Hand bag production equipment

By introducing deformation plates, limiting plates, and blowing glue-applying mechanisms into the tote bag production equipment, the time-consuming and labor-intensive problems of paper laying and glue application in small and medium-sized workshops have been solved, achieving efficient mechanized production and reducing the difficulty of operation and the requirements for worker experience.

CN121716366AInactive Publication Date: 2026-03-24JINJIANG GREEN RAIN COLOR PRINTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-02
Publication Date
2026-03-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In small and medium-sized tote bag production workshops, the process of making tote bags by hand is time-consuming and labor-intensive, relies on human experience, and workers with insufficient experience find it difficult to efficiently complete the paper laying and gluing operations.

Method used

The tote bag production equipment includes a workbench, a flattening mechanism, and a gluing mechanism. It uses a deformation plate, a limiting plate, and a driving component to assist in flattening the paper, and improves efficiency and reduces the difficulty of operation through a blower mechanism and a gluing mechanism.

Benefits of technology

Mechanized paper laying and gluing processes improve processing efficiency, reduce operational difficulty, and make it easy for inexperienced workers to get started, thereby improving production efficiency and product quality.

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Abstract

The invention relates to the field of handbag processing and production technologies, and provides handbag production equipment which comprises a workbench, a tiling mechanism and a gluing mechanism. The tiling mechanism comprises a deformation plate, a limiting plate, a first driving part and a second driving part; the deformation plate comprises at least three movable strips, the adjacent movable strips are in directional rotating connection, and the directional rotating directions of the adjacent directional rotating connection are opposite. The first driving part is used for driving all the movable strips to relatively rotate to approach or rotate to lay flat; the two limiting plates are rotationally connected to the two sides of the deformation plate correspondingly. The second driving piece is used for driving the limiting plate to rotate upwards relative to the deformation plate; when the deformation plate is unfolded and the limiting plate rotates to be horizontal, the deformation plate and the limiting plate form a tiling plate, and the tiling plate closes the operation window; the gluing mechanism is arranged on the workbench and used for gluing paper. The device has the advantages that in small and medium-sized hand bag production workshops, the production and processing efficiency of the hand bags is improved, and inexperienced workers can master the hand bags more easily.
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Description

Technical Field

[0001] This application relates to the field of tote bag processing and production technology, and in particular to a tote bag production equipment. Background Technology

[0002] Currently, there are two ways to produce tote bags: one is to use fully automated production line equipment in large factories to process tote bags by machine, and the other is to produce them manually in small and medium-sized factories.

[0003] In small and medium-sized workshops, when making tote bags by hand, a stack of pre-cut, creased, and stacked papers is first taken out. Then, this stack of papers is laid flat so that the side of each paper is offset by a section. Glue is applied to this offset section.

[0004] During the process of laying out the paper, on the one hand, the stack of paper needs to be shaken to allow air to enter between adjacent sheets and separate them; on the other hand, the paper needs to be arranged during the shaking process to ensure that the width of the glued area is roughly the same. In small and medium-sized factories, all of the above operations need to be performed manually, which is time-consuming, labor-intensive, and relies heavily on the worker's experience. Therefore, a processing equipment is needed to assist in these operations, improving processing efficiency and making it easier for inexperienced workers to learn. Summary of the Invention

[0005] In order to improve the production efficiency of tote bags in small and medium-sized tote bag production workshops and make it easier for inexperienced workers to get started, this application provides a tote bag production equipment.

[0006] The tote bag production equipment provided in this application adopts the following technical solution: A tote bag production device includes a workbench, a laying mechanism, and a gluing mechanism. The workbench includes a work panel with an operating window extending through it. The laying mechanism includes a deformable plate, a limiting plate, a first driving member, and a second driving member. The deformable plate includes at least three movable strips, adjacent movable strips being rotatably connected in opposite directions. The first driving member is disposed on the workbench and is used to drive all the movable strips to rotate relative to each other or to lay flat. Two limiting plates are provided, each rotatably connected to one side of the deformable plate. The second driving member is disposed on the workbench and is used to drive the limiting plate to rotate upward relative to the deformable plate. When the deformable plate unfolds and the limiting plate rotates to a horizontal position, the deformable plate and the limiting plate form a laying plate, which closes the operating window. The gluing mechanism is disposed on the workbench and is used to apply glue to the paper.

