Automatic vacuum packaging device for western-style clothes

By designing an automatic vacuum packaging device, the problems of low bagging efficiency and residual air inside the packaging bag in suit packaging were solved by using a squeezing cylinder and sealing components, thus achieving flat sealing and efficient packaging of suits.

CN224061274UActive Publication Date: 2026-03-31YUNNAN HAOXIANG CLOTHING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The current packaging process for suits suffers from problems such as low efficiency of manual bagging, residual air inside the packaging bags, fluffiness, and suits being prone to slipping and wrinkling due to compression.

Method used

An automatic vacuum packaging device was designed, comprising a fixed platform, an L-shaped support, a squeezing cylinder, and a bagging assembly. The squeezing cylinder expels air from the packaging bag and the sealing assembly seals the bag opening. Combined with an auxiliary bagging assembly and a feeding mechanism, the bagging efficiency and packaging quality are improved.

Benefits of technology

It achieves fast suit bagging, good bag sealing, prevention of wrinkles and slippage, saves stacking space, and improves production efficiency and packaging quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224061274U_ABST
Patent Text Reader

Abstract

The utility model discloses an automatic vacuum packing device for western-style clothes, which comprises a frame and a vacuum packing mechanism, the vacuum packing mechanism comprises a fixed platform and an L-shaped support, the top of the L-shaped support is provided with an extrusion cylinder, the movable end of the extrusion cylinder is connected with an extrusion plate, and one end of the extrusion plate is provided with a sealing component. A supporting frame is arranged on the outer side, close to one side of the sealing assembly, of the rack, a bagging assembly is installed on the supporting frame, the bagging assembly comprises a bagging groove and a bagging groove, one end of the bagging groove is open, the open end of the bagging groove and the open end of the bagging groove both face one side of the sealing assembly, and the bagging groove is located above the bagging groove. According to the western-style clothes bagging device, bagging is easy, the western-style clothes bagging speed can be increased, the production efficiency is improved, the western-style clothes packaged in a packaging bag are smooth, the phenomena of squeezing and wrinkling of the western-style clothes in the stacking and transporting process are avoided, and the western-style clothes can be always kept in the smooth state for a long time.
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Description

Technical Field

[0001] This utility model relates to the field of garment production and processing technology, specifically to an automatic vacuum packaging device for suits. Background Technology

[0002] Currently, suits are typically made from high-quality wool or cotton fabrics. After production, to prevent dust accumulation or wrinkles during storage or transportation, suits generally need to be packaged in bags. In existing technology, after the suit jackets are produced, they are usually manually placed in bags and then manually sealed. This manual bagging method is inefficient and physically demanding. More importantly, after packaging the suit jackets, there is no air venting process inside the bags, leaving a large amount of air inside. This results in two problems: firstly, the packaged bags are loose and difficult to stack; secondly, the suits can easily slide inside the bags, leading to wrinkles during stacking or transportation. Therefore, developing an automated vacuum packaging device for suits with a reasonable structural design, high production efficiency, and effective improvement in packaging quality is objectively necessary. Summary of the Invention

[0003] The purpose of this utility model is to provide an automatic vacuum packaging device for suits with reasonable structural design, high production efficiency, and effective improvement of packaging quality.

[0004] The purpose of this utility model is achieved as follows: it includes a frame and a vacuum packaging mechanism mounted on the frame. The vacuum packaging mechanism includes a fixed platform and an L-shaped bracket. The fixed platform is mounted on the top of the frame, and the L-shaped bracket is mounted on one side of the fixed platform. A compression cylinder is mounted on the top of the L-shaped bracket. The movable end of the compression cylinder passes through the L-shaped bracket and is connected to a compression plate. The compression plate is located above the fixed platform. A sealing component is provided at one end of the compression plate. A support frame is provided on the outer side of the frame near the sealing component. A bagging component is mounted on the support frame. The bagging component includes a bag filling groove and a bagging groove with one open end. The open ends of both the bagging groove and the bag filling groove face one side of the sealing component. The bagging groove is located above the bag filling groove. The distance between the open end of the bag filling groove and the sealing component is less than the distance between the open end of the bagging groove and the sealing component.

