本发明的上述优选实施例的该充气包装袋充气包装装置的该携带装置的几种可替换实施方式。
如图10A所示的携带装置9’包括一携带主体91’、一携带元件92’和一展示元件93’,其中该携带主体91’的形状与尺寸与该充气包装袋1的形状与尺寸相适应,以使该充气包装袋1能够被该携带主体包装。该携带元件92’被设置于该携带主体91,以方便通过该携带元件92’对该携带主体91’及包装于该携带主体91’的该充气包装袋1进行携带,并进一步方便对包装于该充气包装袋1的被包装物W进行携带。
更具体地,在该携带装置9’对该充气包装袋1进行包装时,该携带装置9’处于一包装状态,其中在该携带装置9’的该包装状态,该携带装置9’形成一包装腔900’,其中该包装腔被用于容纳该充气包装袋1,以对该充气包装袋1进行包装。值得一提的是,在该携带装置9’的该包装状态,该包装腔900’的形状与 尺寸与该充气包装袋1的外部形状与尺寸相适应,以使该充气包装袋1能够被牢固包装于该包装腔900’,以充分保障,在该携带装置9’的该包装状态,该充气包装袋1充气包装装置的整体外观的美观以及被包装物W的安全。
依据本发明的该优选实施例,在该携带装置9’未对该充气包装袋1进行包装时,该携带装置9’能够通过折叠、卷折等方式被收纳,以使该携带装置9’处于一收纳状态。在该携带装置9’的该收纳状态,该携带装置9’占用较小的空间,易于被携带、运输、存储和收纳。依据本发明,该携带装置9’的这种收纳状态可以通过折叠、卷折等方式来实现,本发明在这方面不受限制。
该展示元件93’被设置于该携带主体91’,其被用于展示被包装物的相关信息,例如品牌的logo、产品种类、使用方法、注意事项等。该展示元件93’还可以被用于装饰该携带主体91’,以使该携带主体91’的外观更为赏心悦目,使消费者更愿意携带。当然,该展示元件93’也可以被用于进行公益宣传。
与前述携带装置9和9’不同,如图10B所示的携带装置9”还包括一盖元件94”,其中该盖元件94被被用于对该携带装置9”的包装腔900”进行封闭,以更好地保护被包装物,例如防灰、防尘、防盗。
如图10C所示的携带装置9”’被牢固设置于一充气包装袋1’,但并未完全覆盖于该充气包装袋1’,所以当该充气包装袋1’由透明材料制成时,被包装于该充气包装袋1’的被包装物能够从该充气包装袋1’的外面被看到。这种结构的充气包装装置具有可视性,方便对被包装物进行展示。
图11A至图11D为依据本发明上述优选实施例的充气包装装置的充气包装袋1A的第一种可替换实施方式的一充气包装袋1A。
在上述优选实施例的该第一种可替换实施方式中,该充气包装袋1A包括至少一充气缓冲体10A,即由一个充气缓冲体10A形成一个立体包装袋或多个充气缓冲体10A经塑封连接如粘接或热封形成该立体包装袋。在本发明的图11B至图11D所示的示例中,其由一个充气缓冲体10A形成。更具体地,参照图14,该充气缓冲体10A包括至少两层气室膜11A和12A。经一系列平面塑封缝30A和立体塑封缝40A形成包括一个或多个相连接的储气单元13A的该立体包装袋。各个储气单元13A内形成一个可储气的储气室14A。
本领域技术人员可以理解的是,该平面塑封缝30A用于将多层薄膜经塑封形成如图11D所示的一个平面缓冲材料,该立体塑封缝40A用于将上述平面缓冲材料进一步塑封而使该充气包装袋1A形成具有空间立体构型并且能够容纳该包装物品的该立体包装装置,如图11B中所示。该平面塑封缝30A和该立体塑封缝40A可以通过粘接或热封连接的方式将多层薄膜连接在一起。优选地,在该第一种可替换实施方式中,该平面塑封缝30A和该立体塑封缝40A可以都实施为由热封工艺形成。
更具体地,该平面塑封缝30A包括多列分隔缝31A,其对两层气室膜11A 和12A进行连接,以将该充气缓冲体10A分隔成多个储气单元13A。优选地,各列该分隔缝31A通过热封工艺形成,其热封连接两层气室膜11A和12A,从而相邻两个储气单元13A之间形成一列分隔缝31A。该分隔缝31A可以是连续的热封线,从而使多个储气单元13A互相独立。可以理解的是,如图11D中所示,顶侧和底侧的两列分隔缝31A能够分别成为该充气缓冲体10A的顶侧边界缝和底侧边界缝。依据本发明,该分隔缝31A也可以是断续的热封线,从而使多个储气单元13A互相连通。该储气单元13A可以是各种形状,如条形,圆形,多边形或其他不规则形状等,如图11B至图11D中所示,本发明的该充气缓冲体10A可以包括多个并排排列的充气柱,但本方明在这方面并不受到限制。
在上述优选实施例的该第一种可替换实施方式中,参考图14,该充气缓冲体10A进一步地包括由至少两层阀膜21和22形成的一充气阀20,该充气阀20的该阀膜21和22与该气室膜11A和12A互相叠合地设置,并且在该阀膜21和22之间形成用于向该储气室14A充气的进气通道23A。可以理解的是,该阀膜21和22的长度短于该气室膜11A和12A。当通过该进气通道23A向该储气室14A中充气并且该储气室14A中的气压达到预定要求时,该储气室14A中的气压作用在该阀膜21和22上,以使该阀膜21和22贴合于其中一层气室膜11A或12A,从而封闭该进气通道23A,以使该充气阀20起到单向阀的作用。每个储气单元13A内形成至少一个进气通道23A,并且各个储气单元13A互相独立,当其中一个储气单元13A发生损坏漏气时,其他的储气单元13A并不会被影响,还能起到空气缓冲效果。
可以理解的是,该充气缓冲体10A的该气室膜11A和12A以及该充气阀20的该阀膜21和22分别可以由各种合适的薄膜材料制成,如聚乙烯薄膜、聚丙烯薄膜、聚氯乙烯薄膜、聚酯薄膜、聚苯乙烯薄膜或复合薄膜等,本发明在这方面也并不受到限制,只要是合适的柔性薄膜即可。值得一提的是,为了增加单向密封效果,该充气阀20的该阀膜21和22也可以是由上述薄膜经添加化学成分而改性得到的自粘性薄膜。