[0007] By adopting the above technical solution, when laying the paper flat, the second driving component is first activated to push the limiting plate to rotate perpendicular to the deformation plate. Then, the sides of the stacked paper are placed on the deformation plate, with the stacking direction of the paper along the length of the deformation plate. After that, the first driving component is activated to push the movable strip to rotate, causing the deformation plate to deform from a flat plate structure to a corrugated plate structure. During this process, the sides of the paper are relatively displaced as the deformation plate deforms. At the same time, the second driving component can be activated to drive the paper to swing back and forth, further assisting in separating adjacent papers.

[0008] After separating adjacent sheets, the first drive mechanism is activated, which rotates the movable strip back to a horizontal position, restoring the deformable plate to a flat state. Simultaneously, the second drive mechanism is activated, which rotates the limiting plate to a horizontal position. Finally, the worker pushes the sheets to create the appropriate glued area. This mechanically assisted paper spreading process improves efficiency, saves time and labor, reduces processing difficulty, and makes it easier for inexperienced workers to operate.

[0009] Optionally, a connecting piece is fixed to the upper surface of the deformable plate, and the connecting piece is made of a flexible material.

[0010] By adopting the above technical solution, the gap between adjacent moving strips is covered by the connecting piece, reducing the possibility of paper getting stuck between adjacent moving strips.

[0011] Optionally, the workbench is provided with a blower mechanism, which is positioned above the tiling mechanism.

[0012] By adopting the above technical solution, after placing paper between the two limiting plates, the blower mechanism above the deformation plate is activated to blow gas into the adjacent papers to help separate them, thereby further improving processing efficiency and reducing processing difficulty.

[0013] Optionally, the glue application mechanism includes a mounting plate, a glue application roller, and a third driving component; the mounting plate has a container for holding glue; the glue application roller is rotatably connected to the bottom side of the mounting plate and communicates with the container; the mounting plate is slidably connected to the worktable along its length; the third driving component is mounted on the worktable and is used to drive the mounting plate to move relative to the worktable.

[0014] By adopting the above technical solution, after the separation of adjacent papers is completed, the limiting plate is used to push the paper to one side, and then the third driving component is activated to drive the mounting plate and the glue roller to move along the length of the worktable. During the movement, the paper is further staggered and flattened, and the glue in the container is applied to the edge of the paper to complete the glue application.

[0015] Optionally, the mounting plate is provided with a positioning element for fixing the glue roller to the mounting plate.

[0016] By adopting the above technical solution, the positioning component can be used to fix the coating roller to the mounting plate. On the one hand, after the third drive component is started, it can only play a pushing role without dispensing glue; on the other hand, it can fix the coating roller when the coating mechanism is idle, reducing the possibility of it rotating and dispensing glue and absorbing impurities.

[0017] Optionally, the connecting piece and the deformable plate are fixedly connected by adhesive bonding.

[0018] By adopting the above technical solution, the surface of the connecting piece away from the deformation plate is relatively flat, and it will not cause scratches or wear to the side edges of the paper.

[0019] Optionally, the surface of the connecting piece facing away from the deformable plate is smoothed.

[0020] By adopting the above technical solution, it is further ensured that the connecting piece will not cause scratches or wear to the side edges of the paper.

[0021] Optionally, the positioning element includes a first clamping airbag and a second clamping airbag, the first clamping airbag and the second clamping airbag are respectively disposed on two opposite sides of the container and extend along the length direction of the coating roller; after the first airbag and the second airbag are inflated, they clamp the coating roller.

[0022] By adopting the above technical solution, when the coating roller does not need to rotate, air is inflated into the first and second air chambers, which clamp the coating roller to restrict its rotation. The entire positioning component has a simple structure and can fix the coating roller in any position, facilitating operation.

