WO2024103585A1 - 一种抗菌c型口罩生产用耳带压接及检测设备 - Google Patents

一种抗菌c型口罩生产用耳带压接及检测设备 Download PDF

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Publication number
WO2024103585A1
WO2024103585A1 PCT/CN2023/082374 CN2023082374W WO2024103585A1 WO 2024103585 A1 WO2024103585 A1 WO 2024103585A1 CN 2023082374 W CN2023082374 W CN 2023082374W WO 2024103585 A1 WO2024103585 A1 WO 2024103585A1
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WO
WIPO (PCT)
Prior art keywords
mask
ear strap
station
ear
groups
Prior art date
Application number
PCT/CN2023/082374
Other languages
English (en)
French (fr)
Inventor
牛彪
牛莉
李晶晶
赖华春
牛盾
Original Assignee
安徽金牛药械股份有限公司
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Application filed by 安徽金牛药械股份有限公司 filed Critical 安徽金牛药械股份有限公司
Publication of WO2024103585A1 publication Critical patent/WO2024103585A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C5/00Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
    • B07C5/34Sorting according to other particular properties
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C5/00Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
    • B07C5/36Sorting apparatus characterised by the means used for distribution
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C65/00Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor
    • B29C65/02Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor by heating, with or without pressure
    • B29C65/08Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor by heating, with or without pressure using ultrasonic vibrations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C65/00Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor
    • B29C65/78Means for handling the parts to be joined, e.g. for making containers or hollow articles, e.g. means for handling sheets, plates, web-like materials, tubular articles, hollow articles or elements to be joined therewith; Means for discharging the joined articles from the joining apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C65/00Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor
    • B29C65/82Testing the joint
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01VGEOPHYSICS; GRAVITATIONAL MEASUREMENTS; DETECTING MASSES OR OBJECTS; TAGS
    • G01V8/00Prospecting or detecting by optical means
    • G01V8/10Detecting, e.g. by using light barriers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the present invention relates to the technical field of mask detection, and in particular to an ear band crimping and detection device for producing an antibacterial C-type mask.
  • a mask is a sanitary and epidemic prevention product, generally worn on the mouth and nose to filter the air entering the mouth and nose, so as to block harmful gases, odors, droplets, viruses and other substances. It is made of gauze or paper and other materials. The mask has a certain filtering effect on the air entering the lungs. When respiratory infectious diseases are prevalent and when working in an environment polluted by dust, wearing a mask is very effective.
  • Type C masks also known as folding masks, are personal protective equipment used to prevent or reduce dust from entering the human respiratory organs; they are easy to fold and carry; they feature high-efficiency electrostatic filter materials that can absorb extremely fine dust; they have a unique design shape, combined with an excellent nose clip and headband to ensure a good fit with the face; they are foldable and easy to carry; and they are suitable for most face shapes.
  • the patent document with patent number CN111634017B discloses a mask detection device including a detection workbench; an ear line recognition mechanism, which is arranged above the conveyor belt, and a camera is provided on the ear line recognition mechanism; a mask clamping mechanism, which includes a clamping block arranged on the side of the conveyor belt; a stretching detection mechanism, which is arranged above the conveyor belt, and the stretching detection mechanism includes a fixed plate, an adjustment plate, a lifting module and a transverse stretching module, the fixed plate is arranged above the adjustment plate, the lifting module passes through the fixed plate and is fixedly connected to the adjustment plate, and the transverse stretching module is arranged on the bottom surface of the adjustment plate.
  • the purpose of the present invention is to achieve full-automatic mask production through mutual cooperation between workstations in view of the deficiencies in the prior art, thereby improving production efficiency and reducing labor costs, and automatically checking whether the air permeability of the mask is up to standard through a mask detection station, and automatically checking whether the ear straps are firm through an ear strap detection station, thereby improving efficiency while ensuring that the ear straps of each produced mask are firm, and avoiding the problem of subsequent manual or machine-based inspection of the mask ear straps.
  • an ear band crimping and testing device for the production of antibacterial C-type masks comprising a workbench and a transmission mechanism installed on the workbench, a plurality of groups of bearing mechanisms evenly spaced along the transmission direction of the transmission mechanism, and a mask testing station, an ear band crimping station, an ear band testing station and a mask output station are sequentially arranged along the transmission direction of the transmission mechanism;
  • the carrying mechanism includes a supporting assembly for carrying the mask and cooperating with the mask detection station to detect the air permeability of the mask, a clamping assembly for fixing the mask with the cooperation of the supporting assembly, a positioning assembly for positioning the ear strap and cooperating with the ear strap detection station to detect whether the ear strap is connected to the mask, and a driving assembly for driving the positioning assembly to rotate so as to fix the ear strap.
  • the supporting assembly includes a base installed on the transmission mechanism, a limit plate arranged on the base along the transmission direction of the transmission mechanism, and a boss installed at the center of the base.
  • the clamping assembly comprises two groups of sliding rods connected to the base slideway through hinges, a folding rod hingedly arranged with the sliding rods and connected to the base through a telescopic unit, a lower pressure ring installed at one end of the two groups of folding rods, a clamping plate rotatably connected to the bottom of the lower pressure ring and symmetrically arranged, and a T-shaped guide rod installed between the two groups of sliding rods;
  • An elastic unit is arranged between the two groups of clamping plates, and the lower parts of the two groups of clamping plates are arranged corresponding to the arc surface of the boss, and a guide groove matched with the T-shaped guide rod is opened on the workbench.
  • four groups of the positioning components are arranged along the transmission direction of the transmission mechanism and are symmetrical along the center line of the base.
  • a slide groove adapted to the positioning components is provided on the base, and the slide groove is communicated with the inner cavity of the base.
  • the positioning assembly includes a slider slidably connected to the slide groove, a through shaft penetrating through and rotatably connected to the slider, and a fixing member installed on the top of the through shaft;
  • a positioning groove is provided on the top of the fixing piece, and fixing grooves are provided on both sides of the fixing piece.
  • each two groups of the positioning components are equipped with a group of driving components
  • the driving components include a driving gear rotatably connected to the outside of the inner cavity of the base, a transmission gear installed inside the inner cavity of the base, and a passive gear installed at the bottom of the through shaft;
  • the transmission gear is meshed with the driving gear and the passive gear respectively, the bottom of the through shaft is rotatably connected with the inner cavity of the base, and a driving rack matched with the driving gear is arranged on the workbench.