该充气缓冲体10A进一步地包括一主通道单元15A,其连接于各个储气单元13A。优选地,其一体地延伸于各个储气单元13A。更具体地,在上述优选实施例的该第一种可替换实施方式中,该主通道单元15A与该储气单元13A的延伸方向相垂直。例如,在该第一种可替换实施方式中,各个储气单元13A沿着横向方向延伸,该主通道单元15A沿着纵向方向延伸。该主通道单元15A形成一主通道151A,并且该主通道151A具有一充气口152A,当该充气口152A的位置设置有充气嘴并且执行充气操作时,气体从该充气口152A沿着纵向方向进入该主通道151A,并且再沿着横向方向进入各个储气单元13A,并且当各个储气室14A中达到预定气压后,该充气阀20的该阀膜21和22贴合于其中一层气室膜11A或12A,从而实现自封闭,以防止充入的气体再反渗进入该主通道151A。
值得一提的是,可以理解的是,该主通道单元15A可以由两层气室膜11A和12A形成,也可以由两层阀膜21和22形成,或者由其中一层气室膜11A或12A和其中一层阀膜21或22形成。
如图11D中所示,该平面塑封缝30A进一步地包括分别位于该充气缓冲体10A的左右两侧的连续密封的一边封缝32A和左侧的一连续密封的主通道密封缝33A,其中左侧边封缝32A和该主通道密封缝33A之间形成该主通道151A。可以理解的是,该边封缝32A通过塑封工艺如粘接或热封形成并且封合连接两层气室膜11A和12A,其中该主通道密封缝33A通过塑封工艺如粘接或热封形成并且将两层气室膜11A和12A和两层阀膜21和22分别连接在一起,如图14中所示,例如通过一次热封工艺而形成的上下两侧的该主通道密封缝33A分别将该气室膜11A和该阀膜21热封连接,以及将该气室膜12A和该阀膜22热封连接。
如图11D中所示,各个储气单元13A在邻近该主通道151A的位置各自包括两列互相间隔的导气缝34,其由热封连接该阀膜21和22以及其中一层气室膜11A或12A该气室膜11A和12A形成,该阀膜21和22形成的该进气通道23A位于两列导气缝34之间。
参照图14,该阀膜21和22进一步地通过多个连接缝35A热封连接至该气室膜11A,这样在该储气室14A中达到预定的气压时,气压作用于该阀膜21和22,并且因为该连接缝35A的设置而同时被压向该气室膜11A并最终贴合于该气室膜11A,从而关闭该进气通道23A。即该连接缝35A热封连接两层阀膜21和22以及一层气室膜11A。另外,如图11D中所示,各个连接缝35A的形状的设计使得其还进一步地起到防止气体回流的作用,也就是说,当该储气室14A中的气体想要回流时,会被该连接缝35A所阻挡而不能轻易地反渗进入该主通道151A。
另外,在热封形成这些平面塑封缝30A时,该充气阀20的该阀膜21和22形成的该进气通道23A可以通过设置耐热阻隔装置而形成,在热封工艺之后,再取出该耐热阻隔装置。在上述优选实施例的该第一种可替换实施方式中,该充气阀20的该阀膜21和22之间设置有一耐热层24A,如图11D和图14中所示,例如可以是耐热油墨,其贴附于其中一层阀膜21或22的内表面,这样,在热封形成该主通道密封缝33A时,两层阀膜21和22不会热封连接,从而该进气通道23A得以能够与该主通道151A相连通,而不会因热封而将其进入口关闭。
在上述优选实施例的该第一种可替换实施方式中,该主通道151A由两层气室膜11A和12A形成,其中该耐热层24A和该阀膜21和22各自有延伸段进入该主通道151A,其中该平面塑封缝30A还包括对应于该耐热层24A的延伸段的位置的一列互相间隔的沿纵向方向排列的接合缝36A。因为该耐热层24A的设置,该接合缝36A将两层气室膜11A和12A和两层阀膜21和22分别连接在一 起,而两层阀膜21和22没有热封连接,该接合缝36A的设置使得该充气缓冲体10A在充气时,气体进入该主通道151A后,相邻的该阀膜21和22与对应连接的该气室膜11A和12A能够一起膨胀而打开对应的该进气通道23A。
在该第一种可替换实施方式中,所述充气缓冲体10A折叠后,形成带有一柱形主容纳腔100a的所述充气包装袋,适于用来包装柱形的物品,例如酒瓶和灯具等。如所述主容纳腔100a与单个酒瓶的大小相适配,使得酒瓶能够站立于所述主容纳腔100a中,且所述充气缓冲体10A的各个侧壁能够紧紧的贴附酒瓶,以使酒瓶能够稳固地放置于所述主容纳腔100a中,以更好的保护酒瓶的安全。
在本发明的上述优选实施例的该第一种可替换实施方式中,该充气缓冲体10A形成一包装主体10a’、至少一支撑部10b’。该包装主体10a包括一前侧壁101a’、一后侧壁102a’、一底壁103a’、一顶壁104a’、一顶壁盖105a’和一塞合壁106a’,其中所述前侧壁101a’的两边和所述后侧壁102a’的两边相连接,所述底壁103a’的周围得以与所述前侧壁101a’的底端以及所述后侧壁102a’的底端相连接,所述顶壁104a’的一边与所述后侧壁102a’的顶端相连接,所述顶壁104a’的另一边与所述顶壁盖105a’相连接,且所述顶壁盖105a’与所述塞合壁106a’相连接,得以通过打开所述前侧壁101a’与所述顶壁盖105a’的连接处形成的开口,以将所述待包装物放入所述主容纳腔100a,且所述前侧壁101a’与所述顶壁盖105a’的连接处得以通过所述塞合壁106a’进行封闭,其中所述塞合壁106a’得以将所述顶壁盖105a’与所述前侧壁101a’可拆卸地封闭,防止所述待包装物滑出,增加安全性,如图11A~11D中所示。
