CN117485657B - Goods packing and packaging device with high tightness - Google Patents

Goods packing and packaging device with high tightness Download PDF

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Publication number
CN117485657B
CN117485657B CN202311843480.3A CN202311843480A CN117485657B CN 117485657 B CN117485657 B CN 117485657B CN 202311843480 A CN202311843480 A CN 202311843480A CN 117485657 B CN117485657 B CN 117485657B
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China
Prior art keywords
shaft
mounting
shafts
gear
transmission
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CN202311843480.3A
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Chinese (zh)
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CN117485657A (en
Inventor
贾瑞升
岳粹永
丁露
韩东
王利
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Changzhou Lisheng Technology Co ltd
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Changzhou Lisheng Technology Co ltd
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Publication of CN117485657A publication Critical patent/CN117485657A/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/10Feeding, e.g. conveying, single articles
    • B65B35/16Feeding, e.g. conveying, single articles by grippers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • B65B11/50Enclosing articles, or quantities of material, by disposing contents between two sheets, e.g. pocketed sheets, and securing their opposed free margins
    • B65B11/52Enclosing articles, or quantities of material, by disposing contents between two sheets, e.g. pocketed sheets, and securing their opposed free margins one sheet being rendered plastic, e.g. by heating, and forced by fluid pressure, e.g. vacuum, into engagement with the other sheet and contents, e.g. skin-, blister-, or bubble- packaging

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Retarders (AREA)
  • Transmission Devices (AREA)

Abstract

The invention relates to the technical field of packing equipment, in particular to a high-tightness goods packing and packaging device, which has high goods placing efficiency; including the installation base, two sets of support frames are installed to installation base middle part symmetry, and support shaft is installed in support frame shaft hole department rotation, and coaxial mounting has the mounting box on two sets of support shafts, and the locating shaft is installed in the cooperation of mounting box mounting groove department, and epaxial symmetry slidable mounting has two sets of installation arms respectively of every group, installs the grip block through coupling mechanism rotation on the installation arm, installs the balancing weight on the grip block.