  • the mask testing station is provided with a mask testing mechanism for cooperating with a clamping assembly to detect the air permeability of the mask
  • the mask testing mechanism includes a detector installed on a workbench through a frame, a telescopic rod connected to the detector, and a testing nozzle connected to the bottom of the telescopic rod.
  • the ear strap crimping station is provided with an ear strap welding mechanism for installing the ear straps of the mask
  • the ear strap welding mechanism comprises a frame two, an ultrasonic welding head mechanism installed on the frame two, a finger grip fixing mechanism and a pull rope mechanism, the ultrasonic welding head mechanism is provided with four groups, and the pull rope mechanism is provided with two groups.
  • the ear band detection station is provided with a tensioning mechanism for detecting whether the ear band is fixed, and the tensioning mechanism includes a frame three, two sets of sliding electric rails symmetrically installed under the frame three, an electric telescopic part slidably connected to the sliding electric rails, and a shovel plate installed at the front end of the electric telescopic part, and the two sets of sliding electric rails have opposite movement directions.
  • the tensioning mechanism includes a frame three, two sets of sliding electric rails symmetrically installed under the frame three, an electric telescopic part slidably connected to the sliding electric rails, and a shovel plate installed at the front end of the electric telescopic part, and the two sets of sliding electric rails have opposite movement directions.
  • the four groups of infrared detection units are further provided on the ear strap detection station, and the four groups of infrared detection units are respectively located above the ear straps that are not in contact with the mask.
  • the four groups of infrared detection units correspond to four groups of ultrasonic welding head mechanisms respectively, and the mask output station is provided with a storage box.
  • the present invention realizes fully automatic mask production through the mutual cooperation between the workstations, thereby improving production efficiency and reducing labor costs.
  • the mask detection station automatically checks whether the air permeability of the mask meets the standard, and the ear strap detection station automatically checks whether the ear strap is firm. While improving efficiency, it ensures that the ear strap of each mask produced is firm, and avoids the problem of subsequent manual or machine inspection of the mask ear strap;
  • the mask is fixed by a clamping assembly, which facilitates various detection operations of the mask and maintains its stability, prevents it from detaching or deviating during the transmission process or the detection process, and avoids the subsequent fixed position deviation of the ear strap.
  • the mask is automatically removed from the supporting assembly by the clamping assembly and output;
  • the infrared detection unit cooperates with the tensioning mechanism to accurately determine which end of the ear strap is not firm, and under the action of the positioning component, the ear strap after detection is returned to the welding point again, so that it can be welded again.
  • the tensioning mechanism to accurately determine which end of the ear strap is not firm, and under the action of the positioning component, the ear strap after detection is returned to the welding point again, so that it can be welded again.
  • welding again only the corresponding welding point works, preventing the connected points from being welded again and causing penetration.
  • the equipment has the advantages of improving production efficiency and reducing labor costs, and is particularly suitable for the field of mask detection technology.
  • Figure 1 is a schematic diagram of the structure of the ear strap crimping and testing equipment for the production of antibacterial C-type masks.
  • Figure 2 is a structural schematic diagram of the ear strap crimping and testing equipment for the production of antibacterial C-type masks from another perspective.
  • FIG. 3 is a schematic front view of the structure of the transmission mechanism.
  • FIG. 4 is a schematic structural diagram of the bearing mechanism.
  • FIG. 5 is a schematic structural diagram of a support assembly.
  • FIG. 6 is a schematic diagram of the working state of the clamping assembly.
  • FIG. 7 is a schematic cross-sectional view of the structure of the positioning assembly.
  • FIG. 8 is a schematic top view of the structure of the driving assembly.
  • FIG. 9 is a schematic structural diagram of an ear band crimping station.
  • FIG. 10 is a schematic diagram of the structure of the earband detection station.
  • an ear band crimping and testing device for the production of antibacterial C-type masks includes a workbench 100 and a transmission mechanism 1 installed on the workbench 100, characterized in that a plurality of groups of bearing mechanisms 2 are evenly spaced along the transmission direction of the transmission mechanism 1, and a mask detection station, an ear band crimping station, an ear band detection station, and a mask output station are sequentially arranged along the transmission direction of the transmission mechanism 1;
  • the carrying mechanism 2 includes a supporting assembly 21 for carrying the mask and cooperating with the mask detection station to detect the air permeability of the mask, a clamping assembly 22 for fixing the mask with the cooperation of the supporting assembly 21, a positioning assembly 23 for positioning the ear strap and cooperating with the ear strap detection station to detect whether the ear strap is connected to the mask, and a driving assembly 24 for driving the positioning assembly 23 to rotate so as to fix the ear strap.
  • the supporting mechanism 2 is provided to sequentially pass through the mask detection station, the ear strap crimping station, the ear strap detection station and the mask output station, and the fully automatic mask production is realized through the mutual cooperation between the stations, thereby improving the production efficiency and reducing the labor cost.
  • the air permeability of the mask is checked at the mask detection station to see whether it meets the standard, and the ear strap is checked at the ear strap detection station to see whether it is firm. If not, the transmission mechanism 1 can be moved in the opposite direction by one station, so that the supporting mechanism 2 returns to the ear strap crimping station again for welding, thereby ensuring that each mask ear strap produced is firm, and avoiding the problem of subsequent manual or other machine inspection of the mask ear strap;
  • the mask is first placed on the support assembly 21 of the bearing mechanism 2, and then moved to the mask detection station.
  • the clamping assembly 22 will gradually move downward, cooperate with the support assembly 21 to clamp the mask, move to the mask detection station and stop, then check the mask, and transfer to the next station after the test is qualified. If the test is unqualified, the transmission mechanism 1 moves in the opposite direction for a station distance, and a new mask is placed.
  • the qualified mask is transferred to the ear strap crimping station and stops, the ear straps are welded to the corresponding points on both sides of the mask, and the ear straps will fall on the positioning assembly 23, and then the bearing mechanism 2 is moved again to move it to the ear strap detection station.
  • the driving assembly 24 will be driven to make the positioning assembly 23 rotate one circle to position and fix the ear straps.
