Paper tableware compounding mechanism

By adopting a layout with separate upper and lower conveying spaces and cylinder-driven material rack sliding technology in the paper tableware processing equipment, the problems of low efficiency and long downtime maintenance time in the paper tableware lamination process have been solved, achieving efficient material replacement and continuity of the lamination process, and improving equipment operating efficiency.

CN223520372UActive Publication Date: 2025-11-07WENZHOU YANGWANG INTELLIGENT MFG CO LTD
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Patent Information

Application Number
CN202522064724.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2025-11-07
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

Existing paper tableware processing equipment is inefficient in the multi-layer paper lamination process, and the downtime for maintenance is long, which affects production efficiency.

Method used

Design a paper tableware composite mechanism that adopts a layout with separate upper and lower conveying spaces. Material replacement is carried out in the lower conveying space, while the composite process is carried out in an orderly manner in the upper conveying space. The material rack sliding and the material transfer rack support seat driven by the cylinder are used to realize the convenient replacement of the feeding roller and reduce equipment downtime.

Benefits of technology

It improves the efficiency of paper tableware lamination, reduces equipment downtime for maintenance, and enhances equipment utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a paper tableware compounding mechanism which comprises a plurality of compounding modules which are sequentially connected front and back, each compounding module is divided into an upper conveying space and a lower conveying space through an arrangement frame, each compounding module comprises a feeding roller, a gluing roller set and a compounding roller set, the feeding rollers are arranged in the lower conveying spaces and used for containing coiled materials, and the gluing roller sets are arranged in the lower conveying spaces and used for containing the coiled materials. The feeding rollers output upwards during rotation, the gluing roller set and the composite roller set are sequentially arranged in the upper conveying space and sequentially receive materials in the previous procedure and materials output by the feeding rollers on the lower portion, and then gluing and compositing of the materials are conducted. Components are respectively arranged in the upper conveying space and the lower conveying space, gluing and compounding are carried out in order in the upper space, materials are replaced in the lower space, operation and replacement of workers are facilitated, the time for shutdown maintenance of equipment is shortened, and the use efficiency of the equipment is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to paper tableware production equipment field, more specifically relates to a paper tableware composite mechanism. BACKGROUND

[0002] In prior art, because paper tableware has more environmental protection advantages compared with plastic tableware, and then is universally recognized and uses. For the processing of paper tableware, first, paper is carried out multilayer composite, and then the processing material with suitable thickness and strength is formed. Multilayer paper needs to be transported separately, and then gradually composite layer by layer to obtain the required number of composite paper materials. The utility model is to design a paper tableware composite mechanism which is convenient for feeding and orderly composite. UTILITY MODEL CONTENT

[0003] In view of the deficiencies in the prior art, the utility model aims at providing a paper tableware composite mechanism to improve the composite efficiency.

[0004] The utility model provides the following technical scheme: a paper tableware composite mechanism, including a plurality of groups of composite module that are sequentially connected in front and back, the composite module is divided into upper conveying space and lower conveying space through a layout frame, the composite module includes feeding roller, glue roller group and composite roller group, the feeding roller is arranged at the lower conveying space and places the material roll, the feeding roller is output upward when rotating, the glue roller group and the composite roller group are sequentially arranged at the upper conveying space and sequentially receive the material of previous sequence and the material output by the lower feeding roller, and then the glue and composite of the material are carried out.

[0005] As an improvement, the layout frame is provided with a material rack that can slide laterally at the lower conveying space, and the feeding roller is rotatably arranged on the material rack, when the material rack slides to the side, it leaves the lower conveying space and provides the material for replacement.

[0006] As an improvement, the layout frame is provided with a track at the lower part of one side, and the material rack is slidably arranged on the track, and the material rack is connected to the cylinder for driving sliding.

[0007] As an improvement, the layout frame is further provided with a material moving rack at the lower conveying space, and the material moving rack is provided with a support seat for placing and rotating the feeding roller.

[0008] As an improvement, the material moving rack is arranged obliquely above the material rack, and the material moving rack is arranged close to the glue roller group and the composite roller group.

[0009] As an improvement, the number of composite modules is 8.

[0010] The beneficial effects of this utility model are as follows: the components are arranged separately in the upper and lower conveying spaces, the gluing and laminating are carried out in an orderly manner in the upper space, and the material replacement is carried out in the lower space, which facilitates the operation and replacement by the staff, thereby reducing the downtime of equipment maintenance and improving the efficiency of equipment use. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the two sets of composite modules of this utility model connected in sequence.

[0012] Figure 2 This is a three-dimensional structural diagram of the eight composite modules of this utility model connected in sequence.