[0023] Optionally, a cross groove is formed on the outer surface of the first airbag.

[0024] By adopting the above technical solution, the clamping and limiting effect of the positioning component on the coating roller is increased through the cross groove.

[0025] In summary, this application includes at least one of the following beneficial technical effects: By setting deformation plates and limiting plates on the workbench, the stacked papers can be separated by the deformation plates after deformation, which improves the processing efficiency of workers, reduces the processing difficulty, and also requires relatively low work experience from the workers. By setting a blower mechanism above the deformation plate, the separation of adjacent sheets is accelerated and the processing efficiency is further improved by blowing air between them. By setting a gluing mechanism above the deformable plate, the gluing mechanism includes a mounting plate, a gluing roller and a third driving component. The third driving component is used to drive the plate to move along the length of the worktable to achieve mechanical gluing, thereby improving processing efficiency and reducing processing difficulty. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of this application.

[0027] Figure 2 This is a schematic diagram illustrating the tiling mechanism in Example 1.

[0028] Figure 3 This is a schematic diagram used to illustrate the state of the deformable plate after deformation in Example 1.

[0029] Figure 4 This is a schematic diagram illustrating the structure of the sliding shaft and sliding groove in Embodiment 1.

[0030] Figure 5 This is a schematic diagram of the structure of Embodiment 2 of this application.

[0031] Figure 6 This is a schematic diagram illustrating the structure of the mounting plate in Embodiment 2.

[0032] Figure 7 This is a schematic diagram illustrating the structure of the cross groove in Embodiment 2.

[0033] Explanation of reference numerals in the attached drawings: 1. Workbench; 11. Support frame; 12. Work panel; 13. Operation window; 131. Sliding groove; 2. Laying mechanism; 21. Deformation plate; 211. Movable strip; 212. Sliding shaft; 22. Limiting plate; 23. First driving component; 24. Second driving component; 25. Laying plate; 26. Connecting piece; 3. Glue application mechanism; 31. Mounting plate; 311. Container box; 32. Glue application roller; 33. Third driving component; 34. Positioning component; 341. First airbag; 342. Second airbag; 343. Cross groove; 4. Blowering mechanism. Detailed Implementation

[0034] The following is in conjunction with the appendix Figure 1-7 This application will be described in further detail.

[0035] This application discloses a tote bag production equipment. Example 1

[0036] Reference Figures 1 to 4 A tote bag production equipment includes a workbench 1, a laying mechanism 2, and an adhesive coating mechanism 3.

[0037] The workbench 1 includes a support frame 11 and a work panel 12. The work panel 12 is placed on the support frame 11, which supports the work panel 12 off the ground. A rectangular operating window 13 is provided through the workbench 1.

[0038] The tiling mechanism 2 includes a deformable plate 21, a limiting plate 22, a first driving member 23, and a second driving member 24. The deformable plate 21 includes at least three movable strips 211, adjacent movable strips 211 are directionally rotatably connected, and the directional rotation directions of adjacent directionally rotatably connected strips are opposite.

[0039] Cylindrical sliding shafts 212 are fixed at the middle positions of both ends of the movable strip 211, and sliding grooves 131 are provided on the two opposite long inner walls of the operation window 13 for the ends of the sliding shafts 212 to pass through.

[0040] The first driving member 23 is used to drive all the movable strips 211 to rotate relative to each other or to rotate flat. The first driving member 23 is a driving cylinder, and there are two first driving members 23. The first driving member 23 is hinged to the support frame 11, and the output ends of the two first driving members 23 are respectively hinged to the movable strips 211 located at both ends of the deformable plate 21. When the output shaft of the first driving member 23 extends, it pushes the movable strip 211 connected to it to rotate about the sliding axis, thereby pushing the remaining movable strips 211 to rotate, so that the deformable plate 21 deforms from a flat plate shape to a wavy shape.