Description

Goods packing and packaging device with high tightness
Technical Field
The invention relates to the technical field of packing equipment, in particular to a high-tightness goods packing and packaging device.
Background
The vacuum package is also called as a decompression package, and is characterized in that all air in a packaging container is pumped out and sealed, the inside of the bag is maintained in a highly decompressed state, the air is rare to be equivalent to the hypoxia effect, and the microorganism has no living condition. The application includes vacuum package in plastic bag, aluminum foil package, glassware, plastic and composite material package, etc. The invention provides a high-tightness goods packing and packaging device which can not only stably place goods on a bottom film, but also improve the placing efficiency.
Disclosure of Invention
The invention mainly aims to provide a goods packing and packaging device with high tightness, so that the problems pointed out in the background art are effectively solved.
In order to achieve the above purpose, the technical scheme adopted by the invention is as follows:
the utility model provides a goods packing and packaging device of high leakproofness, including the installation base, two sets of support frames are installed to installation base middle part symmetry, support frame shaft hole department rotates and installs the back shaft, coaxial mounting has the mounting box on two sets of back shafts, the equidistance is provided with multiunit mounting groove on the mounting box, mounting box mounting groove quantity is the multiple of struggling of 2, the locating shaft is installed in the cooperation of mounting box mounting groove department, two sets of installation arms of epaxial symmetry sliding mounting respectively of every group, the installation arm passes installation base mounting groove and with installation base mounting groove cooperation sliding connection, install the grip block through coupling mechanism rotation on the installation arm, the slipmat is installed to the grip block work end, install the balancing weight on the grip block.
Further, two sets of transmission shafts are symmetrically installed in a rotating mode on a set of support frames, transmission gears are installed on the transmission shafts in a matched mode, the transmission gears are arranged to be of a fan-shaped structure, step grooves are formed in the fan-shaped structure of the transmission gears, installation frames are installed on the transmission shafts in a rotating mode, connecting gears are installed on the installation frames, external teeth are respectively arranged on the transmission gears and the connecting gears, coil springs are installed on the transmission shafts, the other ends of the coil springs are connected with the inner cavity walls of the installation frames in a matched mode, through holes are symmetrically formed in two ends of installation box installation grooves respectively, threaded rods are installed in the through holes of the installation boxes in a rotating mode, the threaded rods are connected with the threaded through holes of the installation arms in a matched mode, driven gears are coaxially installed on the threaded rods, and the transmission gears and the connecting gears are in meshed transmission connection with the driven gears respectively.
Further, two groups of connecting shafts are symmetrically and rotatably arranged on one group of supporting frames, the connecting shafts and the transmission shafts are respectively and coaxially provided with transmission gears, the transmission shafts on the same side are in meshed transmission connection with the two groups of transmission gears on the connecting shafts, and the transmission gears on the two groups of connecting shafts are in meshed transmission connection.
Further, a power shaft is rotatably mounted on the support frame, a sector gear is coaxially mounted on the power shaft, a first gear is coaxially mounted on a group of support shafts, a second gear is coaxially mounted on a group of connecting shafts on one side of the support frame, the sector gear is respectively in meshed transmission connection with the first gear and the second gear, the sector gear is meshed with the first gear once to drive a plurality of groups of mounting arms on the mounting box to rotate a station, and the sector gear and the second gear are meshed once to drive the connecting shafts to rotate 360 degrees.
Further, a limiting plate is coaxially arranged on the supporting shaft on one side, arc grooves are formed in the limiting plate at equal intervals, the number of the arc grooves of the limiting plate corresponds to that of the installing box, connecting plates are coaxially arranged on the connecting shafts, limiting grooves are formed in the connecting plates, limiting pieces are coaxially arranged on the power shafts, two groups of grooves are formed in the limiting pieces, and the limiting pieces are respectively in sliding fit with the arc grooves of the limiting plate and the limiting grooves of the connecting plates.
Further, the two groups of support frames are respectively provided with a conductive shaft in a rotating way, the conductive shafts and the power shafts are respectively provided with chain wheels in a coaxial way, the two groups of chain wheels are provided with chains in a meshed way, the mounting base is provided with a double-shaft motor, and output ends on two sides of the double-shaft motor are respectively connected with the two groups of conductive shafts in a coaxial matching way.
Further, the connecting mechanism comprises a piston cylinder, the piston cylinder is rotatably arranged at the inner hole of the mounting arm, a connecting column is slidably arranged in the working cavity of the piston cylinder, the clamping plate is arranged on the connecting column in a matched mode, a spring is arranged on the connecting column, and the other end of the spring is connected with the wall of the working cavity of the piston cylinder in a matched mode.
Further, a protection box is arranged on the support frame, and the chain is positioned in the cavity of the protection box.
