A garment packaging machine for garment production

By introducing a movable plate structure with a two-way worm gear and guide rod and a rubber anti-slip pad design into the garment packaging machine, the problems of inaccurate positioning and unstable transfer of packaging bags are solved, thereby improving packaging quality and efficiency and adapting to high-volume production.

CN224546584UActive Publication Date: 2026-07-24TONGSHAN COUNTY HONGSHENG GARMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TONGSHAN COUNTY HONGSHENG GARMENT CO LTD
Filing Date
2025-09-19
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The lack of an effective bag positioning mechanism in existing garment packaging machines leads to incomplete venting, causing bags to easily deviate from their designated positions, which affects packaging quality and efficiency. Furthermore, the transfer methods are cumbersome and difficult to adapt to the demands of high-volume production.

Method used

The movable plate structure, which combines a two-way worm gear and a guide rod, along with rubber anti-slip pads and anti-slip textures, enables precise centering of the packaging bag. The design of the conveyor belt being flush with the placement plate ensures that the packaging bag is transported smoothly after degassing, reducing manual intervention.

Benefits of technology

It achieves precise positioning and stable transportation of packaging bags, reduces packaging quality defects, improves packaging efficiency, and meets the high-efficiency production needs of small and medium-sized factories and e-commerce workshops.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a clothing packaging machine for clothing production, include: the placing plate, the placing plate one side is equipped with the packaging mechanism for completing clothing packaging, the placing plate other side is equipped with the conveying mechanism for the transfer packageed clothing, the placing plate inside two ends are equipped with biaxial worm and guide rod respectively, biaxial worm with the guide rod common sliding connection has two groups of movable plate that can be in the middle adjustment, the utility model discloses through biaxial worm and guide rod cooperation drive two groups of movable plate synchronous reverse movement, combine movable block inside rubber antiskid pad and the design of antiskid line, can realize accurate center positioning to the packaging bag that falls to the placing plate from the packaging mechanism, effectively solve the problem that the packaging bag is off center in the exhaust, the transport process because of the lack of positioning mechanism of traditional packaging machine, lay the foundation for the uniformity of subsequent exhaust operation and the stability of transport, reduce the packaging quality defect caused by off center.
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Description

Technical Field

[0001] This utility model relates to the field of garment production technology, specifically a garment packaging machine for garment production. Background Technology

[0002] Garment processing is the process of turning raw materials such as fabrics into finished garments. First, the purchased fabrics are inspected and pre-shrinked. Then, each piece is cut out according to the style. Next, the pieces are spliced ​​and sewn together using an industrial sewing machine to complete the assembly of small parts and the combination of large parts. Finally, after ironing, shaping, and quality inspection, the garments are packaged and stored for sale.

[0003] A search revealed Chinese patent publication number CN222523021U, which discloses a garment packaging machine for garment production. However, this machine has two significant shortcomings in practical application: First, it lacks a centering positioning mechanism for the packaging bags. This causes the bags to easily shift due to a lack of effective positioning during the venting process, preventing the venting components from accurately targeting the designated venting area. This results in incomplete venting and excessive residual air inside the bags, affecting not only the neatness of the packaged garments and storage space utilization but also potentially causing problems during transport due to the air inside the bags. During the transport process, the packaging bags are damaged or the clothing is deformed by pressure, which ultimately reduces the packaging quality. Secondly, the packaging machine uses a rotating and tilting mechanism to transfer the packaging bags from the current station to the next station. This type of rotating and tilting transfer method requires the mechanism to complete a complete cycle of rotation, tilting, and reset to achieve a single transfer. Compared with a continuous conveying structure, its transfer process is cumbersome and the single transfer takes a long time. It is difficult to adapt to the high-efficiency packaging needs of high-volume clothing production scenarios, which significantly limits the overall production efficiency of the packaging machine and cannot meet the actual demand for fast packaging from small and medium-sized factories and e-commerce workshops. Utility Model Content

[0004] The purpose of this utility model is to provide a garment packaging machine for garment production in order to solve the problems mentioned above.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a garment packaging machine for garment production, comprising: a placement plate, a packaging mechanism for completing garment sealing on one side of the placement plate, and a conveying mechanism for transferring the packaged garments on the other side of the placement plate; a bidirectional worm gear and a guide rod are respectively installed at both ends inside the placement plate; the bidirectional worm gear and the guide rod are slidably connected to two sets of adjustable movable plates; a drive motor providing driving force is installed on the side of the placement plate at the connection of the bidirectional worm gear; movable slots are opened at both ends above the movable plates; springs are installed inside the movable slots; a movable block that can be elastically lifted and lowered is fixed above the springs; a guide slot is opened inside the movable slots; a guide block is fixed outside the movable block to ensure stable movement of the movable block; and multiple sets of clearance slots adapted to the movable blocks are opened above the placement plate.