  • the firmness of the mask ear straps is tested. If the test is qualified, it is moved to the mask output station for output. If the test is unqualified, the transmission mechanism 1 is moved in the opposite direction for a station distance again, and the unfixed ear straps are welded again, and finally output, thereby improving the qualified rate of the mask.
  • the support assembly 21 includes a base 211 installed on the transmission mechanism 1, a limit plate 212 arranged on the base 211 along the transmission direction of the transmission mechanism 1, and a boss 213 installed at the center of the base 211.
  • the mask can move with the movement of the transmission mechanism 1 through the base 211, the limiting plate 212 is used to limit the mask, the boss 213 is set to fit the curvature of the mask, and a plurality of groups of air holes are opened on the boss 213 for cooperating with the mask detection station to detect the air permeability of the mask.
  • the clamping assembly 22 includes two sets of slide bars 221 connected to the slideway of the base 211 through hinges, folding bars 222 hingedly arranged with the slide bars 221 and connected to the base 211 through telescopic units, lower pressure rings 223 installed at one end of the two sets of folding bars 222, clamping plates 224 rotatably connected to the bottom of the lower pressure ring 223 and symmetrically arranged, and T-shaped guide rods 225 installed between the two sets of slide bars 221;
  • An elastic unit is arranged between the two groups of the clamping plates 224 , and the lower parts of the two groups of the clamping plates 224 are arranged corresponding to the arc surface of the boss 213 .
  • a guide groove 200 adapted to the T-shaped guide rod 225 is provided on the workbench 100 .
  • the T-shaped guide rod 225 gradually moves downward under the guiding action of the guide groove 200.
  • the slide bar 221 will slide to one side, and the folding rod 222 and the lower pressure ring 223 will also gradually descend, and the folding rod 222 is connected to the base 211 through the telescopic unit, so that the lower pressure ring 223 keeps descending horizontally, and the lower clamping plate 224 is initially in a small angle.
  • the elastic unit provided between the clamping plates 224 is used to keep the clamping of the clamping plates 224 on the mask.
  • the T-shaped guide rod 225 gradually moves upward under the guiding action of the guide groove 200, and due to the action of the elastic unit, the two clamping plates 224 clamp the mask during the rising process of the T-shaped guide rod 225, thereby driving the mask to rise together with it.
  • the clamping plates 224 are released to output the produced masks.
  • the T-shaped guide rod 225 descends, it will drive the slide rod 221 to rotate and descend, causing its lateral length to become longer, so it will slide in the reverse direction, wherein the lower pressure ring 223 and the two clamping plates 224 are both arranged in a ring shape, which is convenient for checking the air permeability of the mask and avoids interfering with the welding of the ear straps.
  • four groups of positioning components 23 are arranged along the transmission direction of the transmission mechanism 1 and are symmetrical along the center line of the base 211.
  • a slide groove 214 adapted to the positioning component 23 is opened on the base 211, and the slide groove 214 is connected to the inner cavity of the base 211.
  • the positioning assembly 23 includes a slider 231 slidably connected to the slide slot 214, a through shaft 232 penetrating and rotatably connected to the slider 231, and a fixing member 233 installed on the top of the through shaft 232;
  • the fixing member 233 has a positioning slot 234 formed on its upper side and fixing slots 235 formed on its two sides.
  • each positioning component 23 corresponds to one end of the rope.
  • the driving rack 300 will drive the driving component 24 to rotate the through shaft 232, so that the fixing member 233 rotates one circle, that is, the rope is wound along the fixing groove 235 provided on the fixing member 233, so as to achieve the function of positioning and fixing the ear strap.
  • another driving rack 300 is provided after the ear band detection station to reverse the ear bands that have passed the detection, thereby releasing the ear bands to facilitate the subsequent output of the masks at the mask output station.
  • each two groups of the positioning components 23 are equipped with a group of driving components 24, and the driving components 24 include a driving gear 241 rotatably connected to the outside of the inner cavity of the base 211, a transmission gear 242 installed inside the inner cavity of the base 211, and a passive gear 243 installed at the bottom of the through shaft 232;
  • the transmission gear 242 is meshed with the driving gear 241 and the driven gear 243 respectively.
  • the bottom of the through shaft 232 is rotatably connected to the inner cavity of the base 211 .
  • a driving rack 300 adapted to the driving gear 241 is disposed on the workbench 100 .
  • the driving rack 300 drives the driving gear 241 to rotate, and drives the two passive gears 243 to rotate through the transmission gear 242, thereby driving the fixing part 233 above it to rotate.
  • the driving rack 300 is located between the guide groove 200 and the transmission mechanism 1 to prevent the gear from interfering with the normal operation of the clamping assembly 22.
  • the ear band detection station is provided with a tensioning mechanism 5 for detecting whether the ear band is fixed, and the tensioning mechanism 5 includes a frame three 51, two sets of sliding electric rails 52 symmetrically installed under the frame three 51, an electric telescopic member 53 slidably connected to the sliding electric rail 52, and a shovel plate 54 installed at the front end of the electric telescopic member 53, and the two sets of sliding electric rails 52 move in opposite directions.
  • the ear strap detection station is also provided with four groups of infrared detection units 400, which are respectively located above the ear straps that are not in contact with the mask.
  • the four groups of infrared detection units 400 correspond to four groups of ultrasonic welding head mechanisms 42, respectively.
  • the mask output station is provided with a storage box 500.
  • the sliding electric rails 52 are started to make the electric telescopic component 53 move outward, and at the same time, the electric telescopic component 53 will move downward to the inner circle of the ear band, and then when moving outward, the two ear bands will be stretched outward. After a certain distance, they will move in the opposite direction to reset. At this time, one set of movement is completed and waits for the next start.
  • each ear strap has two stress points, and a group of positioning components 23 are provided at the stress points, and the infrared detection unit 400 is arranged above the ear straps between the positioning component 23 and the mask.
  • the positioning component 23 will only drive the ear straps between the positioning component 23 and the mask to move horizontally, so if the ear straps are fixed normally, the infrared detection unit 400 will not react and the detection is normal. If the ear straps are not firmly fixed, they will be taken away by them, so the infrared detection unit 400 will not detect the existence of objects within this distance, and it will send a signal at this time.