[0041] Two limiting plates 22 are provided, and the two limiting plates 22 are rotatably connected to both sides of the deformable plate 21, respectively. The second driving component 24 is a cylinder, which slides along the length of the working panel 12 and is connected to the support frame 11. The output end of the second driving component 24 is hinged to the limiting plate 22. There are two second driving components 24, and the two second driving components 24 correspond to the two limiting plates 22, respectively.

[0042] When the deformable plate 21 unfolds and the limiting plate 22 rotates to a horizontal position, the deformable plate 21 and the limiting plate 22 form a flat plate 25, which closes the operating window, making the upper surface of the entire working panel 12 flat.

[0043] Furthermore, a connecting piece 26 is fixedly connected to the upper surface of the deformable plate 21. The connecting piece 26 is made of a flexible material, such as waterproof canvas.

[0044] The connecting piece 26 is bonded and fixed to the deformable plate 21 so that the upper surface of the connecting piece 26 is a complete whole, ensuring that it will not scratch the edge of the paper.

[0045] The upper surface of the connecting piece 26 is smoothed, such as polished, to further ensure that it will not damage the side edges of the paper.

[0046] It is understood that in this embodiment, the connecting piece 26 extends and is fixed to the limiting plate 22 to cover the gap between the limiting plate 22 and the deformable plate 21.

[0047] Furthermore, the workbench 1 is equipped with a blower mechanism 4, which is positioned above the laying mechanism 2 and is used to blow air onto the paper placed on the laying mechanism 2. In this embodiment, the blower mechanism 4 is a fan.

[0048] The implementation principle of Example 1 is as follows: When laying the paper flat, the second driving component 24 is activated first, and the second driving component 24 pushes the limiting plate 22 to rotate so that it is perpendicular to the deformation plate 21. Then, the sides of the stacked paper are placed on the deformation plate 21, and the stacking direction of the paper is along the length direction of the deformation plate 21. Then, the first driving component 23 is activated, and the first driving component 23 pushes the movable strip 211 to rotate, so that the deformation plate 21 is deformed from a flat plate structure to a corrugated plate structure. During this process, the sides of the paper are relatively displaced as the deformation plate 21 deforms. At the same time, the blower mechanism 4 above the deformation plate 21 is activated to blow gas into the adjacent paper to help separate the adjacent paper. The second driving component 24 can also be activated at the same time to drive the paper to swing back and forth, further assisting in separating the adjacent paper.

[0049] After separating adjacent sheets, the first drive unit 23 is activated, which drives the movable strip 211 back to a horizontal position, restoring the deformable plate 21 to a flat state. Simultaneously, the second drive unit 24 is activated, which drives the limiting plate 22 to a horizontal position. Finally, the worker pushes the sheets to create the appropriate glued area. Example 2

[0050] Reference Figures 5 to 7 The difference between this embodiment and Embodiment 1 is that the glue application mechanism 3 includes a mounting plate 31, a glue application roller 32, and a third drive component 33. The mounting plate 31 has a container 311 for holding glue. The glue application roller 32 is rotatably connected to the bottom side of the mounting plate 31, and the glue application roller 32 communicates with the container 311.

[0051] Mounting plate 31 is slidably connected to workbench 1 along its length. Third drive member 33 is mounted on workbench 1 and is used to drive mounting plate 31 to move relative to workbench 1. In this embodiment, third drive member 33 is a cylinder. In other embodiments, third drive member 33 can also be a hydraulic cylinder or other linear drive member.

[0052] Furthermore, the mounting plate 31 is provided with a positioning element 34, which is used to fix the glue roller 32 to the mounting plate 31.

[0053] In this embodiment, the positioning member 34 includes a first clamping airbag and a second clamping airbag. The first clamping airbag and the second clamping airbag are respectively bonded and fixed to two opposite sides of the container 311 and extend along the length of the coating roller 32. After the first airbag 341 and the second airbag 342 are inflated, they clamp the coating roller 32 to fix the coating roller 32.