优选地,所述前侧壁101a’的长度小于所述后侧壁102a’的长度,所述前侧壁101a’的长度与所述顶壁盖105a’的长度之和等于所述后侧壁102a’的长度,且所述塞合壁106a’能够塞入所述主容纳腔100a,进而使得所述顶壁盖105a’与所述前侧壁101a’的对接更加紧密,防止所述待包装物从所述主容纳腔100a中滑出。
值得一提的是,所述储气单元13A的局部形成一个或多个折叠单元10c’,例如所述两个折叠单元10c’分别设于所述底壁103a’及所述顶壁104a’,使得所述底壁103a’和所述顶壁104a’均折叠为类似圆形或椭圆形,并且分别搭配底侧和顶侧的支撑部10b’从而方便站立,以形成本发明的所述充气包装袋。所述充气包装袋既可以在所述底壁103a’那一侧提供站立功能,也可以在所述顶壁104a’那一侧提供站立功能。
进一步地,所述充气缓冲体10A包括一系列阻气缝301A,其中所述阻气缝301A设于所述折叠单元10c’的预定数量的储气单元13A,以减少所述折叠单元10c’的充气量,使得所述折叠单元10c’的充气量小于所述充气缓冲体10A其他储气单元13A的充气量,进而使得所述折叠单元10c’适于被折叠,将所述充气缓冲体10A折叠成所需要的立体构型。
在该第一种可替换实施方式中,所述阻气缝301A成列的设于所述储气单元 13A上,其中两列所述阻气缝301A分别设于所述充气缓冲体10A两侧边缘的两个储气单元13A部分上,以使得所述顶壁104a’及所述底壁103a’适于折叠,从而使得所述充气包装袋的顶部和底部均呈椭圆形,便于站立。
优选地,外侧的所述储气单元13A的所述阻气缝301A的数量更多,或者所述阻气缝301A设于所述充气缓冲体10A两侧的第二个储气单元13A,其成列的长度小于设于第一个储气单元13A的所述阻气缝301A成列的长度,或者说,所述折叠单元10c’的第二个储气单元13A部分的所述阻气缝301A的面积比外侧的第一个储气单元13A部分的所述阻气缝301A的面积小,以使得所述顶壁104a’和所述底壁103a’的折叠更加简单、方便,便于形成椭圆形,换句话说,所述阻气缝301A的这种排列方式,使得所述顶壁104a’及所述底壁103a’的充气量从中部向两端逐渐减小,以形成稳固的连接结构,从而方便站立。
在本发明的上述优选实施例的该第一种可替换实施方式中,如图11A中所示,所述储气单元13A局部共形成四个折叠单元10c’,每个折叠单元10c’通过在两条储气单元13A局部设置多个阻气缝301A来形成,所述阻气缝301A将所述充气缓冲体10A的两气室膜11A和12A热封在一起而不能充气,所述阻气缝301A周围未热封位置仍然是可充气结构并且可以使每个储气单元13A在其长度方向上仍然是可连通状态。本领域技术人员可以理解的是,上述具体的实施方式只作为举例,而并不限制本发明。在实际应用中,也可以不形成所述折叠单元10c’,或者不同数量的所述折叠单元10c’,或者所述阻气缝301A的形状和尺寸可以根据需要设计。在另外的实施例中,所述折叠单元10c’也可能实施成为不能充气的部分,即整体不能充气,而形成所述折叠单元10c’的所述储气单元13A可以通过相邻的其他所述储气单元13A的横向连通通道相连通。
为了使得所述底壁103a’及所述顶壁104a’的边缘与所述后侧壁102a’及所述前侧壁101a’的连接更加牢固,折叠后更加立体化,该平面塑封缝30A还包括多列弯折缝37A,其被设置于所述充气缓冲体10A,各所述弯折缝37A将两层所述气室膜11A和12A通过热封方式连接在一起。如图11A中所示,作为一个示例,所述弯折缝37A包括第一列弯折缝371A、第二列弯折缝372A、第三列弯折缝373A、第四列弯折缝374A、第五列弯折缝375A、第六列弯折缝376A、第七列弯折缝377A及第八列弯折缝378A,其中所述第一列弯折缝371A下侧形成所述充气缓冲体10A的所述前侧壁101a’,所述第二和第三列弯折缝372A和373A之间形成所述底壁103a’,所述第四列和所述第五列弯折缝374A和375A之间形成所述充气缓冲体10A的所述后侧壁102a’,所述第六列和第七列弯折缝376A和377A之间形成所述顶壁104a’,所述第八列弯折缝378A设于所述顶壁盖105a’的底端。
值得一提的是,所述弯折缝37A可以全部设于所述储气单元13A,也可以部分设于所述储气单元13A,部分设于两个储气单元13A之间的热封线即所述分 隔缝31A上,并且保证所述弯折缝37A两侧的相邻的所述储气单元13A部分互相连通,,这样所述弯折缝37A使得所述充气缓冲体10A适于被弯折,进而得以使所述充气缓冲体10A形成具有所述主容纳腔100a的立体包装装置。
在该第一种可替换实施方式中,相邻的所述弯折缝37A得以连接,进而形成支撑部10b’,两列所述弯折缝37A之间的连接可以通过热封的方式来实施。换句话说,所述第一列弯折缝371A与所述第二列弯折缝372A相连接,所述第三列弯折缝373A与所述第四列弯折缝374A相连接,所述第五列弯折缝375A与所述第六列弯折缝376A相连接,所述第七列弯折缝377A与所述第八列弯折缝378A相连接,位于两个相连接的连接缝之间的充气单元形成所述支撑部10b’,共形成四个支撑部10b’,分别与所述底壁103a’和所述顶壁104a’周围形成椭圆形的支撑结构,得以使所述充气包装袋站立起来。以所述第一列弯折缝371A与所述第二列弯折缝372A为例,在实际应用中,可以先分别通过所述第一列弯折缝371A与所述第二列弯折缝372A将两层气室膜11A和12A热封连接,然后所述第一列弯折缝371A与所述第二列弯折缝372A之间的这部分储气单元13A对折后再通过热封方式将所述第一列弯折缝371A与所述第二列弯折缝372A相连接在一起。也可以通过一次热封,同时形成相连接的所述第一列弯折缝371A与所述第二列弯折缝372A。