  • the transmission mechanism 1 is reversed by one station, and the corresponding ultrasonic welding head mechanism 42 is made to perform welding again, wherein the infrared detection unit 400 and the two sets of sliding rails 52 share the same power supply, that is, the infrared detection unit 400 works when the two sets of sliding rails 52 are working;
  • the ear strap rope end is located in the positioning assembly 23, after the tensioning mechanism 5 completes its work, regardless of whether the ear strap is firm or not, the ear strap welding point will still be in place, waiting for re-welding, and there is no need to manually re-position it or replace it with a new ear strap. Therefore, the closing switch of the pull rope mechanism 44 will be triggered during the reversal of the transmission mechanism 1, and the pull rope mechanism 44 will be started only when it rotates forward.
  • the mask testing station is provided with a mask testing mechanism 3 for cooperating with the clamping assembly 22 to detect the air permeability of the mask.
  • the mask testing mechanism 3 includes a detector 32 installed on the workbench 100 through a frame 31, a telescopic rod 33 connected to the detector 32, and a detection nozzle 34 connected to the bottom of the telescopic rod 33.
  • the mask is first placed on the carrying mechanism 2, and then moved to the mask detection station, and stopped after moving to the mask detection station, and then the mask is inspected, and transferred to the next station after passing the inspection. If the inspection fails, the transmission mechanism 1 moves in the opposite direction by one station distance, and a new mask is placed. When the mask passes the inspection, it is transferred to the ear band crimping station;
  • this device is an existing perfect technology and will not be described in detail here.
  • the ear strap crimping station is provided with an ear strap welding mechanism 4 for installing the ear straps of the mask
  • the ear strap welding mechanism 4 includes a frame 41, an ultrasonic welding head mechanism 42 installed on the frame 41, a finger gripping fixing mechanism 43 and a pull rope mechanism 44, and the ultrasonic welding head mechanism 42 is provided with four groups, and the pull rope mechanism 44 is provided with two groups.
  • the ear strap when the mask moves to the station, the ear strap is first transferred to a specific position by the pull rope mechanism 44, and it is shortened, and then welded to the mask by the ultrasonic welding head mechanism 42.
  • the specific working principle refers to the principle of the kn95 mask ear strap spot welding machine;
  • each ultrasonic horn mechanism 42 and each pull rope mechanism 44 are independently controlled.
  • the T-shaped guide rod 225 gradually moves downward under the guidance of the guide groove 200.
  • the slide bar 221 will slide to one side, and the folding rod 222 and the lower pressure ring 223 will also gradually descend, and the folding rod 222 is connected to the base 211 through the telescopic unit, so that the lower pressure ring 223 keeps descending horizontally.
  • the initial state of the clamping plate 224 below is a small angle. When it contacts the boss 213, it will gradually open along its arc surface, and the elastic unit set between the clamping plates 224 will keep the clamping of the mask on the clamping plate 224.