[0054] Furthermore, the outer surfaces of the first airbag 341 and the second airbag 342 are both provided with cross grooves 343 to increase the clamping and limiting ability of the first airbag 341 and the second airbag 342 on the coating roller 32.

[0055] The implementation principle of Example 2 is as follows: After the limiting plate 22 and the deformation plate 21 form a flat plate 25, the third driving component 33 is started (at this time, the positioning component 34 fixes the glue roller 32 relative to the mounting plate 31). The third driving component 33 drives the mounting plate 31 to move horizontally along the length direction of the worktable 1. During the horizontal movement, the paper is pushed to move, so that the paper is stacked in a staggered manner, exposing the glue application position. Then, the first airbag 341 and the second airbag 342 are deflated, and the mounting plate 31 is reset by the third driving component 33. During the reset process, the glue roller 32 rotates and carries out the glue in the container 311. The glue is applied to the side edges of the paper, completing the glue application. The entire glue application process is stable and the glue application is uniform.

[0056] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A tote bag production equipment, characterized in that: The system includes a workbench (1), a tiling mechanism (2), and an adhesive applicator (3). The workbench (1) includes a work panel (12) with an operating window extending through it. The tiling mechanism (2) includes a deformable plate (21), a limiting plate (22), a first driving member (23), and a second driving member (24). The deformable plate (21) includes at least three movable strips (211), adjacent movable strips (211) are directionally rotatably connected, and the directional rotation directions of adjacent directionally rotatably connected strips are opposite. The first driving member (23) is disposed on the workbench (1) and is used to drive all the movable strips (211) to rotate relative to each other and move closer together. Or rotate and lay flat; two limiting plates (22) are provided, and the two limiting plates (22) are respectively rotatably connected to both sides of the deformable plate (21); the second driving member (24) is provided on the worktable (1), and the second driving member (24) is used to drive the limiting plate (22) to rotate upward relative to the deformable plate (21); when the deformable plate (21) is unfolded and the limiting plate (22) is rotated to the horizontal, the deformable plate (21) and the limiting plate (22) form a flat plate (25), and the flat plate (25) closes the operation window; the glue application mechanism (3) is provided on the worktable (1), and the glue application mechanism (3) is used to apply glue to the paper.

2. The tote bag production equipment according to claim 1, characterized in that: The upper surface of the deformable plate (21) is fixed with a connecting piece (26), which is made of a flexible material.

3. The tote bag production equipment according to claim 1, characterized in that: The workbench (1) is equipped with a blower mechanism (4), which is located above the tiling mechanism (2).

4. The tote bag production equipment according to claim 1, characterized in that: The glue application mechanism (3) includes a mounting plate (31), a glue application roller (32), and a third drive component (33); the mounting plate (31) has a container (311) for holding glue; the glue application roller (32) is rotatably connected to the bottom side of the mounting plate (31), and the glue application roller (32) is in communication with the container (311); the mounting plate (31) is slidably connected to the worktable (1) along the length direction of the worktable (1); the third drive component (33) is mounted on the worktable (1), and the third drive component (33) is used to drive the mounting plate (31) to move relative to the worktable (1).

5. The tote bag production equipment according to claim 4, characterized in that: The mounting plate (31) is provided with a positioning element (34), which is used to fix the glue roller (32) to the mounting plate (31).

6. The tote bag production equipment according to claim 2, characterized in that: The connecting piece (26) and the deformable plate (21) are fixedly connected by adhesive bonding.

7. The tote bag production equipment according to claim 2, characterized in that: The connecting piece (26) has a smooth surface treatment away from the deformable plate (21).

8. The tote bag production equipment according to claim 5, characterized in that: The positioning element (34) includes a first airbag (341) and a second airbag (342). The first airbag (341) and the second airbag (342) are respectively disposed on two opposite sides of the container (311) and extend along the length of the coating roller (32). After the first airbag (341) and the second airbag (342) are inflated, they clamp the coating roller (32).

9. A tote bag production equipment according to claim 8, characterized in that: Both the first airbag (341) and the second airbag (342) have cross grooves (343) on their outer surfaces.