After the technical scheme is adopted, the invention has the beneficial effects that: make two sets of support frames cooperation installation and steady rest through the installation base, make the back shaft rotate support on the installation base through the back shaft, make the installation case rotate support on the installation base through two sets of back shaft cooperation, make installation arm location slidable mounting on the installation case through the locating shaft, make the grabbing end and place the end and can work simultaneously through the integer multiple of installation case mounting groove quantity 2, make the grip block rotate and install on the installation arm through coupling mechanism, make the grip block counter weight through the balancing weight and simultaneously the grip block work angle keeps unanimous under the effect of weight, make two sets of grip block cooperation carry out the centre gripping to goods through two sets of installation arms of epaxial symmetry slidable mounting of location, drive the goods of grip block on the angle rotation of installation arm through the installation case and make the grip block on the goods of grip block transport to plastic envelope bottom film.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings that are required to be used in the embodiments or the description of the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present invention, and other drawings may be obtained according to the drawings without inventive effort to those skilled in the art.
FIG. 1 is a schematic elevational view of the present invention;
FIG. 2 is a schematic diagram of the axial structure of the present invention;
FIG. 3 is a schematic view of a partial structure of the present invention;
FIG. 4 is a schematic diagram of the transmission gear configuration of the present invention;
FIG. 5 is a schematic view of a stop member structure of the present invention;
FIG. 6 is a schematic cross-sectional view of the present invention;
FIG. 7 is a schematic view of the mounting structure of the present invention;
FIG. 8 is a schematic view of the piston cylinder structure of the present invention;
the reference numerals in the drawings: 1. a mounting base; 2. a support frame; 3. a support shaft; 4. a mounting box; 5. positioning a shaft; 6. a mounting arm; 7. a clamping plate; 8. balancing weight; 9. a transmission shaft; 10. a transmission gear; 11. a mounting frame; 12. a connecting gear; 13. a coil spring; 14. a threaded rod; 15. a driven gear; 16. a connecting shaft; 17. a conductive gear; 18. a power shaft; 19. a sector gear; 20. a first gear; 21. a second gear; 22. a limiting disc; 23. a connecting disc; 24. a limiting piece; 25. a conductive shaft; 26. a sprocket; 27. a chain; 28. a biaxial motor; 29. a piston cylinder; 30. a connecting column; 31. a spring; 32. and (5) protecting the box.
Detailed Description
The following describes in further detail the embodiments of the present invention with reference to the drawings and examples. The following examples are illustrative of the invention and are not intended to limit the scope of the invention.
The installation mode, the connection mode or the setting mode of all the components are common mechanical modes, and the specific structure, the model and the coefficient index of all the components are self-contained technologies, so long as the beneficial effects can be achieved, and the device is not repeated.
In the article packaging and packaging device with high sealing property, unless otherwise indicated, terms such as "about" and "front and back, inside and outside, and vertical and horizontal" and the like are merely used to denote orientations of the term in a normal use state or are commonly understood by those skilled in the art, and should not be construed as limitations on the term, meanwhile, the terms such as "first", "second" and "third" are not used to denote specific numbers and sequences, only for distinguishing the names, and the terms such as "comprising", "includes" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus including a series of elements includes not only those elements but also other elements not explicitly listed or also elements inherent to such process, method, article or apparatus.
As shown in fig. 1 to 8, a goods packing and packaging device with high tightness comprises a mounting base 1, two groups of supporting frames 2 are symmetrically arranged in the middle of the mounting base 1, supporting shafts 3 are rotatably arranged at shaft holes of the supporting frames 2, mounting boxes 4 are coaxially arranged on the two groups of supporting shafts 3, a plurality of groups of mounting grooves are equidistantly arranged on the mounting boxes 4, the number of the mounting grooves of the mounting boxes 4 is a struggle multiple of 2, positioning shafts 5 are cooperatively arranged at the mounting grooves of the mounting boxes 4, two groups of mounting arms 6 are symmetrically and slidingly arranged on each group of positioning shafts 5 respectively, the mounting arms 6 penetrate through the mounting grooves of the mounting base 1 and are cooperatively and slidingly connected with the mounting grooves of the mounting base 1, clamping plates 7 are rotatably arranged on the mounting arms 6 through connecting mechanisms, anti-slip pads are arranged at working ends of the clamping plates 7, and balancing weights 8 are arranged on the clamping plates 7;
in the use, make two sets of support frames 2 cooperation installation and steady support through installation base 1, make back shaft 3 rotate support on installation base 1 through back shaft 3, make install bin 4 rotate support on installation base 1 through two sets of back shaft 3 cooperation, make installation arm 6 location slidable mounting on install bin 4 through locating shaft 5, make the grabbing end and place the end and can work simultaneously through the integer multiple of install bin 4 mounting groove quantity for 2, make grip block 7 rotate and install on installation arm 6 through coupling mechanism, make grip block 7 counter weight simultaneously grip block 7 work angle keep unanimous under the weight effect through balancing weight 8, make two sets of grip block 7 cooperation of grip block 7 centre gripping through symmetrical slidable mounting on locating shaft 5, drive the goods of centre gripping on the grip block 7 through install bin 4 and make the rotation of installation arm 6 angle to transport to the plastic envelope plastic.