[0006] As a further embodiment of this utility model: both sides of the bottom of the placement plate are fixedly connected to the placement plate support frame for supporting the garment, and two sets of conveyor belt support frames are symmetrically fixed to the middle section of the bottom of the placement plate. The conveyor belt support frame is provided with a conveyor belt for conveying the garment, and the conveyor belt is located in the middle of the placement plate to realize the smooth transfer of the garment on the placement plate. The conveyor belt is flush with the surface of the placement plate to avoid jamming during garment conveying, and the outer side of the conveyor belt is provided with an anti-slip layer to prevent the garment from slipping.

[0007] As a further embodiment of this utility model: support rods are fixedly connected to the four ends of the outer side of the placement plate, a top plate is fixedly connected above the support rods, and a pressure plate that can be pressed down is connected below the top plate through a hydraulic rod to realize the compression and air release of the garment. A buffer layer is provided below the pressure plate to avoid damaging the garment.

[0008] As a further improvement of this utility model: rubber anti-slip pads are fixedly connected to the inner side of each movable block, and the surface of the rubber anti-slip pads is provided with anti-slip texture to enhance the clamping and positioning effect on the packaging bag. In addition, multiple sets of guide grooves and guide blocks are provided, which are matched to ensure that the movable block does not deviate when it is raised or lowered.

[0009] As a further improvement of this utility model: the threads at both ends of the bidirectional worm gear turn in opposite directions, and the sides of the two sets of movable plates are respectively provided with threaded holes adapted to the bidirectional worm gear and sliding holes adapted to the guide rod. The rotation of the bidirectional worm gear can drive the two sets of movable plates to move synchronously in opposite directions to achieve centering adjustment. The ends of the bidirectional worm gear are fixedly connected to the output shaft of the drive motor through a coupling to ensure stable power transmission.

[0010] As a further improvement of this utility model: the area of ​​the pressure plate is adapted to the upper surface of the placement plate to ensure full coverage of the garment to be pressed, and the buffer layer completely covers the lower surface of the pressure plate to uniformly buffer the pressure.

[0011] As a further embodiment of this utility model: the placement plate support frame is symmetrically distributed on both sides of the bottom of the placement plate to ensure support balance, the conveyor belt support frame is located between the two sets of placement plate support frames, the conveying direction of the conveyor belt is consistent with the length direction of the placement plate to connect the packaging process, the anti-slip layer completely covers the outer surface of the conveyor belt, and the anti-slip layer is fixedly connected to the outer surface of the conveyor belt to improve the conveying stability.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] In this invention, a two-way worm gear and guide rod work together to drive two sets of movable plates to move synchronously in opposite directions. Combined with the design of the rubber anti-slip pad and anti-slip texture on the inner side of the movable block, it can accurately center the packaging bag that falls from the packaging mechanism to the placement plate. This effectively solves the problem of packaging bags running off-center during exhaust and transfer caused by the lack of a positioning mechanism in traditional packaging machines. It lays the foundation for the uniformity of subsequent exhaust operations and the stability of transfer, and reduces packaging quality defects caused by off-center movement.

[0014] The conveyor belt in the middle of the placement plate is flush with the surface of the placement plate and has an anti-slip layer on the outside. It can not only smoothly receive the packaging bags falling from the packaging mechanism, but also quickly move the packaging bags to the conveyor mechanism after the air is degassed. This avoids the problems of clothing jamming and slipping in traditional transfer methods. Moreover, the connection design between the conveyor belt and the conveyor mechanism allows the packaging bags to fall directly to the conveyor mechanism without the need for manual transfer. This reduces manual intervention, improves the overall packaging efficiency, and is suitable for the mass production needs of small and medium-sized factories and e-commerce workshops. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of a garment packaging machine for garment production according to the present invention;

[0016] Figure 2 This is a schematic diagram of the internal structure of the placement plate in a garment packaging machine for garment production according to the present invention;

[0017] Figure 3 This is a schematic diagram of the structure at point A in the garment packaging machine for garment production described in this utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the placement plate in a garment packaging machine for garment production, as described in this utility model.