所述折叠单元10c’适合于被折叠,其中所述折叠单元10c’与所述充气缓冲体10A可以是两相互独立的部件,也可以一体成形。在该第一种可替换实施方式中,所述折叠单元10c’与所述充气缓冲体10A一体成形,其中所述折叠单元10c’可以设于所述充气单元的任意需要折叠的位置,使得所述充气缓冲体10A形成多种多样的立体构型,以满足包装需求。
另外,在所述折叠单元10c’的作用下,所述底壁103a’和所述顶壁104a’的边缘内折到角部形成端部支撑结构,从而方便所述充气包装袋站立起来,并且不会影响所述主容纳腔100a的空间大小。
值得一提的是,在该第一种可替换实施方式中,所述支撑部10b’围成近似圆形或椭圆形状,凸出于所述底壁103a’及所述顶壁104a’,且所述支撑部10b’具有空气缓冲作用,得以支撑所述充气包装袋。在放置在环境表面上时,所述支撑部10b’底端可以呈站立状态地支撑在所述环境表面上,从而实现本发明的所述充气包装袋的站立功能。如图11A和图11B中所示,以顶侧为例(底侧是类似结构),图11A中的两个支撑部10b’通过热封后形成顶侧的整体的环形支撑结构,即形成了一个环形支撑部,各个支撑部10b’包括两部分,即内支撑部分101b’和外支撑部分102b’,内支撑部分101b’和外支撑部分102b’经对折后形成并且互相叠合地排列。所述内支撑部分101b’和所述外支撑部分102b’相连接处形成一环形支撑面104b’,所述环形支撑面104b’适合于与环境表面接触,从而使所述充气包装袋具有站立功能。也就是说,现有技术中整个端侧是充气气柱,所以在放 置于环境表面上时,因为充气气柱表面高低不一,导致现有技术的充气包装袋不易站稳。而在本发明的上述优选实施例的该第一种可替换实施方式中,所述环形支撑面104b’使得本发明的所述充气包装袋能够更稳固地处于站立状态。
另外,如图11B中所示,在所述充气包装袋顶侧,所述支撑部10b’和所述顶壁104a’形成一个内凹的缓冲腔100b’。可以理解的是,在所述充气包装袋底侧,也可以形成类似的缓冲槽100b’。当容纳有包装物品的所述充气包装袋以站立姿势放置在环境平面上时,所述包装物品底侧由所述顶壁104a’或所述底壁103a’支撑,并且因为所述缓冲槽100b’的存在,使得所述包装物品并不会直接接触到环境平面,从而进一步防止所述包装物品受到缓冲冲击。而且,即使所述包装物品在所述主容纳腔100a内窜动,其两端施加作用于所述顶壁104a’或所述底壁103a’时,所述顶壁104a’或所述底壁103a’会在所述缓冲槽100b’中发生形变,而不容易伸出所述缓冲槽100b’而接触其他的环境物体,从而进一步不会受到环境物体的反冲作用力而导致所述包装物品的损坏。
优选地,所述储气单元13A均纵向排列于所述充气缓冲体10A,使得所述充气缓冲体10A折叠成立体构型后,各所述储气单元13A均呈纵向排列。在该第一种可替换实施方式中,所述主通道151A和所述充气口152A均设于所述前侧壁101a’的顶端,所述充气阀20也安装于所述前侧壁101a’的所述储气单元13A的顶端。
进一步地,所述立体塑封缝40A包括纵向塑封缝43A,分别设于所述充气缓冲体10A两侧的边缘,以将所述充气缓冲体10A的各侧壁连接在一起来形成所述主容纳腔100a。优选地,包括四列所述纵向塑封缝43A,其包括两列下纵向塑封缝431A以及两列上纵向塑封缝432A。其中所述下纵向塑封缝431A由所述前侧壁101a’的顶端延伸到所述后侧壁102a’的中端,以将所述前侧壁101a’的两边缘与所述后侧壁10a的两边缘相连接,且折叠时,在与所述底壁103a’相对应的所述下纵向塑封缝431A处形成所述底壁103a’的角部;所述上纵向塑封缝432A由所述顶壁盖105a’的底端向所述后侧壁102a’的中端延伸,且所述上纵向塑封缝432A与所述下纵向塑封缝431A之间保持一预定间距,得以使所述顶壁盖105a’连接于所述后侧壁102a’,且所述顶壁盖105a’的底端与所述前侧壁101a’的顶端相对接,进而在所述预定间距处形成所述开口,且折叠时,得以在与所述顶壁104a’相对应的所述上纵向塑封缝432A处形成所述顶壁104a’的角部。
值得一提的是,所述纵向塑封缝43A之间的连接可通过热封的方式来实施,其中所述纵向塑封缝43A可以实施为热封线或者多个热封点。
优选地,设于所述底壁103a’及所述顶壁104a’的角部的所述折叠单元10c’适于内折,形成所述底壁103a’及所述顶壁104a’的角部支撑结构,便于使所述充气包装袋站立起来。
也就是说,在本发明的上述优选实施例的该第一种可替换实施方式中,其两 端都具有站立式支撑结构,各个站立式支撑结构包括一充气端壁,以及凸起地从所述充气端壁向外延伸的支撑部10b’,所述支撑部10b’和所述充气端壁形成所述缓冲槽100b’,所述支撑部10b’包括互相叠合的内侧和外侧部分101b’和102b’,其连接处可以站立在环境表面,从而所述支撑部10b’提供支撑作用。在本发明的上述优选实施例的该第一种可替换实施方式中,所述充气端壁可以是上述底壁103a’或所述顶壁104a’。
优选地,所述平面塑封缝30A进一步包括一边界缝302A,其将两层气室膜11A和12A热封连接,其中所述边界缝302A设于所述顶壁盖105a’与所述塞合壁106a’之间,并阻止到达所述顶壁盖105a’的充气单元的气体进入所述塞合壁106a’,换句话说,当从所述充气口152A进行充气时,气体会进入到所述前侧壁101a’、所述后侧壁102a’、所述底壁103a’、所述顶壁104a’及所述顶壁盖105a’,而不会进入到所述塞合壁106a’,当将所述充气缓冲体10A进行折叠后,未充气的所述塞合壁106a’更加便于塞到所述主容纳腔100a中,不会影响所述主容纳腔100a的大小,如果对所述塞合壁106a’进行充气的话,当将酒瓶装入所述主容纳腔100a后,充气的所述塞合壁106a’很难再塞入到所述主容纳腔100a,或者即使勉强能塞入,占用较多的空间,会导致酒瓶出现歪斜的现象。因此,所述边界缝302A的存在,可以很好的解决所述塞合壁106a’的充气问题。在另外可能的实施例中,所述边界缝302A也可能没有完全使所述塞合壁106a’不能充气,而是减小充气量,使所述塞合壁106a’形成小气室充气壁。