As the preference of the above embodiment, two groups of transmission shafts 9 are symmetrically and rotatably mounted on a group of support frames 2, a transmission gear 10 is cooperatively mounted on the transmission shafts 9, the transmission gear 10 is in a fan-shaped structure, a stepped groove is formed in the fan-shaped structure of the transmission gear 10, a mounting frame 11 is rotatably mounted on the transmission shafts 9, a connecting gear 12 is mounted on the mounting frame 11, external tooth teeth are respectively arranged on the transmission gear 10 and the connecting gear 12, a coil spring 13 is mounted on the transmission shafts 9, the other end of the coil spring 13 is cooperatively connected with the inner cavity wall of the mounting frame 11, through holes are symmetrically formed at two ends of the mounting groove of a mounting box 4, a threaded rod 14 is rotatably mounted at the through hole of the mounting box 4, the threaded rod 14 is cooperatively connected with the threaded through hole of the mounting arm 6, a driven gear 15 is coaxially mounted on the threaded rod 14, and the transmission gear 10 and the connecting gear 12 are respectively meshed with the driven gear 15 for transmission;
in the use, make drive gear 10 cooperation rotate and install on support frame 2 through transmission shaft 9, make connecting gear 12 cooperation rotate and install on transmission shaft 9 through mounting bracket 11, make threaded rod 14 provide rotation power through drive gear 10 and connecting gear 12 tooth and driven gear 15 meshing, make two sets of installation arm 6 interval adjust and lock the working position simultaneously through threaded rod 14 rotation and installation arm 6 threaded connection, make connecting gear 12 and threaded rod 14 contact time carry out spacing to connecting gear 12 rotation through mounting bracket 11 and transmission shaft 9 rotation connection, drive through drive gear 10 and connecting gear 12 meshing with driven gear 15 and make threaded rod 14 provide rotation power, make drive gear 10 and driven gear 15 meshing contact time buffer while keeping tooth space stable cooperation through connecting gear 12 and relative rotation of drive gear 10, make mounting bracket 11 and transmission shaft 9 provide reset power after relative rotation through wind spring 13, be provided with the ladder groove on drive gear 10 and make mounting bracket 11 and drive gear 10 reset under wind spring 13 drive back connecting gear 12 tooth and drive gear 10 tooth gap between them, drive gear 4 and drive driven gear 10 tooth space and take place and keep the meshing when making the driven gear 4 take place and keep the meshing.
As the preference of the above embodiment, two groups of connecting shafts 16 are symmetrically and rotatably installed on one group of supporting frames 2, conductive gears 17 are coaxially installed on the connecting shafts 16 and the transmission shafts 9 respectively, the two groups of conductive gears 17 on the transmission shafts 9 and the connecting shafts 16 on the same side are in meshed transmission connection, and the conductive gears 17 on the two groups of connecting shafts 16 are in meshed transmission connection;
in the use process, the conducting gear 17 is rotatably supported on the support frame 2 through the connecting shafts 16, the two groups of connecting shafts 16 are synchronously and reversely driven at the same speed through the meshing of the conducting gears 17 on the two groups of connecting shafts 16, the connecting shafts 16 drive the transmission shafts 9 to rotate through the meshing of the conducting gears 17 on the connecting shafts 16 and the conducting gears 17 on the transmission shafts 9, the grabbing ends and the placing ends are reversely driven by the threaded rods 14 in opposite overturning directions through the synchronous and reversely rotating of the two groups of transmission shafts 9, namely, the distances between the two groups of mounting arms 6 at the grabbing ends are reduced to grab goods, the distances between the two groups of mounting arms 6 at the placing ends are increased to be separated from the goods in a contact mode, and the working efficiency of the goods packaging is maintained.
As a preference of the embodiment, a power shaft 18 is rotatably mounted on the support frame 2, a sector gear 19 is coaxially mounted on the power shaft 18, a first gear 20 is coaxially mounted on one group of support shafts 3, a second gear 21 is coaxially mounted on one group of connecting shafts 16 positioned on one side of the support frame 2, the sector gear 19 is respectively meshed and in transmission connection with the first gear 20 and the second gear 21, the sector gear 19 is meshed with the first gear 20 once to drive a plurality of groups of mounting arms 6 on the mounting box 4 to rotate for one station, and the sector gear 19 and the second gear 21 are meshed once to drive the connecting shafts 16 to rotate for 360 degrees;
in the use, make sector gear 19 rotate and support on installation base 1 through power shaft 18, make the supporting shaft 3 drive the multiunit installation arm 6 on the installation case 4 and carry out the work regulation through sector gear 19 rotation and first gear 20 meshing, make connecting axle 16 provide rotation power through sector gear 19 and second gear 21 meshing, make power shaft 18 and supporting shaft 3 and connecting axle 16 intermittent type nature transmission through sector gear 19, make installation case 4 rotate and separate with goods snatch and place through intermittent type nature transmission, keep job stabilization.