  • the transmission mechanism 1 moves in the opposite direction for one station distance and a new mask is placed.
  • the mask passes the inspection, it is transferred to the ear band crimping station.
  • the ear band is first transferred to a specific position through the pull rope mechanism 44 and shortened. Then, it is welded to the mask through the ultrasonic welding head mechanism 42, and the ear band will fall on the positioning component 23. Then, the bearing mechanism 2 is moved again to move it to the ear band inspection station.
  • the driving rack 300 drives the driving gear 241 to rotate, and drives the two passive gears 243 to rotate through the transmission gear 242, thereby driving the through shaft 2
  • the switch is turned on, and the sliding electric rail 52 is started to make the electric telescopic member 53 move outward.
  • the electric telescopic member 53 moves downward to the inner circle of the ear strap, and then moves outward to stretch the two ear straps outward.
  • the reverse movement is reset. At this time, a set of movements is completed and the next start is waited.
  • each ear strap When the two ear straps are stretched outward, each ear strap has two force points, and a set of positioning components 23 are arranged at the force points, and the infrared detection unit Element 400 is arranged above the ear strap between the positioning component 23 and the mask.
  • the positioning component 23 When the ear strap is pulled to both sides, the positioning component 23 will only drive the ear strap between the positioning component 23 and the mask to move horizontally. Therefore, if the ear strap is fixed normally, the infrared detection unit 400 will not react and the detection is normal. If the ear strap is not firmly fixed, it will be taken away by it, so the infrared detection unit 400 will not detect the existence of objects within this distance. At this time, it will send a signal.
  • the tensioning mechanism 5 completes the work, the transmission mechanism 1 is reversed by one station, and the corresponding ultrasonic welding head mechanism 42 is used to perform welding again. When it reaches the mask output station, the clamp 224 is released to output the produced mask.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Geophysics (AREA)
  • Respiratory Apparatuses And Protective Means (AREA)

Abstract

本发明涉及一种抗菌C型口罩生产用耳带压接及检测设备,包括工作台以及安装于工作台上的传输机构,沿传输机构传输方向均匀间隔设置的若干组承载机构,且沿传输机构传输方向依次设置有口罩检测工位、耳带压接工位、耳带检测工位以及口罩输出工位;本发明通过工位之间的相互配合实现全自动的口罩生产,提高了生产效率,减少了人工成本,且通过口罩检测工位自动检查口罩的透气性是否达标、通过耳带检测工位自动检查耳带是否牢固,在提高效率的同时保证每个生产的口罩耳带均是牢固的,而且避免了后续人工或者用其他机器再检测口罩耳带的问题。

Description

一种抗菌C型口罩生产用耳带压接及检测设备 技术领域
本发明涉及口罩检测技术领域,尤其涉及一种抗菌C型口罩生产用耳带压接及检测设备。
背景技术
口罩是一种卫生防疫用品,一般指戴在口鼻部位用于过滤进入口鼻的空气,以达到阻挡有害的气体、气味、飞沫、病毒等物质的作用,以纱布或纸等材料做成,口罩对进入肺部的空气有一定的过滤作用,在呼吸道传染病流行时,在粉尘等污染的环境中作业时,戴口罩具有非常好的作用。
C型口罩,又称折叠口罩,是用于防止或减少粉尘进入人体呼吸器官的个人防护用品;易于折叠,便于携带;特性高效静电滤材,可吸附极细粉尘;独特设计形状,配合优良鼻夹和头带,保证与脸部良好密合;折叠式,便于携带;适合绝大多数脸型。
专利号为CN111634017B的专利文献公开了一种口罩检测装置包括,检测工作台;耳线识别机构,其设置在传送带上方,耳线识别机构上设有摄像头;口罩夹取机构,其包括设置在传送带侧部的夹块;拉伸检测机构,其设置在传送带上方,拉伸检测机构包括固定板、调节板、升降模块以及横向拉伸模块,固定板设置在调节板的上方,升降模块穿过固定板并与调节板固定连接,横向拉伸模块设置在调节板的底面。
但是,在实际使用过程中,发明人发现现有技术中,需要人工拉耳线来检查耳线是否可以承受设计的拉力而不脱落;工人检查时主观随意性大,造成缺陷件未检出或者合格件被破坏现象,同时检查效率也较低的问题。
发明内容
本发明的目的是针对现有技术的不足之处,通过工位之间的相互配合实现全自动的口罩生产,提高了生产效率,减少了人工成本,且通过口罩检测工位自动检查口罩的透气性是否达标、通过耳带检测工位自动检查耳带是否牢固,在提高效率的同时保证每个生产的口罩耳带均是牢固的,而且避免了后续人工或者用其他机器再检测口罩耳带的问题。