本优选实施例提供的所述充气包装袋适于包装柱形物品,如红酒瓶、啤酒瓶、灯具等,可以使其站立于所述主容纳腔100a中,不但很好的保护了物品,而且增加了美感。
图12A和图12B为依据本发明的上述优选实施例的该充气包装袋1的第二种可替换实施方式。如图12A和图12B所示,在上述第一个可替换实施方式的基础上,该第二个可替换实施方式通过将多个充气缓冲体10B拼接在一起,形成一充气缓冲体10B,所述充气缓冲体10B形成能够容纳多个待包装物的充气包装袋1B。
所述充气缓冲体10B通过一两层气室膜11B和一第二气室膜12B的相互重叠得以形成一储气单元13B、一储气室14B、一充气口152B和一充气通路14B,其中所述充气口152B连接于一气泵,将气体送入所述充气通路14B,进而分配给各所述储气室14B,使得所述储气单元13B充入气体,进而使得所述充气缓冲体10B具有空气缓冲作用。
在该第二个可替换实施方式中,所述充气缓冲体10B折叠后得以容纳三个待包装物,其中所述充气缓冲体10B相当于包括三个子所述充气主体,优选地,三个子充气主体一体成型地形成所述充气缓冲体10B,进而形成三个容纳腔100B,各所述容纳腔100B均单独开启与关闭,适于将各所述待包装物单独放置 于每个容纳腔100B中,单独进行保护,其中各所述容纳腔100B中其中每个子充气单元与上述第一个可替换实施方式中的所述充气缓冲体10B相同,通过将侧边缘依次连接则形成所述充气缓冲体10B,进而将其并列折叠形成能够容纳三个待包装物的所述充气包装袋1B。
所述充气缓冲体10B包括多列纵向塑封缝43B,其中所述纵向塑封缝43B纵向地设于相邻的所述子充气单元之间,当折叠所述充气缓冲体10B时,在同一纵行的所述纵向塑封缝43B得以粘接在一起,进而得以形成各所述容纳腔100B,而且可以将各所述容纳腔100B相隔开。值得一提的是,两纵行所述纵向塑封缝43B设于中部的子充气单元的两侧,得以使折叠后的所述充气缓冲体10B形成三个容纳腔100B,且由于所述纵向塑封缝43B较细,既可以将所述充气缓冲体10B的不同部分密封,又不影响折叠后的空气缓冲作用,使得被包装于不同容纳腔100B中的所述待包装物之间具有空气缓冲作用,防止其相互撞击,以更好的全方位保护所述待包装物。
所述充气缓冲体10B连续设置多列弯折缝37B,依次横向地、相间隔地设置,两列相邻的所述弯折缝37B相连接形成四支撑部10b”,具体地,第一列弯折缝371B与第二列弯折缝372B相连接形成其中一个连支撑部10b”,第三列弯折缝373B与第四列弯折缝374B相连接形成其中一个支撑部10b”,且位于所述第二列弯折缝372B和所述第三列弯折缝373B之间的子充气单元形成一底壁16B,且位于底部的所述支撑部10b”在所述底壁16B的周围围成椭圆形,与所述底壁16B处于两个平面,即所述支撑部10b”凸出于所述底壁16B,且所述支撑部10b”具有空气缓冲作用,得以使所述充气包装袋1B稳固地站立;第五列弯折缝375B与第六列弯折缝376B相连接,第七列弯折缝377B与第八列弯折缝378B相连接,形成另外两个支撑部10b”和一顶壁,支撑所述充气包装袋1B。
值得一提的是,该第二个可替换实施方式中的充气单元形成的三个容纳腔100B只是作为举例,本领域的技术人员可以想到其他变形实施,可以根据实际情况设计两个或超过三个的容纳腔,以包装较多的物品。
该第二个可替换实施方式提供的所述充气包装袋1B可以满足使用者同时包装多个物品的需求,例如,可以同时包装多瓶红酒、啤酒、饮料、牛奶等,如果人们同时购买或者运输多件物品时,能够使用较少的包装袋即可满足需求,节约成本,减少占用空间。
图13A至图13E为依据本发明的上述优选实施例的充气包装装置的充气包装袋1的第三种可替换实施方式的一充气包装袋1C。如图13A至图13E所示,一种充气包装袋1C,适于包装酒瓶等圆柱形物品,该酒瓶优选为瓶颈小于其瓶身的酒瓶,且瓶颈和瓶身均为圆柱形,其中该充气包装袋1C折叠后形成与该酒瓶相同的形状,得以将该酒瓶紧密地包裹在该充气包装袋1C中,即该充气包装袋1C折叠后的形状与该酒瓶的形状相适应,得以紧紧地包裹于该酒瓶的外部。
在该第二种可替换实施方式中,通过将至少一充气阀20安装于一充气缓冲体10C中,通过一气泵对该充气缓冲体10C进行充气,使其具有空气缓冲作用,包装待包装物后,适于保护该待包装物。
该充气缓冲体10C是通过两层气室膜11C及一第二气室膜12C叠加而形成,其中该气室膜11C及12C叠合在一起后形成至少一储气单元13C、一储气室14C、一充气口152C和一主通道151C,各该储气室14C和该主通道151C、该充气口152C相连通,通过将该充气阀20安装于各该储气室14C以给该充气缓冲体10C进行充气,使其具有空气缓冲作用。
优选地,该充气缓冲体10C被多条分隔缝31C分成多个储气单元13C,各该储气单元13C相互独立,如果损坏其中一个储气单元13C,不会影响其他该储气单元13C的空气缓冲作用。