As a preference of the above embodiment, a limiting disc 22 is coaxially installed on the supporting shaft 3 on one side, circular arc grooves are equidistantly arranged on the limiting disc 22, the number of the circular arc grooves of the limiting disc 22 corresponds to that of the installation grooves of the installation box 4 one by one, a connecting disc 23 is coaxially installed on the connecting shaft 16, the limiting grooves are arranged on the connecting disc 23, a limiting piece 24 is coaxially installed on the power shaft 18, two groups of grooves are arranged on the limiting piece 24, and the limiting piece 24 is respectively in matched sliding connection with the circular arc grooves of the limiting disc 22 and the limiting grooves of the connecting disc 23;
in the use process, the power shaft 18 drives the limiting piece 24 to rotate and the circular arc groove of the limiting disc 22 to cooperate with the circular arc groove of the supporting shaft 3 to rotate for limiting and locking, the power shaft 18 drives the limiting piece 24 to rotate and the limiting groove of the connecting disc 23 to cooperate with the limiting groove of the connecting shaft 16 to rotate for limiting and locking, and the limiting piece 24 is connected with and disconnected from the limiting disc 22 and the connecting disc 23 when the sector gear 19 is meshed with the first gear 20 and the second gear 21 respectively through the two groups of grooves arranged on the limiting piece 24, so that the working stability of the device is improved.
As the preference of the above embodiment, the two groups of supporting frames 2 are respectively rotatably provided with a conducting shaft 25, the conducting shaft 25 and the power shaft 18 are respectively coaxially provided with a chain wheel 26, the two groups of chain wheels 26 are engaged and provided with a chain 27, the mounting base 1 is provided with a double-shaft motor 28, and the output ends of the two sides of the double-shaft motor 28 are respectively coaxially matched and connected with the two groups of conducting shafts 25;
in use, the transmission shafts 25 are in driving connection with the power shaft 18 by meshing the chains 27 with the two sets of sprockets 26, the two sets of transmission shafts 25 are provided with rotational power by the double-shaft motor 28, and the double-shaft motor 28 drives the power shaft 18 to rotate by the transmission shafts 25.
As a preference of the above embodiment, the connecting mechanism comprises a piston cylinder 29, the piston cylinder 29 is rotatably installed at the inner hole of the installation arm 6, a connecting column 30 is slidably installed in the working cavity of the piston cylinder 29, the clamping plate 7 is installed on the connecting column 30 in a matched manner, a spring 31 is installed on the connecting column 30, and the other end of the spring 31 is connected with the wall of the working cavity of the piston cylinder 29 in a matched manner;
in the use process, the connecting column 30 is slidably arranged on the mounting arm 6 through the piston cylinder 29, the clamping plate 7 is contacted with goods for buffering through the spring 31, and the working angle of the clamping plate 7 under the action of weight is kept consistent through the rotary connection of the piston cylinder 29 and the mounting arm 6.
Preferably, the protection box 32 is mounted on the support frame 2, and the chain 27 is positioned in the cavity of the protection box 32;
during the use, the chain 27 is isolated and protected through the protection box 32, so that the working safety of the device is improved.
Firstly, the double-shaft motor 28 drives the guide shaft 25 to rotate, then the chain 27 is meshed with two groups of chain wheels 26, the guide shaft 25 drives the power shaft 18 to rotate, then the power shaft 18 drives the sector gear 19 to rotate and is meshed with the first gear 20, then the support shaft 3 drives a plurality of groups of mounting arms 6 on the mounting box 4 to perform station adjustment, when the sector gear 19 is meshed with the first gear 20, the limiting piece 24 is connected with the limiting disc 22 in a disengaging state, when the mounting arms 6 are completely adjusted, the sector gear 19 is meshed with the first gear 20, the limiting piece 24 is separated from the circular arc groove of the limiting disc 22 to be in sliding connection again, then the sector gear 19 is meshed with the second gear 21 to drive the connecting shaft 16 to rotate, the conducting gear 17 on the connecting shaft 16 is meshed with the conducting gear 17 on the transmission shaft 9 simultaneously to drive the transmission shaft 9 to rotate, when the sector gear 19 is meshed with the second gear 21, the limiting piece 24 is separated from the connecting disc 23 in a transmission way, the transmission shaft 9 drives the transmission gear 10 to rotate, then the connecting gear 12 is contacted with the driven gear 15 and then the mounting frame 11 is stopped in rotation, when the transmission gear 10 is contacted with the connecting gear 12 and then the connecting gear 12 is driven to rotate, then the connecting gear 12 is matched with the transmission gear 10 to be meshed with the driven gear 15, then the driven gear 15 drives the threaded rod 14 to rotate, then the threaded rod 14 at the grabbing end rotates to enable the distance between the two groups of mounting arms 6 to be reduced and the goods are grabbed through the two groups of clamping plates 7, simultaneously, the rotation of the two groups of threaded rod 14 at the placing end enables the distance between the two groups of mounting arms 6 to be increased, the two groups of clamping plates 7 are contacted with the goods to be separated, and when the sector gear 19 is meshed with the second gear 21 and separated, the limiting piece 24 is in sliding connection with the limiting groove of the connecting disc 23 again, then the sector gear 19 is meshed with the first gear 20 again, so that the operation of the plurality of groups of mounting arms 6 on the mounting box 4 is adjusted.
The foregoing is merely a preferred embodiment of the present invention, and it should be noted that it will be apparent to those skilled in the art that modifications and variations can be made without departing from the technical principles of the present invention, and these modifications and variations should also be regarded as the scope of the invention.