针对以上技术问题,采用技术方案如下:一种抗菌C型口罩生产用耳带压接及检测设备,包括工作台以及安装于工作台上的传输机构,沿传输机构传输方向均匀间隔设置的若干组承载机构,且沿传输机构传输方向依次设置有口罩检测工位、耳带压接工位、耳带检测工位以及口罩输出工位;
所述承载机构包括用于承载口罩且配合口罩检测工位对口罩进行透气性进行检测的支撑组件、在支撑组件的配合下将口罩固定住的夹持组件、用于对耳带定位并配合耳带检测工位检测耳带是否与口罩连接的定位组件以及用于驱动定位组件转动从而将耳带固定的驱动组件。
优选的,所述支撑组件包括安装于传输机构上的底座、沿传输机构传输方向设置于底座上的限位板以及安装于底座中心处的凸台。  
优选的,所述夹持组件包括通过铰接件与底座滑道连接的两组滑杆、与滑杆铰接设置且通过伸缩单元与底座连接的折杆、安装于两组所述折杆一端的下压环、转动连接于下压环底部且对称设置的夹板以及安装于两组滑杆之间的T型导杆;
两组所述夹板之间设置有弹性单元,且两组所述夹板的下方与凸台弧面对应设置,所述工作台上开设有与T型导杆相适配的导向槽。
优选的,所述定位组件沿传输机构传输方向设置四组,且沿所述底座的中心线对称,所述底座上开设有与定位组件相适配的滑槽,且所述滑槽与底座的内腔相连通。
优选的,所述定位组件包括与滑槽滑动连接的滑块、贯穿且与滑块转动连接的通轴以及安装于通轴顶部的固定件;
所述固定件上方开设有定位槽,且其两侧开设有固定槽。
优选的,每两组所述定位组件均配合设置一组驱动组件,所述驱动组件包括转动连接于底座内腔外侧的驱动齿轮、安装于底座内腔内部的传动齿轮以及安装于通轴底部的被动齿轮;
所述传动齿轮分别与驱动齿轮和被动齿轮相啮合,所述通轴底部与底座内腔转动连接,所述工作台上设置有与驱动齿轮相适配的驱动齿条。
优选的,所述口罩检测工位上设置有配合夹持组件对口罩透气性检测的口罩检测机构,所述口罩检测机构包括通过机架一安装于工作台上的检测仪、与检测仪连通设置的伸缩杆以及与伸缩杆下方连通设置的检测嘴。
优选的,所述耳带压接工位上设置有用于对口罩耳带进行安装的耳带焊接机构,所述耳带焊接机构包括机架二、安装于机架二上的超声焊头机构、指抓固定机构以及拉绳机构,所述超声焊头机构设置有四组,所述拉绳机构设置有两组。
优选的,所述耳带检测工位上设置有用于检测耳带是否固定的张紧机构,所述张紧机构包括机架三、对称安装于机架三下方的两组滑动电轨、滑动连接于滑动电轨内的电动伸缩件以及安装于电动伸缩件前端的铲板,所述两组滑动电轨运动方向相反。
优选的,所述耳带检测工位上还设置有四组红外检测单元,所述四组红外检测单元分别位于不与口罩接触的耳绳上方,所述四组红外检测单元分别对应四组超声焊头机构,所述口罩输出工位设置有收纳盒。
本发明的有益效果:
(1)本发明中通过工位之间的相互配合实现全自动的口罩生产,提高了生产效率,减少了人工成本,且通过口罩检测工位自动检查口罩的透气性是否达标、通过耳带检测工位自动检查耳带是否牢固,在提高效率的同时保证每个生产的口罩耳带均是牢固的,而且避免了后续人工或者用其他机器再检测口罩耳带的问题;
(2)本发明中通过夹持组件对口罩进行固定,便于口罩进行各种检测工作,且保持其稳定性,防止在传输过程中或检测过程中发生脱离或偏离现象,避免后续对耳带的固定位置偏移,同时在检测完毕后,通过夹持组件自动将口罩从支撑组件上取下,并进行输出;
(3)本发明中通过红外检测单元配合张紧机构可以精确确认是哪一端耳带不牢固,并在定位组件的作用下使检测后的耳带再次回到焊接点,从而再次对其进行焊接,一方面不需要更换耳带,且不用再次对其进行定位,另一方面再次焊接时只有对应的焊接点进行工作,防止已连接的点再次焊接导致贯通。
综上所述,该设备具有提高了生产效率,减少了人工成本的优点,尤其适用于口罩检测技术领域。
附图说明
为了更清楚的说明本发明实施例的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述的附图仅仅是本发明的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他附图。
图1为抗菌C型口罩生产用耳带压接及检测设备的结构示意图。
图2为抗菌C型口罩生产用耳带压接及检测设备另一视角的结构示意图。
图3为传输机构的结构示意正视图。
图4为承载机构的结构示意图。
图5为支撑组件的结构示意图。
图6为夹持组件的工作状态示意图。
图7为定位组件的结构示意剖视图。
图8为驱动组件的结构示意俯视图。
图9为耳带压接工位的结构示意图。
图10为耳带检测工位的结构示意图。
实施方式
下面结合附图对本发明实施例中的技术方案进行清楚、完整地说明。
实施例
如图1-4所示,一种抗菌C型口罩生产用耳带压接及检测设备,包括工作台100以及安装于工作台100上的传输机构1,其特征在于,沿传输机构1传输方向均匀间隔设置的若干组承载机构2,且沿传输机构1传输方向依次设置有口罩检测工位、耳带压接工位、耳带检测工位以及口罩输出工位;
所述承载机构2包括用于承载口罩且配合口罩检测工位对口罩进行透气性进行检测的支撑组件21、在支撑组件21的配合下将口罩固定住的夹持组件22、用于对耳带定位并配合耳带检测工位检测耳带是否与口罩连接的定位组件23以及用于驱动定位组件23转动从而将耳带固定的驱动组件24。
在本实施例中,通过设置的承载机构2依次通过口罩检测工位、耳带压接工位、耳带检测工位以及口罩输出工位,通过工位之间的相互配合实现全自动的口罩生产,提高了生产效率,减少了人工成本,且通过口罩检测工位检查口罩的透气性是否达标、通过耳带检测工位检查耳带是否牢固,若否则可使传输机构1反向运动一个工位,使承载机构2再次回到耳带压接工位工位再次进行焊接,保证每个生产的口罩耳带均是牢固的,而且避免了后续人工或者用其他机器再检测口罩耳带的问题;
详细的说,先将口罩放置在承载机构2的支撑组件21上,然后向口罩检测工位上移动,此过程中夹持组件22会逐渐向下,配合支撑组件21将口罩夹紧,移动至口罩检测工位上后停止,然后对口罩进行检查,检测合格后转移向下一工位,检测未合格则传输机构1反向运动一个工位距离,重新放置一个口罩,当检测合格后的口罩转移至耳带压接工位上后停止,将耳带焊接在口罩的两边的对应点位上,且耳带会落至在定位组件23上,然后再次移动承载机构2使其向耳带检测工位移动,此过程中会驱动驱动组件24使定位组件23转动一圈,将耳带定位固定,当到达耳带检测工位后,对口罩耳带的牢固性进行检测,若检测合格则移动至口罩输出工位输出,若检测未合格则再次使传输机构1反向运动一个工位距离,对未固定的耳带再次焊接,最终将其输出,提高口罩的合格率。
进一步,如图4-5所示,所述支撑组件21包括安装于传输机构1上的底座211、沿传输机构1传输方向设置于底座211上的限位板212以及安装于底座211中心处的凸台213。  
在本实施例中,通过底座211使口罩能够随传输机构1的移动而移动,限位板212用于对口罩进行限位,凸台213贴合口罩的弧度设置,且凸台213上开设有若干组透气孔,用于配合口罩检测工位检测口罩的透气性。
进一步,如图4、6所示,所述夹持组件22包括通过铰接件与底座211滑道连接的两组滑杆221、与滑杆221铰接设置且通过伸缩单元与底座211连接的折杆222、安装于两组所述折杆222一端的下压环223、转动连接于下压环223底部且对称设置的夹板224以及安装于两组滑杆221之间的T型导杆225;
两组所述夹板224之间设置有弹性单元,且两组所述夹板224的下方与凸台213弧面对应设置,所述工作台100上开设有与T型导杆225相适配的导向槽200。