该充气缓冲体10C设置多列折叠缝44C,其中该折叠缝44C纵向地设于该充气缓冲体10C的上端和下端,分别位于两个充储气单元13C之间的热封线上,其中该充气缓冲体10C的下部包括三列下折叠缝441C,由该充气缓冲体10C的底部向着该充气缓冲体10C的中部方向延伸,该充气缓冲体10C的上部包括四列上折叠缝442C,由该主通道151C向着该充气缓冲体10C中部的方向延伸。值得注意的是,该上折叠缝442C的存在,使得该折叠单元10c”’的上端便于挤压使得该折叠单元10c”’上端形成的空间小于该折叠单元10c”’下端形成的空间,以使得该折叠单元10c”’上端适合待包装的酒瓶的瓶颈,以使其紧贴瓶颈,使得包装更加严密,且该下折叠缝441C的存在,使得该折叠单元10c”’的底部便于折叠,形成较平稳的一底壁16C,在该容纳腔100C的底部形成障碍,防止该待包装物品滑出该容纳腔100C。
值得一提的是,该上折叠缝442C和该下折叠缝441C的存在得以改变该充气包装袋1C的横向尺寸,使得该充气包装袋1C得以贴附于该待包装物。
该折叠缝44C与该储气单元13C之间的热封线可以一体形成,即该折叠缝44C可以通过热封的方式来实施。
该充气缓冲体10C设置四列弯折缝37C,其将两气室膜热封连接,使得该充气缓冲体10C便于折叠形成该充气包装袋1C,其中从该折叠单元10c”’的下端向上端依次设置一第一列弯折缝371C、一第二列弯折缝372C、一第三列弯折缝373C和一第四列弯折缝374C。
该第一列弯折缝371C和该第二列弯折缝372C横向地设于该充气缓冲体10C的下端,该充气缓冲体10C通过该第一列弯折缝371C和该第二列弯折缝372C进行横向弯折形成该充气包装袋1C的底部,其中该第一列弯折缝371C和该第二列弯折缝372C之间的子充气室形成一支撑部10b”’,其中该支撑部10b”’围成椭圆形的结构,得以支撑该充气包装袋1C,且该支撑部10b”’具有空气缓冲作用,使得该充气包装袋1C得以稳固地站立,也能很好的保护该待包装物。
值得一提的是,在该第一列弯折缝371C和该第二列弯折缝372C的作用下,该充气缓冲体10C的下部得以弯折形成该充气包装袋1C的底部,同时,也便于手动打开该充气包装袋1C的底部,打开后,便于将酒瓶放入该充气包装袋1C,然后再进行弯折,形成该充气包装袋1C的底部,沿着该第一列弯折缝371C和该第二列弯折缝372C进行弯折,使得酒瓶稳固地位于该充气包装袋1C中,该第一列弯折缝371C、该第二列弯折缝372C使得该充气包装袋1C的底部适于弯折,并适于伸展,以打开该充气包装袋1C以放置或取出其中的该待包装物品,同时也使得该充气包装袋1C能够稳固地站立。
该第三列弯折缝373C和该第四列弯折缝374C位于该充气缓冲体10C的上部,使得该充气缓冲体10C适于沿着该第三列弯折缝373C和该第四列弯折缝374C进行弯折,弯折后,使得该第三列弯折缝373C和该第四列弯折缝374C之间的子充气室贴附于包装的酒瓶上,对于圆柱形的酒瓶,尤其是啤酒瓶和红酒瓶,瓶身和瓶颈均为圆柱形,在瓶身和瓶颈的连接处,设有一个从瓶身向瓶颈方向逐渐变细的瓶肩部,而该折叠单元10c”’通过该第三列弯折缝373C和该第四列弯折缝374C进行横向弯折,使得该充气缓冲体10C的上部与下部形成一倾斜的角,与瓶子的形状相似,再该第三列弯折缝373C和该第四列弯折缝374C进行弯折的情况下,二者之间的子充气室也弯折成了与酒瓶的瓶肩部相适应的形状,得以使该充气缓冲体10C与该酒瓶的瓶肩部紧密贴合,防止酒瓶出现晃动,更好的保护了酒瓶的安全。
值得一提的是,在该上折叠缝442C的作用下,该充气缓冲体10C得以进行横向挤压,使得该折叠单元10c”’的上部折叠后的尺寸小于其下部折叠后的尺寸,也就是说,四列该上折叠缝442C均匀地、间隔地分布于该充气缓冲体10C,当该折叠单元10c”’折叠后,该上折叠缝442C分别位于该充气包装袋1C的前部和后部,其中位于前部的该上折叠缝442C与位于后部的该上折叠缝442C可以粘接在一起,使得该充气包装袋1C的上部形成三个小的容纳腔,位于中部的容纳腔大小与酒瓶的瓶颈的大小相适应,以使得该充气包装袋1C的上部得以紧紧地贴附于酒瓶的瓶颈上,防止酒瓶出现晃动,保护了酒瓶的安全。
进一步地,该充气缓冲体10C设置二纵向塑封缝43C,其中该纵向塑封缝43C纵向地设于该充气缓冲体10C的两侧,得以使该充气缓冲体10C的两侧连接在一起,形成一容纳腔100C,得以容纳该待包装物,其中该充气缓冲体10C两侧的连接既可以通过热封的方式,也可以通过其他粘接的方式进行连接,得以固定该充气缓冲体10C。
值得一提的是,该充气包装袋1C的顶部既可以封闭,也可以不封闭,优选地,该充气包装袋1C的顶部得以封闭,以更好的保护该待包装物,防止杂物等进入该容纳腔100C中。
如图14至图16所示是本发明的充气包装袋的该充气阀20的结构示意图。 如图14所示,该充气阀20包括相对于两层该气室膜11和12较短的阀膜21和22,其分别与该气室膜11和12相叠合以用于形成向各个该储气单元13的该储气室14充气的进气通道23。如图15所示,该充气阀20进一步地可以包括增加一层阀膜25,其位于两层该阀膜21和22之间,以用于增强密封性能。如图16所示,该充气阀20可以进一步地包括一层阀膜26,其位于一层该气室膜12和该阀膜22之间,即位于两层该阀膜21和22的外侧,从而起到防止该阀膜22和该气室膜12的相连接处被撕裂,以起到加强其稳固连接的作用。可以理解的是,上述充气阀20的具体结构只作为举例而并不限制本发明。
另外,需要理解的是,本发明的各个实施例中的特征可以应用于其他实施例中,即所有这些实施例的特征可以适当地组合。
本领域的技术人员应理解,上述描述及附图中所示的本发明的实施例只作为举例而并不限制本发明。本发明的目的已经完整并有效地实现。本发明的功能及结构原理已在实施例中展示和说明,在没有背离该原理下,本发明的实施方式可以有任何变形或修改。