Claims (3)

1. The utility model provides a goods packing and packaging device of high leakproofness, its characterized in that, including installation base (1), two sets of support frames (2) are installed to installation base (1) middle part symmetry, support shaft (3) are installed in rotation of support frame (2) shaft hole department, two sets of coaxial arrangement has install bin (4) on support shaft (3), the equidistance is provided with multiunit mounting groove on install bin (4), installation groove department cooperation is installed locating shaft (5), every group symmetrical slidable mounting has two sets of installation arms (6) on locating shaft (5) respectively, install grip block (7) through coupling mechanism rotation on installation arm (6), install balancing weight (8) on grip block (7);
each group of support frames (2) are symmetrically and rotatably provided with two groups of transmission shafts (9), each transmission shaft (9) is provided with a transmission gear (10) in a matched mode, each transmission shaft (9) is provided with a mounting frame (11) in a rotated mode, each mounting frame (11) is provided with a connecting gear (12), each transmission shaft (9) is provided with a coil spring (13), the other end of each coil spring (13) is connected with the inner cavity wall of each mounting frame (11) in a matched mode, a threaded rod (14) is rotatably arranged at a through hole of each mounting box (4), each threaded rod (14) is connected with a threaded through hole of each mounting arm (6) in a matched mode, each threaded rod (14) is coaxially provided with a driven gear (15), and each transmission gear (10) and each connecting gear (12) are in meshed transmission connection with each driven gear (15);
two groups of connecting shafts (16) are symmetrically and rotatably arranged on each group of supporting frames (2), conductive gears (17) are coaxially arranged on the connecting shafts (16) and the transmission shafts (9) respectively, the two groups of conductive gears (17) on the transmission shafts (9) and the connecting shafts (16) on the same side are in meshed transmission connection, and the conductive gears (17) on the two groups of connecting shafts (16) are in meshed transmission connection;
a power shaft (18) is rotatably arranged on the support frame (2), a sector gear (19) is coaxially arranged on the power shaft (18), a group of first gears (20) are coaxially arranged on the support shafts (3), a group of connecting shafts (16) positioned on one side of the support frame (2) are coaxially provided with second gears (21), and the sector gears (19) are respectively meshed with the first gears (20) and the second gears (21) for transmission;
one side is coaxially provided with a limiting disc (22) on the supporting shaft (3), the limiting discs (22) are equidistantly provided with circular arc grooves, the circular arc grooves of the limiting discs (22) correspond to the mounting grooves of the mounting boxes (4) one by one, the connecting shaft (16) is coaxially provided with a connecting disc (23), the connecting disc (23) is provided with a limiting groove, the power shaft (18) is coaxially provided with a limiting piece (24), the limiting piece (24) is provided with two groups of grooves, and the limiting piece (24) is respectively in matched sliding connection with the circular arc grooves of the limiting discs (22) and the limiting grooves of the connecting disc (23);
the two groups of support frames (2) are respectively rotatably provided with a conductive shaft (25), the conductive shafts (25) and the power shafts (18) are respectively coaxially provided with chain wheels (26), the two groups of chain wheels (26) are engaged and provided with chains (27), the mounting base (1) is provided with a double-shaft motor (28), and output ends on two sides of the double-shaft motor (28) are respectively connected with the two groups of conductive shafts (25) in a coaxial matching way.
2. The high-tightness packing and packaging device for goods according to claim 1, wherein the connecting mechanism comprises a piston cylinder (29), the piston cylinder (29) is rotatably installed at an inner hole of the installation arm (6), a connecting column (30) is slidably installed in a working cavity of the piston cylinder (29), the clamping plate (7) is installed on the connecting column (30) in a matched mode, a spring (31) is installed on the connecting column (30), and the other end of the spring (31) is connected with the wall of the working cavity of the piston cylinder (29) in a matched mode.
3. A packing and packaging device for goods with high tightness according to claim 1, characterized in that the supporting frame (2) is provided with a protection box (32), and the chain (27) is positioned in the cavity of the protection box (32).
CN202311843480.3A 2023-12-29 2023-12-29 Goods packing and packaging device with high tightness Active CN117485657B (en)

Priority Applications (1)

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CN202311843480.3A CN117485657B (en) 2023-12-29 2023-12-29 Goods packing and packaging device with high tightness

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Application Number Priority Date Filing Date Title
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CN117485657B true CN117485657B (en) 2024-03-15

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