[0019] In the diagram: 1. Placement plate; 2. Packaging mechanism; 3. Conveying mechanism; 4. Bidirectional worm gear; 5. Guide rod; 6. Movable plate; 7. Movable groove; 8. Spring; 9. Movable block; 10. Guide groove; 11. Guide block; 12. Clearance groove; 13. Placement plate support frame; 14. Conveyor belt support frame; 15. Conveyor belt; 16. Support rod; 17. Top plate; 18. Pressure plate; 19. Buffer layer. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] In this description of the utility model, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," indicating orientation or positional relationships, are based on the accompanying drawings and are only for ease of description and simplification. They do not indicate or imply that the device / component must have a specific orientation or structural operation, and therefore do not constitute a limitation. In addition, the terms "first," "second," and "third" are only descriptive and do not imply relative importance. It should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "setting" should be interpreted broadly. For example, they can be fixedly connected, detachably connected, or integrally connected; they can be mechanically connected or electrically connected; they can be directly connected or indirectly connected through an intermediate medium; they can also refer to the internal connection of two components. The specific meaning can be understood by those skilled in the art in combination with the actual situation. The following describes the embodiments of the utility model in conjunction with its overall structure.

[0022] Reference Figures 1 to 4In this embodiment of the utility model, a garment packaging machine for garment production includes: a placement plate 1, a packaging mechanism 2 for completing garment packaging on one side of the placement plate 1, and a conveying mechanism 3 for transferring the packaged garments on the other side of the placement plate 1. During actual operation, the packaged bags fall directly from the packaging mechanism 2 onto the upper surface of the placement plate 1, preparing for subsequent positioning and venting operations. A bidirectional worm gear 4 and a guide rod 5 are respectively installed at both ends inside the placement plate 1. The bidirectional worm gear 4 and the guide rod 5 are slidably connected to two sets of adjustable movable plates 6. A drive motor providing driving force is installed on the side of the placement plate 1 at the connection point of the bidirectional worm gear 4. When the packaged bag falls onto the placement plate 1, the drive motor starts and drives the bidirectional worm gear 4 to rotate through a coupling. 4. The threads at both ends rotate in opposite directions, and the two sets of movable plates 6 are respectively adapted to the bidirectional worm gear 4 through threaded holes and to the guide rod 5 through sliding holes. The rotation of the bidirectional worm gear 4 will drive the two sets of movable plates 6 to move synchronously in opposite directions along the guide rod 5 to achieve centering adjustment. Movable grooves 7 are opened at both ends of the upper part of the movable plate 6. Springs 8 are installed inside the movable grooves 7. Movable blocks 9 that can be elastically raised and lowered are fixed above the springs 8. Guide grooves 10 are opened on the inner side of the movable grooves 7. Guide blocks 11 are fixed on the outer side of the movable blocks 9 to ensure stable movement of the movable blocks 9. Multiple sets of clearance grooves 12 adapted to the movable blocks 9 are opened on the upper part of the placement plate 1. When the movable plate 6 moves, the movable blocks 9 will move synchronously with it until the inner side contacts the packaging bag, completing the centering positioning of the packaging bag and avoiding the packaging bag from deviating in subsequent operations.

[0023] The bottom of the placement plate 1 is fixedly connected to two sides of the placement plate support frame 13, which provides stable support for the placement plate 1; two sets of conveyor belt support frames 14 are symmetrically fixed to the middle section of the bottom of the placement plate 1. The conveyor belt support frame 14 is equipped with a conveyor belt 15 for conveying clothing. The conveyor belt 15 is located in the middle of the placement plate 1 to realize the smooth transfer of clothing on the placement plate 1. The conveyor belt 15 is flush with the surface of the placement plate 1 to avoid jamming during clothing transportation. The outer side of the conveyor belt 15 is provided with an anti-slip layer to prevent clothing from slipping. After the packaging bag has finished venting, the conveyor belt 15 will run along the length of the placement plate 1. With the help of the anti-slip effect of the anti-slip layer, it will smoothly drive the packaging bag to move towards the conveying mechanism 3.

[0024] Support rods 16 are fixed to all four ends of the outer side of the placement plate 1. A top plate 17 is fixed above the support rods 16. A pressure plate 18 that can be pressed down is connected to the bottom of the top plate 17 through a hydraulic rod to realize the compression and air release of the garment. A buffer layer 19 is provided below the pressure plate 18 to avoid damaging the garment. When the packaging bag is centered, the hydraulic rod extends and drives the pressure plate 18 to press down. At this time, the movable block 9 is subjected to the pressure of the pressure plate 18 and retracts into the movable groove 7 along the guide groove 10 through the guide block 11 to compress the spring 8, thus avoiding being damaged by the pressure plate 18. At the same time, the pressure plate 18 contacts the packaging bag through the buffer layer 19 to uniformly compress and discharge the residual air in the bag. The buffer layer 19 can prevent damage to the packaging bag and the garment inside.