在本实施例中,在传输机构1传动过程中,T型导杆225在导向槽200的导向作用下,逐渐向下移动,下降过程中滑杆221会向一侧滑动,而折杆222和下压环223也逐渐下降,且折杆222通过伸缩单元与底座211连接,使下压环223保持水平下降,下方的夹板224初始状态为夹角较小,当接触至凸台213后,会沿其弧面逐渐张开,且通过夹板224之间设置的弹性单元,保持夹板224对口罩的夹紧,当耳带检测工位检测合格后,T型导杆225在导向槽200的导向作用下,逐渐向上移动,而且由于弹性单元的作用,使两块夹板224在T型导杆225上升的过程中,将口罩夹持从而带动口罩与之一起上升,当到达口罩输出工位后,松开夹板224,将生产好的口罩输出;
需要说明的是,由于T型导杆225下降会带动滑杆221转动下降,导致其横向长度变长,所以其会向反向滑动,其中下压环223和两块夹板224均呈环状设置,方便对口罩的透气性进行检查,且避免妨碍到耳带的焊接。
进一步,如图4、7所示,所述定位组件23沿传输机构1传输方向设置四组,且沿所述底座211的中心线对称,所述底座211上开设有与定位组件23相适配的滑槽214,且所述滑槽214与底座211的内腔相连通。
所述定位组件23包括与滑槽214滑动连接的滑块231、贯穿且与滑块231转动连接的通轴232以及安装于通轴232顶部的固定件233;
所述固定件233上方开设有定位槽234,且其两侧开设有固定槽235。
在本实施例中,每一个定位组件23对应绳子的一头,在对耳带焊接时,其绳边会自然落入固定件233的定位槽234内,在耳带焊接完成后,会通过驱动齿条300带动驱动组件24,使通轴232发生转动,从而使固定件233旋转一圈,即将绳子沿固定件233上开设的固定槽235缠绕,即达到定位固定耳带的作用;
另外,在耳带检测工位之后还设置有另一驱动齿条300,使检测合格的耳带进行反转,从而将耳带放开,便于后续在口罩输出工位处输出口罩。
进一步,如图4、8所示,每两组所述定位组件23均配合设置一组驱动组件24,所述驱动组件24包括转动连接于底座211内腔外侧的驱动齿轮241、安装于底座211内腔内部的传动齿轮242以及安装于通轴232底部的被动齿轮243;
所述传动齿轮242分别与驱动齿轮241和被动齿轮243相啮合,所述通轴232底部与底座211内腔转动连接,所述工作台100上设置有与驱动齿轮241相适配的驱动齿条300。
在本实施例中,从耳带压接工位转移向耳带检测工位过程中,驱动齿条300会带动驱动齿轮241转动,通过传动齿轮242带动两个被动齿轮243进行转动,从而带动其上方的固定件233进行旋转,驱动齿条300位于导向槽200和传输机构1之间,避免齿轮妨碍夹持组件22正常工作。
进一步,如图10所示,所述耳带检测工位上设置有用于检测耳带是否固定的张紧机构5,所述张紧机构5包括机架三51、对称安装于机架三51下方的两组滑动电轨52、滑动连接于滑动电轨52内的电动伸缩件53以及安装于电动伸缩件53前端的铲板54,所述两组滑动电轨52运动方向相反。
所述耳带检测工位上还设置有四组红外检测单元400,所述四组红外检测单元400分别位于不与口罩接触的耳绳上方,所述四组红外检测单元400分别对应四组超声焊头机构42,所述口罩输出工位设置有收纳盒500。
在本实施例中,通过设置两组方向运动的滑动电轨52,在承载机构2移动至耳带检测工位上时,打开开关,启动滑动电轨52使电动伸缩件53向外侧运动,同时电动伸缩件53会向下移动至耳带的内圈,然后向外侧移动时,将两个耳带向外侧进行拉伸,至一定距离后,再反向运动复位,此时一组运动结束,等待下次启动。
需要说明的是,在两个耳带向外侧进行拉伸时,每个耳带有两个受力点,且受力点处均设置有一组定位组件23,而红外检测单元400便设置在定位组件23和口罩之间的耳带上方,耳带向两侧拉动时,定位组件23只会带动定位组件23和口罩之间的耳带进行水平运动,所以若是耳带固定正常,则红外检测单元400不会发生反应检测正常,若耳带固定不牢固,则会被其带走,所以红外检测单元400便检测不到此距离内有物体存在,此时其便会发出信号,当张紧机构5完成工作后,使传输机构1反转一个工位,并使与之对应的超声焊头机构42再次进行焊接工作,其中红外检测单元400与两组滑动电轨52共用同一电源,即两组滑动电轨52工作时红外检测单元400工作;
另外,由于耳带绳端位于定位组件23内,所以在张紧机构5完成工作后,不论耳带是否牢固,其耳带焊接点仍然会处于原位,等待再次焊接,不需要人工再次对其定位,或更换一个新的耳带,所以在传输机构1反转过程中会触发拉绳机构44的关闭开关,当正转时才会启动拉绳机构44。
实施例
本实施例中与上述实施例中相同或相应的部件采用与上述实施例相应的附图标记,为简便起见,下文仅描述与上述实施例的区别点。该实施例与上述实施例的不同之处在于:
进一步,如图6和图9所示,所述口罩检测工位上设置有配合夹持组件22对口罩透气性检测的口罩检测机构3,所述口罩检测机构3包括通过机架一31安装于工作台100上的检测仪32、与检测仪32连通设置的伸缩杆33以及与伸缩杆33下方连通设置的检测嘴34。
在本实施例中,先将口罩放置在承载机构2,然后向口罩检测工位上移动,移动至口罩检测工位上后停止,然后对口罩进行检查,检测合格后转移向下一工位,检测未合格则传输机构1反向运动一个工位距离,重新放置一个口罩,当检测合格后的口罩转移向耳带压接工位;
详细的说,本装置为现有完善技术,在此不加以赘述。
进一步,如图1-4所示,所述耳带压接工位上设置有用于对口罩耳带进行安装的耳带焊接机构4,所述耳带焊接机构4包括机架二41、安装于机架二41上的超声焊头机构42、指抓固定机构43以及拉绳机构44,所述超声焊头机构42设置有四组,所述拉绳机构44设置有两组。
在本实施例中,当口罩移动至该工位后,先通过拉绳机构44将耳带转移至特定位置,并将其剪短,然后通过超声焊头机构42将其焊接在口罩上,其具体工作原理参考kn95口罩耳带点焊机的原理;
另外,其中每个超声焊头机构42和每个拉绳机构44均是独立操控的。
首先,先将口罩放置在承载机构2的支撑组件21上,然后向口罩检测工位上移动,此过程中T型导杆225在导向槽200的导向作用下,逐渐向下移动,下降过程中滑杆221会向一侧滑动,而折杆222和下压环223也逐渐下降,且折杆222通过伸缩单元与底座211连接,使下压环223保持水平下降,下方的夹板224初始状态为夹角较小,当接触至凸台213后,会沿其弧面逐渐张开,且通过夹板224之间设置的弹性单元,保持夹板224对口罩的夹紧,移动至口罩检测工位上后停止,然后对口罩进行检查,检测合格后转移向下一工位,检测未合格则传输机构1反向运动一个工位距离,重新放置一个口罩,当检测合格后的口罩转移向耳带压接工位,当口罩移动至该工位后停止,先通过拉绳机构44将耳带转移至特定位置,并将其剪短,然后通过超声焊头机构42将其焊接在口罩上,且耳带会落至在定位组件23上,然后再次移动承载机构2使其向耳带检测工位移动,此过程中驱动齿条300会带动驱动齿轮241转动,通过传动齿轮242带动两个被动齿轮243进行转动,从而带动通轴232发生转动,从而使固定件233旋转一圈,即将绳子沿固定件233上开设的固定槽235缠绕,即达到定位固定耳带的作用,在承载机构2移动至耳带检测工位上时,打开开关,启动滑动电轨52使电动伸缩件53向外侧运动,同时电动伸缩件53会向下移动至耳带的内圈,然后向外侧移动时,将两个耳带向外侧进行拉伸,至一定距离后,再反向运动复位,此时一组运动结束,等待下次启动,在两个耳带向外侧进行拉伸时,每个耳带有两个受力点,且受力点处均设置有一组定位组件23,而红外检测单元400便设置在定位组件23和口罩之间的耳带上方,耳带向两侧拉动时,定位组件23只会带动定位组件23和口罩之间的耳带进行水平运动,所以若是耳带固定正常,则红外检测单元400不会发生反应检测正常,若耳带固定不牢固,则会被其带走,所以红外检测单元400便检测不到此距离内有物体存在,此时其便会发出信号,当张紧机构5完成工作后,使传输机构1反转一个工位,并使与之对应的超声焊头机构42再次进行焊接工作,当到达口罩输出工位后,松开夹板224,将生产好的口罩输出。