[0005] The beneficial effects of this device are as follows: First, this device has an auxiliary bagging assembly on one side of the vacuum packaging mechanism. Before use, the packaging bag is placed in the bagging slot, then the suit jacket is placed in the bagging slot. The opening of the packaging bag in the bagging slot is then manually pulled, and the packaging bag is manually pushed through the opening of the bagging slot. Although the bagging slot in this device requires manual assistance, placing the suit jacket on the slot and then pushing the packaging bag in reverse makes bagging easier, speeding up the process and improving production efficiency. Second, it optimizes the structure of the vacuum packaging machine mechanism. When packaging the bagged suit jacket, simply pull the bagged suit jacket and packaging bag together to a fixed platform, and then… The packaging bag is squeezed by a compression cylinder that moves a compression plate downwards. This squeezes out the air inside the bag. After the air is expelled, a sealing mechanism further compresses the bag. Once the suit is sealed inside the bag, it has good airtightness and will not leak. The suit is relatively flat and will not slide inside the bag. After being compressed by the compression plate, the suit will not be wrinkled during stacking and transportation, and will always maintain a flat state for a long time. At the same time, it can effectively save stacking space during transportation. It is an ideal packaging structure with the advantages of reasonable structural design, high production efficiency, and good packaging quality, and is easy to promote and use. Attached Figure Description

[0006] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0007] Figure 2 This is a side view of the bagging assembly installed on the support frame 6 in this utility model;

[0008] Figure 3 This is a top view of the bagging assembly of this utility model installed on the support frame 6;

[0009] Figure 4 This is a side sectional view of the vacuum packaging mechanism in this utility model;

[0010] Figure 5 for Figure 1 A schematic diagram of the method in Part A of the middle section;

[0011] In the diagram: 1-Frame, 2-Fixed platform, 3-L-shaped bracket, 4-Extrusion cylinder, 5-Extrusion plate, 6-Support frame, 7-Bagging groove, 8-Bag groove, 9-Sleeve, 10-Sealing cylinder, 11-Sealing pressure plate, 12-Heating box, 13-Heater, 14-Heating conduit, 15-Sealing groove, 16-First cylinder, 17-Second cylinder, 18-Top feeding plate, 19-Bottom feeding plate, 20-First slider, 21-Top plate, 22-First electric push rod, 23-Fixed seat, 24-Moving plate, 25-Second electric push rod, 26-Third cylinder, 27-Transfer plate, 28-Slide groove, 29-Moving rod, 30-Slide seat, 31-Connecting rod, 32-Third electric push rod, 33-Rubber layer. Detailed Implementation

[0012] The present invention will be further described below with reference to the accompanying drawings, but this description is not intended to limit the present invention in any way. Any changes or improvements made based on the teachings of the present invention shall fall within the protection scope of the present invention.

[0013] like Figures 1-5 As shown, this utility model includes a frame 1 and a vacuum packaging mechanism mounted on the frame 1. The vacuum packaging mechanism includes a fixed platform 2 and an L-shaped bracket 3. The fixed platform 2 is mounted on the top of the frame 1, and the L-shaped bracket 3 is mounted on one side of the fixed platform 2. A compression cylinder 4 is mounted on the top of the L-shaped bracket 3. The compression cylinder 4 is a structure used in the prior art, and finished products are directly purchased according to the required stroke and pressure. The movable end of the compression cylinder 4 passes through the L-shaped bracket 3 and is connected to a compression plate 5. The compression plate 5 is located above the fixed platform 2. A sealing assembly is provided at one end. A support frame 6 is provided on the outer side of the frame 1 near the sealing assembly. A bagging assembly is installed on the support frame 6. The bagging assembly includes a bagging groove 8 and a bagging groove 7, both open at one end. The opening ends of the bagging groove 7 and the bagging groove 8 face the sealing assembly. The bagging groove 7 is located above the bagging groove 8. The distance between the opening end of the bagging groove 8 and the sealing assembly is less than the distance between the opening end of the bagging groove 7 and the sealing assembly. In order to smoothly feed the bagged suit onto the fixed platform 2, the bottom surface of the bagging groove 7 is flush with the upper surface of the fixed platform 2.