[0025] Each of the movable blocks 9 has a rubber anti-slip pad fixed to its inner side. The surface of the rubber anti-slip pad has anti-slip texture to enhance the clamping and positioning effect on the packaging bag. Multiple sets of guide grooves 10 and guide blocks 11 are provided to ensure that the movable block 9 does not deviate when it is raised or lowered. When the movable block 9 clamps the packaging bag, the anti-slip texture of the rubber anti-slip pad can improve the clamping stability. Multiple sets of guide grooves 10 and guide blocks 11 ensure that the movable block 9 does not deviate during the raising and lowering process, further improving the operational stability.

[0026] The two ends of the bidirectional worm gear 4 have opposite thread directions. The two sets of movable plates 6 are respectively provided with threaded holes adapted to the bidirectional worm gear 4 and sliding holes adapted to the guide rod 5. The rotation of the bidirectional worm gear 4 can drive the two sets of movable plates 6 to move synchronously in opposite directions to achieve centering adjustment. The end of the bidirectional worm gear 4 is fixedly connected to the output shaft of the drive motor through a coupling to ensure stable power transmission. The coupling allows the power of the drive motor to be stably transmitted to the bidirectional worm gear 4, ensuring that the bidirectional worm gear 4 rotates smoothly, thereby allowing the two sets of movable plates 6 to move synchronously in opposite directions and accurately complete the centering adjustment.

[0027] The area of ​​the pressure plate 18 is adapted to the upper surface of the placement plate 1 to ensure full coverage of the garment to be pressed. The buffer layer 19 completely covers the lower surface of the pressure plate 18 to evenly buffer the pressure. This design allows the pressure plate 18 to fully cover the packaging bag when it presses down, ensuring even air release. The full coverage of the buffer layer 19 allows the pressure to be evenly distributed, avoiding excessive local pressure that could damage the garment or packaging bag.

[0028] The placement plate support frame 13 is symmetrically distributed on both sides of the bottom of the placement plate 1 to ensure support balance. The conveyor belt support frame 14 is located between the two sets of placement plate support frames 13. The conveying direction of the conveyor belt 15 is consistent with the length direction of the placement plate 1 to connect the packaging process. The anti-slip layer completely covers the outer surface of the conveyor belt 15 and is fixedly connected to the outer surface of the conveyor belt 15 to improve the conveying stability. When the conveyor belt 15 moves the packaging bag to the connection between the placement plate 1 and the conveying mechanism 3, the packaging bag will fall directly onto the conveying mechanism 3, and the conveying mechanism 3 will transport the finished product to the subsequent steps, thus completing the entire garment packaging process.

[0029] Furthermore, any content not described in detail in this specification is existing technology known to those skilled in the art.

[0030] The working principle of this utility model is as follows: After the packaging mechanism 2 completes the garment packaging, the packaged bag is directly dropped onto the upper surface of the placement plate 1, and the dropping position is located above the conveyor belt 15 in the middle of the placement plate 1. At this time, the drive motor on the side of the placement plate 1 starts, and the drive motor drives the internal bidirectional worm gear 4 to rotate through the coupling. Because the threads at both ends of the bidirectional worm gear 4 rotate in opposite directions, and the two sets of movable plates 6 are respectively adapted to the bidirectional worm gear 4 through threaded holes and slidably adapted to the guide rod 5 through sliding holes, the rotation of the bidirectional worm gear 4 drives the two sets of movable plates 6 to move synchronously in opposite directions along the guide rod 5. During the movement of the movable plate 6, the movable block 9 in the movable groove 7 above it... As the movable plate 6 moves synchronously, the rubber anti-slip pads on the inner side of the movable block 9 contact the sides of the packaging bag. The anti-slip texture on the pads clamps the packaging bag, completing its centered positioning. Next, the hydraulic rods under the top plate 17 above the four-end support rods 16 on the outer side of the placement plate 1 extend, causing the pressure plate 18 below to move vertically downwards. As the pressure plate 18 presses down, the movable block 9, under the pressure of the pressure plate 18, compresses the spring 8 in the movable groove 7 and retracts into the movable groove 7 along the guide groove 10 via the guide block 11, preventing the movable block 9 from being damaged by the pressure plate 18. Simultaneously, the buffer layer 19 below the pressure plate 18 contacts the upper surface of the packaging bag. The area is adapted to the upper surface of the placement plate 1, and the buffer layer 19 completely covers the lower surface of the pressure plate 18. The pressure plate 18 continuously presses down to uniformly compress and expel the residual air inside the packaging bag, while the buffer layer 19 prevents damage to the packaging bag and the inner clothing. After the air is expelled, the hydraulic rod retracts, causing the pressure plate 18 to reset. Under the elastic force of the spring 8, the movable block 9 rises back to its initial position along the guide groove 10 through the guide block 11 and disengages from the packaging bag. Subsequently, the conveyor belt 15 in the conveyor belt support frame 14 at the bottom of the placement plate 1 starts. The conveyor belt 15 runs along the length of the placement plate 1. Because the conveyor belt 15 is flush with the surface of the placement plate 1 and has an anti-slip layer on the outside, the conveyor belt 15... With the help of the anti-slip layer, the conveyor belt 15 smoothly moves the degassed packaging bag to the conveyor mechanism 3 on the other side of the placement plate 1. When the packaging bag runs with the conveyor belt 15 to the junction of the placement plate 1 and the conveyor mechanism 3, it falls directly from the conveyor belt 15 onto the conveyor mechanism 3. Finally, the conveyor mechanism 3 transports the degassed finished packaging bag to the subsequent storage, sorting or transportation steps, thus completing the entire garment packaging process. During this process, the placement plate support frame 13 on both sides of the bottom of the placement plate 1 provides stable support for the placement plate 1, while the conveyor belt support frame 14 ensures the stable operation of the conveyor belt 15. All components work together to achieve a smooth process.