在本发明的描述中,需要理解的是,术语“前后”、“左右”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的设备或部件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对发明的限制。
当然在本技术方案中,本领域的技术人员应当理解的是,术语“一”应理解为“至少一个”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明的技术提示下可轻易想到的变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应该以权利要求书的保护范围为准。。

Claims (10)

  1. 一种抗菌C型口罩生产用耳带压接及检测设备,包括工作台以及安装于工作台上的传输机构,其特征在于,沿传输机构传输方向均匀间隔设置的若干组承载机构,且沿传输机构传输方向依次设置有口罩检测工位、耳带压接工位、耳带检测工位以及口罩输出工位;
    所述承载机构包括用于承载口罩且配合口罩检测工位对口罩进行透气性进行检测的支撑组件、在支撑组件的配合下将口罩固定住的夹持组件、用于对耳带定位并配合耳带检测工位检测耳带是否与口罩连接的定位组件以及用于驱动定位组件转动从而将耳带固定的驱动组件。
  2. 根据权利要求1所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述支撑组件包括安装于传输机构上的底座、沿传输机构传输方向设置于底座上的限位板以及安装于底座中心处的凸台。  
  3. 根据权利要求2所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述夹持组件包括通过铰接件与底座滑道连接的两组滑杆、与滑杆铰接设置且通过伸缩单元与底座连接的折杆、安装于两组所述折杆一端的下压环、转动连接于下压环底部且对称设置的夹板以及安装于两组滑杆之间的T型导杆;
    两组所述夹板之间设置有弹性单元,且两组所述夹板的下方与凸台弧面对应设置,所述工作台上开设有与T型导杆相适配的导向槽。
  4. 根据权利要求2所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述定位组件沿传输机构传输方向设置四组,且沿所述底座的中心线对称,所述底座上开设有与定位组件相适配的滑槽,且所述滑槽与底座的内腔相连通。
  5. 根据权利要求4所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述定位组件包括与滑槽滑动连接的滑块、贯穿且与滑块转动连接的通轴以及安装于通轴顶部的固定件;
    所述固定件上方开设有定位槽,且其两侧开设有固定槽。
  6. 根据权利要求5所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,每两组所述定位组件均配合设置一组驱动组件,所述驱动组件包括转动连接于底座内腔外侧的驱动齿轮、安装于底座内腔内部的传动齿轮以及安装于通轴底部的被动齿轮;
    所述传动齿轮分别与驱动齿轮和被动齿轮相啮合,所述通轴底部与底座内腔转动连接,所述工作台上设置有与驱动齿轮相适配的驱动齿条。
  7. 根据权利要求1所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述口罩检测工位上设置有配合夹持组件对口罩透气性检测的口罩检测机构,所述口罩检测机构包括通过机架一安装于工作台上的检测仪、与检测仪连通设置的伸缩杆以及与伸缩杆下方连通设置的检测嘴。
  8. 根据权利要求7所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述耳带压接工位上设置有用于对口罩耳带进行安装的耳带焊接机构,所述耳带焊接机构包括机架二、安装于机架二上的超声焊头机构、指抓固定机构以及拉绳机构,所述超声焊头机构设置有四组,所述拉绳机构设置有两组。
  9. 根据权利要求8所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述耳带检测工位上设置有用于检测耳带是否固定的张紧机构,所述张紧机构包括机架三、对称安装于机架三下方的两组滑动电轨、滑动连接于滑动电轨内的电动伸缩件以及安装于电动伸缩件前端的铲板,所述两组滑动电轨运动方向相反。
  10. 根据权利要求9所述的一种抗菌C型口罩生产用耳带压接及检测设备,其特征在于,所述耳带检测工位上还设置有四组红外检测单元,所述四组红外检测单元分别位于不与口罩接触的耳绳上方,所述四组红外检测单元分别对应四组超声焊头机构,所述口罩输出工位设置有收纳盒。
PCT/CN2023/082374 2022-11-15 2023-03-18 一种抗菌c型口罩生产用耳带压接及检测设备 WO2024103585A1 (zh)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111634017A (zh) * 2020-06-10 2020-09-08 宁波均胜科技有限公司 一种口罩检测装置及自动口罩生产线
CN112161993A (zh) * 2020-10-27 2021-01-01 江苏汇林智能制造有限公司 口罩检测机构
CN113176138A (zh) * 2021-05-27 2021-07-27 天津长荣科技集团股份有限公司 一种检测口罩耳带焊点牢固程度的装置及方法
CN214027310U (zh) * 2020-10-16 2021-08-24 广东宝塑科技有限公司 一种生产一次性口罩用输送装置
CN214687986U (zh) * 2021-02-22 2021-11-12 广州易和电子科技有限公司 口罩机用耳带自动烫焊装置
WO2022110328A1 (zh) * 2020-11-25 2022-06-02 华诺生命科学技术(惠州)有限公司 一种兼容不同规格口罩的耳带焊接机构
CN115742340A (zh) * 2022-11-15 2023-03-07 安徽金牛药械股份有限公司 一种抗菌c型口罩生产用耳带压接及检测设备

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113324892B (zh) * 2021-08-02 2021-09-24 南通朗迪机械科技有限公司 日用口罩生产用透气性检测设备
CN216373380U (zh) * 2021-11-19 2022-04-26 昆山宝锦激光拼焊有限公司 一种半自动双点位人工口罩焊接机

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111634017A (zh) * 2020-06-10 2020-09-08 宁波均胜科技有限公司 一种口罩检测装置及自动口罩生产线
CN214027310U (zh) * 2020-10-16 2021-08-24 广东宝塑科技有限公司 一种生产一次性口罩用输送装置
CN112161993A (zh) * 2020-10-27 2021-01-01 江苏汇林智能制造有限公司 口罩检测机构
WO2022110328A1 (zh) * 2020-11-25 2022-06-02 华诺生命科学技术(惠州)有限公司 一种兼容不同规格口罩的耳带焊接机构
CN214687986U (zh) * 2021-02-22 2021-11-12 广州易和电子科技有限公司 口罩机用耳带自动烫焊装置
CN113176138A (zh) * 2021-05-27 2021-07-27 天津长荣科技集团股份有限公司 一种检测口罩耳带焊点牢固程度的装置及方法
CN115742340A (zh) * 2022-11-15 2023-03-07 安徽金牛药械股份有限公司 一种抗菌c型口罩生产用耳带压接及检测设备

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