[0014] The process of using this device is as follows: First, place the packaging bag in the bagging trough 8, then place the suit jacket in the bagging slot 7. Next, manually hold the opening of the packaging bag in the bagging trough 8, and then manually slide the packaging bag through the open end of the bagging slot 7 into the bagging slot 7. Using the bagging slot 7 makes bagging easier and can speed up the bagging of suits, improving production efficiency. After the packaging bag is on the bagging slot 7, manually pull the suit and packaging bag together to the fixed platform 2. Then, activate the compression cylinder 4. The moving end of the compression cylinder 4 drives the compression plate 5 to move downward. When the compression plate 5 contacts the packaging bag, it squeezes the packaging bag, expelling the air inside. After the air inside the packaging bag is squeezed out, the packaging bag is sealed by the sealing mechanism. After sealing, the squeezing cylinder 4 drives the squeezing plate 5 to move upward, releasing the squeezing of the packaging bag. The packaged suit can then be taken out from the fixed platform 2. After the suit is squeezed and sealed inside the packaging bag, the packaging bag has good sealing performance and there will be no air leakage. The suit packaged in the packaging bag is relatively flat and will not slide inside the packaging bag. After being pressed and compacted by the squeezing plate 5, the suit will not be squeezed or wrinkled during stacking and transportation. It can always maintain a flat state for a long time. It can effectively save stacking space during stacking and transportation, making it a more ideal packaging structure.

[0015] Furthermore, to make it easier and faster to put the packaging bag into the bagging groove 7, a guide shaft is fixedly installed on the support frame 6 near the opening end of the bagging groove 7. A bushing 9 is rotatably installed on the guide shaft. The opening of the packaging bag is put into the bagging groove 7 through the bushing 9. When the packaging bag is pulled manually, the bushing 9 rotates by the manual pulling force, which can speed up the movement of the packaging bag and speed up the bagging time.

[0016] Furthermore, in order to facilitate the quick fitting of the bag opening onto the bag groove 7, the top surface of the bag groove 7 near the sealing component is provided with a sloping structure, and the height of the sloping surface gradually decreases towards the sealing component.

[0017] Furthermore, the sealing assembly includes a sealing cylinder 10 and a sealing pressure plate 11. The sealing cylinder 10 is a structure used in the prior art, and finished products are directly purchased according to the technical parameters such as the pressure and stroke used. The fixed end of the sealing cylinder 10 is installed on the side of the extrusion plate 5, and the movable end of the sealing cylinder 10 is equipped with a bottom-open heating box 12. A heater 13 is installed at the top inside the heating box 12, and multiple heating pipes 14 are installed at equal intervals on the bottom surface of the heater 13. The sealing pressure plate 11 is installed at the bottom of the heating box 12 and connected to the heating pipes 14. The heater 13 adopts the structure of an electric motor heater. The heating pipes 14 and the sealing pressure plate 11 can be made of copper, a material with good heat transfer properties. To facilitate heat transfer, the bottom surface of the fixed platform 2 is provided with a sealing groove 15 corresponding to the sealing pressure plate 11. After the extrusion plate 5 has squeezed the air in the packaging bag, the sealing cylinder 10 is opened. The sealing cylinder 10 drives the heating box 12 and the sealing pressure plate 11 to move down. When the sealing pressure plate 11 moves down and coincides with the sealing groove 15, the sealing pressure plate 11 will squeeze the bag opening. The heat on the sealing pressure plate 11 will melt the bag opening, thus sealing the bag opening. After the bag opening is sealed, the sealing cylinder 10 drives the sealing pressure plate 11 to return to its original position. In order to facilitate better sealing of the bag opening and improve sealing efficiency, preferably, the cross-sectional shape of the sealing groove 15 and the sealing pressure plate 11 is an arc-shaped structure.