Claims (30)

  1. 一用于包装被包装物的便携式充气包装装置,其特征在于,包括:
    一充气包装袋;和
    一携带装置;其中所述充气包装袋包括一充气缓冲体和一系列平面塑封缝,其中所述充气缓冲体包括至少两层气室膜,其中所述平面塑封缝能够将所述气室膜进行塑封,以形成一平面缓冲材料;其中所述携带装置与所述充气包装装置一起使用,以使包装于所述充气包装袋的该被包装物得到良好的缓冲并具有便携性。
  2. 根据权利要求1所述的便携式充气包装装置,其中所述充气包装袋还包括一系列立体塑封缝,其中所述立体塑封缝将所述平面缓冲材料进一步塑封而使所述充气包装袋形成具有空间立体构型并且能够容纳所述包装物品的所述立体包装装置,其中在所述携带装置的大小和形状与所述充气包装袋相适应,以使所述携带装置对包装该被包装物的充气包装袋进行进一步包装。
  3. 根据权利要求2所述的便携式充气包装装置,其中所述充气包装袋还包括至少一充气阀,以方便对所述充气缓冲体进行充气,其中所述携带装置包括一携带主体,其中通过携带所述携带主体来携带所述充气包装袋及被包装于所述充气包装袋的该被包装物。
  4. 根据权利要求3所述的便携式充气包装装置,其中所述携带装置还包括一携带元件,其中所述携带元件被设置于所述携带主体,以方便对所述携带主体进行携带。
  5. 根据权利要求4所述的便携式充气包装装置,其中所述携带主体被设置于所述充气包装袋,以与所述充气包装袋进行固定连接。
  6. 根据权利要求5所述的便携式充气包装装置,其中所述携带主体与所述充气包装袋的一部分进行固定连接,以方便通过所述充气包装袋展示包装于所述充气包装袋的被包装物。
  7. 根据权利要求4所述的便携式充气包装装置,其中在所述携带装置的一包装状态,所述携带装置形成一包装腔,其中所述包装腔被用于容纳所述充气包装袋,以对所述充气包装袋进行包装并通过携带所述携带主体来携带所述充气包装袋及被包装于所述充气包装袋的该被包装物。
  8. 根据权利要求7所述的便携式充气包装装置,其中所述携带装置能够被收缩,以便对所述携带装置进行存放、储存和运输。
  9. 根据权利要求8所述的便携式充气包装装置,其中对所述携带装置进行收缩的方式选自折叠和卷折。
  10. 根据权利要求9所述的便携式充气包装装置,其中所述携带装置的所述携带主体的材质选自纸、布和塑料。
  11. 根据权利要求6所述的便携式充气包装装置,其中所述便携式充气包装装置还包括一功能袋,以为包装于所述充气包装袋的该被包装物提供预设功能的保护。
  12. 根据权利要求10所述的便携式充气包装装置,其中所述便携式充气包装装置还包括一功能袋,以为包装于所述充气包装袋的该被包装物提供预设功能的保护。
  13. 根据权利要求11所述的便携式充气包装装置,其中所述便携式充气包装装置还包括一包装箱,其中所述包装箱能够被包装于所述充气包装袋的外部。
  14. 根据权利要求12所述的便携式充气包装装置,其中所述便携式充气包装装置还包括一包装箱,其中所述包装箱能够被包装于所述充气包装袋的外部。
  15. 根据权利要求13所述的便携式充气包装装置,其中所述充气包装袋包括一便携元件,其中所述便携元件被设置于所述充气缓冲体,以使所述充气包装袋被单独使用时也具有便携性。
  16. 根据权利要求14所述的便携式充气包装装置,其中所述充气包装袋包括一便携元件,其中所述便携元件被设置于所述充气缓冲体,以使所述充气包装袋被单独使用时也具有便携性。
  17. 根据权利要求15所述的便携式充气包装装置,其中所述便携元件包括一便携体并具有一对便携孔,其中所述便携孔形成于所述便携体,其中所述便携体形成与所述充气缓冲体。
  18. 根据权利要求16所述的便携式充气包装装置,其中所述便携元件包括一便携体并具有一对便携孔,其中所述便携孔形成于所述便携体,其中所述便携体形成与所述充气缓冲体。
  19. 根据权利要求1~18任意一项所述的便携式充气包装装置,其中所述充气包装袋包括一包装主体、一侧翼缓冲部和一侧包装体,其中所述包装主体具有一 主容纳腔,其中所述侧翼缓冲部具有一侧翼缓冲腔,其中所述侧包装体具有一侧容纳腔,其中所述主容纳腔、所述侧翼缓冲腔和所述侧容纳腔分开设置。
  20. 根据权利要求19所述的便携式充气包装装置,其中所述平面塑封缝包括一系列弯折缝,其中所述平面缓冲材料沿所述弯折缝进行弯折以形成所述包装主体、所述侧翼缓冲部和所述侧包装体。
  21. 根据权利要求20所述的便携式充气包装装置,其中所述弯折缝包括一系列侧翼弯折缝、一系列主包装弯折缝和一系列侧包装弯折缝,其中所述侧翼弯折缝被设置于所述侧翼缓冲部,其中所述主包装弯折缝被设置于所述包装主体,其中所述侧包装弯折缝被设置于所述侧包装体。
  22. 根据权利要求21所述的便携式充气包装装置,其中所述立体塑封缝包括一列第一分室缝,其中所述第一分室缝用于间隔所述主容纳腔和所述侧翼缓冲腔。
  23. 根据权利要求22所述的便携式充气包装装置,其中所述立体塑封缝还包括一列第二分室缝,其中所述第二分室缝用于间隔所述主容纳腔和所述侧容纳腔。
  24. 根据权利要求23所述的便携式充气包装装置,其中所述立体塑封缝还包括一横向塑封缝,其中所述横向塑封缝被设置于所述包装主体的底侧,以在底侧对所述包装主体进行封合。
  25. 根据权利要求24所述的便携式充气包装装置,其中所述充气包装袋还包括一侧压缓冲部,其中所述侧压缓冲部与所述包装主体、所述侧翼缓冲部和所述侧包装体相互配合,以为包装于所述充气包装袋的该被包装物提供多级缓冲。
  26. 根据权利要求25所述的便携式充气包装装置,其中所述主容纳腔具有一开口,其中所述充气包装袋还包括一闭合装置,其中所述闭合装置被用于闭合所述开口。
  27. 根据权利要求13所述的便携式充气包装装置,其中所述充气包装袋包括一包装主体和至少一站立部,其中所述站立部与所述包装主体连接并使所述充气包装袋能够站立。
  28. 根据权利要求14所述的便携式充气包装装置,其中所述充气包装袋包括一包装主体和至少一站立部,其中所述站立部与所述包装主体连接并使所述充气包装袋能够站立。
  29. 根据权利要求1~14、27、28中任意一项所述的便携式充气包装装置,其中所述平面塑封缝包括多列弯折缝,其中所述平面缓冲材料沿所述弯折缝进行弯折,以使所述充气包装袋具有预设形状。
  30. 根据权利要求29所述的便携式充气包装装置,其中所述立体塑封缝包括一个以上纵向塑封缝,其分别设于所述充气缓冲体两侧的边缘,以将所述充气缓冲体连接,以形成所述主容纳腔。
PCT/CN2016/096698 2015-08-27 2016-08-25 便携式充气包装装置及其制造方法和包装方法 WO2017032329A1 (zh)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
CN201510534275 2015-08-27
CN2015105342758 2015-08-27
CN2015108906023 2015-12-04
CN201520998271.0U CN205499794U (zh) 2015-08-27 2015-12-04 便携式充气包装装置
CN201510890602.3A CN105416845A (zh) 2015-08-27 2015-12-04 便携式充气包装装置及其制造方法和包装方法
CN2015209982710 2015-12-04