[0031] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A garment packaging machine for garment production, characterized in that, include: A placement plate (1) is provided with a packaging mechanism (2) on one side and a conveying mechanism (3) on the other side. A bidirectional worm gear (4) and a guide rod (5) are respectively installed at both ends inside the placement plate (1). The bidirectional worm gear (4) and the guide rod (5) are slidably connected to two sets of movable plates (6). A drive motor is installed on the side of the placement plate (1) at the connection of the bidirectional worm gear (4). Movable grooves (7) are opened at both ends above the movable plates (6). A spring (8) is installed inside the movable groove (7). A movable block (9) is fixed above the spring (8). A guide groove (10) is opened inside the movable groove (7). A guide block (11) is fixed outside the movable block (9). Multiple sets of clearance grooves (12) adapted to the movable block (9) are opened above the placement plate (1).

2. The garment packaging machine for garment production according to claim 1, characterized in that, The placement plate (1) is fixedly connected to two sides of the bottom of the placement plate (1), and two sets of conveyor belt support frames (14) are symmetrically fixed to the middle section of the bottom of the placement plate (1). The conveyor belt support frame (14) is provided with a conveyor belt (15) inside, and the conveyor belt (15) is located in the middle of the placement plate (1). The conveyor belt (15) is flush with the surface of the placement plate (1), and the outer side of the conveyor belt (15) is provided with an anti-slip layer.

3. A garment packaging machine for garment production according to claim 1, characterized in that, The placement plate (1) is fixedly connected to four support rods (16) at all four ends. A top plate (17) is fixedly connected above the support rods (16). A pressure plate (18) is connected below the top plate (17) via a hydraulic rod. A buffer layer (19) is provided below the pressure plate (18).

4. A garment packaging machine for garment production according to claim 1, characterized in that, Each of the movable blocks (9) has a rubber anti-slip pad fixed to its inner side. The surface of the rubber anti-slip pad is provided with anti-slip texture. The guide grooves (10) and guide blocks (11) are provided in multiple sets, which are compatible with each other.

5. A garment packaging machine for garment production according to claim 1, characterized in that, The two ends of the bidirectional worm (4) have opposite thread directions. The two sets of movable plates (6) are respectively provided with threaded holes adapted to the bidirectional worm (4) and sliding holes adapted to the guide rod (5). The end of the bidirectional worm (4) is fixedly connected to the output shaft of the drive motor through a coupling.

6. A garment packaging machine for garment production according to claim 3, characterized in that, The area of ​​the pressure plate (18) is adapted to the upper surface of the placement plate (1), and the buffer layer (19) completely covers the lower surface of the pressure plate (18).

7. A garment packaging machine for garment production according to claim 2, characterized in that, The placement plate support frame (13) is symmetrically distributed on both sides of the bottom of the placement plate (1). The conveyor belt support frame (14) is located between the two sets of placement plate support frames (13). The conveying direction of the conveyor belt (15) is consistent with the length direction of the placement plate (1). The anti-slip layer completely covers the outer surface of the conveyor belt (15) and is fixedly connected to the outer surface of the conveyor belt (15).