[0018] To improve the automation of bagging and packaging and further increase production efficiency, a feeding mechanism that cooperates with the bagging groove 7 is installed on the support frame 6, and a receiving mechanism that cooperates with the feeding mechanism is provided on the fixed platform 2. The feeding mechanism includes a first cylinder 16, a second cylinder 17, a top feeding plate 18, and a bottom feeding plate 19. The first cylinder 16 and the second cylinder 17 are structures used in the prior art, and finished products are directly purchased according to the stroke and pressure required. The first cylinder 16 is symmetrically installed on both sides of the top of the support frame 6. A first slider 20 is installed on the movable end of the support frame 6. The top of the support frame 6 is slidably mounted on the first slider 20. A vertical plate is installed between the tops of the two sliders 20. A top plate 21 is installed between the tops of the two vertical plates. A first electric push rod 22 is installed on the bottom surface of the top plate 21. The top feeding plate 18 is located above the bagging groove 7 and is connected to the lower end of the first electric push rod 22. A second cylinder 17 is symmetrically installed on both sides of the support frame 6 below the bagging groove 7. Fixed seats 23 are symmetrically installed on both sides of the support frame 6. A movable plate 2 is installed on the movable end of the second cylinder 17. 4. The two sides of the movable plate 24 are slidably connected to the fixed base 23. A second electric push rod 25 is installed on the top surface of the movable plate 24. The bottom feeding plate 19 is installed on the top of the second electric push rod 25. The first electric push rod 22 and the second electric push rod 25 are structures used in the prior art. Finished products can be purchased directly according to the stroke used. When the packaging bag is put into the bag slot 7, the first cylinder 16 pushes the first slider 20, the top plate 21, the first electric push rod 22 and the top feeding plate 18 to move. When the top feeding plate 18 is above the packaging bag, the first electric push rod 16 pushes the first slider 20, the top plate 21, the first electric push rod 22 and the top feeding plate 18 to move. The push rod 22 moves the top feeding plate 18 down to contact the top surface of the packaging bag. At the same time, the second cylinder 17 pushes the movable plate 24, the second electric push rod 25 and the bottom feeding plate 19 to move. When the bottom feeding plate 19 is below the packaging bag, the second electric push rod 25 moves the bottom feeding plate 19 to contact the bottom surface of the packaging bag. Then the first electric push rod 22 and the second electric push rod 25 stop moving. The first cylinder 16 and the second cylinder 17 continue to move the top feeding plate 18 and the bottom feeding plate 19 synchronously, so that the packaging bag and the suit can be sent onto the fixed platform 2 together.Preferably, the receiving mechanism includes a third cylinder 26 and a transfer plate 27. The third cylinder 26 is a structure used in the prior art, and finished products can be directly purchased according to the required stroke and pressure. Two sliding grooves 28 are symmetrically machined through the fixed platform 2. A movable rod 29 is slidably installed in the sliding grooves 28. A slide block 30 is fixedly installed at the lower end of the movable rod 29. The slide block 30 is slidably installed in the frame 1. The third cylinder 26 is installed on the outside of the frame 1. The movable end of the third cylinder 26 extends into the frame 1 and is fixedly connected to the slide block 30. A connecting rod 31 is installed at the upper end of the movable rod. A third electric push rod 32 is installed on one side of the connecting rod 31. The transfer plate 27 is located above the fixed platform 2 and is fixedly connected to the lower end of the third electric push rod 32. The third electric push rod 32 is a structure used in the prior art. The structure allows for direct procurement of finished products based on the intended use. When the packaging bag, along with the suit, enters the fixed platform 2, the third cylinder 26 drives the slide 30, movable rod 29, connecting rod 31, third electric push rod 32, and transfer plate 27 to move along the slide 28. When the transfer plate 27 moves to a position above the packaging bag, the third electric push rod 32 drives the transfer plate 27 to move down and contact the packaging bag. The third electric push rod 32 stops moving, and the third cylinder 26 and transfer plate 27 drive the packaging bag to move in the opposite direction. When the bag moves to a position below the extrusion plate 5, the second electric push rod 32 drives the transfer plate 27 to return to its original position, the third cylinder 26 drives the transfer plate 27 to return to its original position, the first cylinder 16 drives the top feeding plate 18 to return to its original position, and the second cylinder 17 drives the bottom feeding plate 19 to return to its original position. The extrusion plate 5 then performs the extrusion and degassing operation on the packaging bag.

[0019] Furthermore, in order to prevent the extrusion plate 5 from tearing the packaging bag, a rubber layer 33 is provided on the bottom surface of the extrusion plate 5.

Claims

1. An automatic vacuum packaging device for a suit, comprising a frame (1) and a vacuum packaging mechanism mounted on the frame (1), characterized in that: The vacuum packaging mechanism comprises a fixed platform (2) and an L-shaped support (3), the fixed platform (2) is installed on the top of the rack (1), the L-shaped support (3) is installed on one side of the fixed platform (2), the top of the L-shaped support (3) is provided with an extrusion air cylinder (4), the movable end of the extrusion air cylinder (4) is connected with an extrusion plate (5) through the L-shaped support (3), the extrusion plate (5) is located above the fixed platform (2), one end of the extrusion plate (5) is provided with a sealing assembly, a supporting frame (6) is arranged on the outer side of the rack (1) near the sealing assembly side, a bagging assembly is installed on the supporting frame (6), the bagging assembly comprises a bagging groove (8) and a bagging groove (7) with one end being open, the opening ends of the bagging groove (7) and the bagging groove (8) are both directed to one side of the sealing assembly, the bagging groove (7) is located above the bagging groove (8), and the distance between the opening end of the bagging groove (8) and the sealing assembly is smaller than the distance between the opening end of the bagging groove (7) and the sealing assembly.