Publications (1)

Publication Number Publication Date
WO2017032329A1 true WO2017032329A1 (zh) 2017-03-02

Family

ID=55495480

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/096698 WO2017032329A1 (zh) 2015-08-27 2016-08-25 便携式充气包装装置及其制造方法和包装方法

Country Status (2)

Country Link
CN (2) CN205499794U (zh)
WO (1) WO2017032329A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2559512A (en) * 2018-05-07 2018-08-08 Paul Turner Edward Packaging system
GB2563783A (en) * 2018-05-07 2018-12-26 Paul Turner Edward Packaging system

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205499794U (zh) * 2015-08-27 2016-08-24 上海艾尔贝包装科技发展有限公司 便携式充气包装装置
WO2017206836A1 (zh) * 2016-05-30 2017-12-07 天津定创科技发展有限公司 充气缓冲体及其充气设备和包装容器及其应用
CN108945806A (zh) * 2017-05-24 2018-12-07 天津定创科技发展有限公司 包装装置及其包装方法
CN110116853A (zh) * 2019-06-05 2019-08-13 东莞市银滨实业有限公司 一种传统的拼接式箱式充气缓冲盒结构

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003118772A (ja) * 2001-10-16 2003-04-23 Matsushita Electric Ind Co Ltd 緩衝包装袋および包装構造
CN1895967A (zh) * 2005-07-11 2007-01-17 上海尼禄国际贸易有限公司 自粘膜回绝空气立体包装材料及其制造方法
CN101367457A (zh) * 2007-08-17 2009-02-18 廖建华 逆向吊床式空气防震套
WO2009103193A1 (zh) * 2008-02-21 2009-08-27 上海尼禄国际贸易有限公司 可重复利用的多功能立体密封包装材料及其制造方法
CN203714346U (zh) * 2014-01-19 2014-07-16 上海艾尔贝包装科技发展有限公司 具有空气缓冲性能的包装盒
CN105416845A (zh) * 2015-08-27 2016-03-23 上海艾尔贝包装科技发展有限公司 便携式充气包装装置及其制造方法和包装方法

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5631585Y2 (zh) * 1975-11-01 1981-07-28
CN1117683C (zh) * 2000-08-09 2003-08-13 宏碁股份有限公司 可充气式包装充填装置
CN2825510Y (zh) * 2005-06-17 2006-10-11 简伯欣 气柱片的缓冲装置
CN101462622B (zh) * 2007-12-19 2011-05-25 廖建华 可转折的多段缓冲包装套袋及装有该包装套袋的包装箱
CN101234692A (zh) * 2008-02-15 2008-08-06 柏陞工业股份有限公司 酒瓶气体包装袋
CN102795407B (zh) * 2011-05-27 2017-03-01 上海艾尔贝包装科技发展有限公司 充气包装盒及其制造方法

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003118772A (ja) * 2001-10-16 2003-04-23 Matsushita Electric Ind Co Ltd 緩衝包装袋および包装構造
CN1895967A (zh) * 2005-07-11 2007-01-17 上海尼禄国际贸易有限公司 自粘膜回绝空气立体包装材料及其制造方法
CN101367457A (zh) * 2007-08-17 2009-02-18 廖建华 逆向吊床式空气防震套
WO2009103193A1 (zh) * 2008-02-21 2009-08-27 上海尼禄国际贸易有限公司 可重复利用的多功能立体密封包装材料及其制造方法
CN203714346U (zh) * 2014-01-19 2014-07-16 上海艾尔贝包装科技发展有限公司 具有空气缓冲性能的包装盒
CN105416845A (zh) * 2015-08-27 2016-03-23 上海艾尔贝包装科技发展有限公司 便携式充气包装装置及其制造方法和包装方法
CN205499794U (zh) * 2015-08-27 2016-08-24 上海艾尔贝包装科技发展有限公司 便携式充气包装装置

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2559512A (en) * 2018-05-07 2018-08-08 Paul Turner Edward Packaging system
GB2563783A (en) * 2018-05-07 2018-12-26 Paul Turner Edward Packaging system
GB2563783B (en) * 2018-05-07 2020-02-26 Paul Turner Edward A method of reusing packaging

Also Published As

Publication number Publication date
CN205499794U (zh) 2016-08-24
CN105416845A (zh) 2016-03-23

Similar Documents

Publication Publication Date Title
WO2017032329A1 (zh) 便携式充气包装装置及其制造方法和包装方法
WO2016188390A1 (zh) 具有侧翼加强缓冲部的充气包装装置及其储气单元
US10730679B2 (en) Standing-type air-filled packaging apparatus and manufacturing method therefor
US11390447B2 (en) Packaging box with air buffering performance and application thereof
US10526126B2 (en) Rectangular air packaging device and manufacturing method therefor
KR100995179B1 (ko) 접을 수 있는 다단 완충포장백
CN205098707U (zh) 具有斜置缓冲部的充气包装装置
CN108860901B (zh) 具有空气缓冲性能的包装盒及其应用
US7931402B1 (en) Inflatable gift wrap in the shape of a cake
WO2015192707A1 (zh) 立体折叠式空气包装装置及其制造方法
CN105644941A (zh) 充气包装装置
CN206939442U (zh) 空气包装装置
GB2213794A (en) Carrying bag for bottles
CN207292976U (zh) 充气包装装置
CN207346386U (zh) 空气包装装置
CN106081357B (zh) 方形流体包装装置
CN106144227B (zh) 方形流体包装装置
JP3169865U (ja) 非常用袋
CN205499795U (zh) 充气包装装置
EP3611115B1 (en) Packaging bag for shockproof and combination thereof
CN207450682U (zh) 流体包装装置
CN215206372U (zh) 充气包装装置
CN207292974U (zh) 流体包装装置
CN108688923B (zh) 包装装置及其应用
CN206218496U (zh) 方形流体包装装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16838587

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16838587

Country of ref document: EP

Kind code of ref document: A1