2. The automatic vacuum packaging device for a suit according to claim 1, characterized in that: A guide shaft is fixedly installed on the supporting frame (6) near the opening end of the bagging groove (7), and a shaft sleeve (9) is rotatably installed on the guide shaft.

3. The automatic vacuum packaging device for a suit according to claim 1, wherein: The top surface of the bagging groove (7) near the sealing assembly side is arranged in a slope structure, and the height of the slope gradually decreases towards the sealing assembly.

4. The automatic vacuum packaging device for a suit according to claim 1, wherein: The sealing assembly comprises a sealing air cylinder (10) and a sealing pressing plate (11), the fixed end of the sealing air cylinder (10) is installed on the side surface of the extrusion plate (5), the movable end of the sealing air cylinder (10) is provided with a heating box (12) with an open bottom, a heater (13) is installed at the top in the heating box (12), a plurality of heating pipes (14) are installed at the bottom of the heater (13) at equal intervals, the sealing pressing plate (11) is installed at the bottom of the heating box (12) and connected with the heating pipes (14), and a sealing groove (15) corresponding to the sealing pressing plate (11) is arranged on the bottom surface of the fixed platform (2). ​ 5. The automatic vacuum packaging device for suits according to claim 4, characterized in that: The cross-sectional shape of the sealing groove (15) and the sealing pressing plate (11) is a circular arc structure.

6. The automatic vacuum packaging apparatus for a suit according to claim 1, wherein: A feeding mechanism matched with the bagging groove (7) is installed on the supporting frame (6), and a receiving mechanism matched with the feeding mechanism is arranged on the fixed platform (2).

7. The automatic vacuum packaging apparatus for a suit according to claim 6, wherein: The feeding mechanism comprises a first air cylinder (16), a second air cylinder (17), a top feeding plate (18) and a bottom feeding plate (19), the first air cylinder (16) is symmetrically installed on the top of the support frame (6), the movable end of the first air cylinder (16) is provided with a first sliding block (20), the first sliding block (20) is slidingly installed on the top of the support frame (6), the top of the two sliding blocks (20) is provided with a vertical plate, the top of the two vertical plates is provided with a top plate (21), the bottom surface of the top plate (21) is provided with a first electric push rod (22), the top feeding plate (18) is located above the bagging groove (7) and is connected with the lower end of the first electric push rod (22); the second air cylinder (17) is symmetrically installed on the two sides of the support frame (6) below the bagging groove (7), the two sides of the support frame (6) are symmetrically provided with a fixed seat (23), the movable end of the second air cylinder (17) is provided with a movable plate (24), the two sides of the movable plate (24) are slidingly connected with the fixed seat (23), the top surface of the movable plate (24) is provided with a second electric push rod (25), and the bottom feeding plate (19) is installed on the top of the second electric push rod (25).

8. The automatic vacuum packaging apparatus for a suit according to claim 6, wherein: The receiving mechanism comprises a third air cylinder (26) and a material moving plate (27), two sliding grooves (28) are symmetrically formed on the fixed platform (2), a movable rod (29) is slidingly installed in the sliding groove (28), the lower end of the movable rod (29) is fixedly installed with a sliding seat (30), the sliding seat (30) is slidingly installed in the rack (1), the third air cylinder (26) is installed on the outer side of the rack (1), the movable end of the third air cylinder (26) extends into the rack (1) and is fixedly connected with the sliding seat (30), the upper end of the movable rod is provided with a connecting rod (31), one side of the connecting rod (31) is provided with a third electric push rod (32), and the material moving plate (27) is located above the fixed platform (2) and is fixedly connected with the lower end of the third electric push rod (32).

9. The automatic vacuum packaging apparatus for a suit according to claim 1, wherein: A rubber layer (33) is arranged on the bottom surface of the extrusion plate (5).