[0013] In the diagram: 1. Composite module; 11. Feeding roller; 12. Gluing roller group; 13. Composite roller group; 2. Arrangement frame; 21. Material rack; 22. Track; 23. Cylinder; 24. Transfer frame; 25. Support base; 3. Upper conveying space; 4. Lower conveying space. Detailed Implementation

[0014] The specific embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0015] like Figure 1 , 2 The image shows a specific embodiment of the paper tableware composite mechanism of this utility model. This embodiment includes several composite modules 1 connected sequentially. Each composite module 1 is divided into an upper conveying space 3 and a lower conveying space 4 by a frame 2. Each composite module 1 includes a feeding roller 11, an adhesive roller group 12, and a composite roller group 13. The feeding roller 11 is located in the lower conveying space 4 and holds rolled-up materials. The feeding roller 11 outputs upwards when rotating. The adhesive roller group 12 and the composite roller group 13 are sequentially located in the upper conveying space 3 and sequentially receive the preceding materials and the materials output from the lower feeding roller 11, thereby performing adhesive application and composite bonding of the materials.

[0016] When using this invention, the number of composite layers is set according to the thickness of the paper tableware. Preferably, the number of composite modules 1 is set to 8 sets. The 8 sets of composite modules 1 are used to apply glue and composite 8 times, thereby compositing 9 initial paper materials into a whole sheet of material of appropriate thickness to be punched and formed. The first composite module 1 is preceded by a feeding roller for conveying the first layer of material. This material passes through the gluing roller group 12 and the composite roller group 13 of the first composite module 1. Both the gluing roller group 12 and the composite roller group 13 are configured as two rollers in contact with each other. The feeding roller 11 conveys the second layer of material upwards. The two layers of material pass between the two roller groups. The gluing roller group 12 is coated with glue to apply glue to the rollers. The glue is applied as the two layers of material are conveyed through the rollers. The composite roller group 13 rotates to provide power for conveying the material and squeezes the two glued layers of material to promote bonding. As the material continues to be conveyed, each composite module 1 adds a new layer of material. Finally, when the last eighth composite module 1 outputs material, a 9-layer material is obtained. The subsequent die-cutting mechanism continues to convey the material and then completes the die-cutting of the corresponding paper tableware shape. Each composite module 1 sequentially and orderly conveys multiple layers of material through the upper conveying space 3, and completes the gluing and lamination processes in sequence, thus ensuring that the gluing and lamination processes are completed in an orderly manner without being disturbed by the replacement of materials below. Workers can directly replace the feeding rollers 11 in the lower conveying space 4 below. After replacement, the ends of the two rolls of material are then joined together. This process does not require stopping the gluing and lamination processes above, or at least reduces downtime, thereby improving equipment operating efficiency.

[0017] As an improved specific implementation, the arrangement frame 2 is equipped with a material rack 21 that can slide laterally in the lower conveying space 4. The upper roller 11 is rotatably placed on the material rack 21. When the material rack 21 slides to the side, it leaves the lower conveying space 4 and is then used for material replacement.

[0018] like Figure 1 As shown, the material rack 21 slides away from the side of the lower conveying space 4 of the arrangement rack 2, which makes it easier to place the new feeding roller 11 carrying the large roll of material behind the feeding roller 11, and then slide back to the lower conveying space 4, thus making the feeding of the large roll of material more convenient; the head end of the new material is connected to the tail end of the previous material by the staff to continue the conveying.

[0019] As an improved specific implementation, the arrangement frame 2 is provided with a track 22 on the lower part of one side, and the material rack 21 is slidably arranged on the track 22. The material rack 21 is connected to the cylinder 23 for sliding drive.

[0020] like Figure 1As shown, the tracks 22 are arranged in two groups, the racks 21 are supported on the two tracks 22 to smoothly and stably slide, the sliding of the racks 21 is driven by the air cylinders 23, and the workers directly control the air cylinders 23 to slide the racks 21, thereby reducing the operation difficulty.

[0021] As an improved embodiment, the rack 2 is further provided with a material moving rack 24 at the lower conveying space 4, and the material moving rack 24 is provided with a support seat 25 for placing and rotating the feeding roller 11.

[0022] As shown, Figure 1 When it is necessary to replace the material, the previous feeding roller 11 that has not been used up can be placed at the material moving rack 24, and the two ends of the feeding roller 11 are supported by the support seat 25, and the feeding roller 11 can rotate outward to output the material on the support seat 25; and the empty rack 21 can be moved out at this time, the feeding roller 11 with new material is replaced, and then it is reset back to the lower conveying space 4, and when the material of the previous feeding roller 11 is used up, the worker connects the head end of the new material with the tail end of the previous material.

[0023] As an improved embodiment, the material moving rack 24 is arranged obliquely above the rack 21, and the material moving rack 24 is arranged close to the glue applying roller group 12 and the composite roller group 13.

[0024] As shown, Figure 1 The setting position of the material moving rack 24 facilitates the material to be directly conveyed to the glue applying roller group 12 at a short distance, improves the conveying efficiency, reduces the space occupied by the material conveying, and avoids space interference.

[0025] The preferred embodiments of the present application are described above, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solutions falling within the concept of the present application shall be considered as falling within the protection scope of the present application. It should be noted that, for ordinary skilled in the art, some improvements and decorations without departing from the principles of the present application shall be considered as falling within the protection scope of the present application.

Claims

1. A paperware composite structure, characterized by: The application relates to a composite die set (1) comprising a plurality of groups of composite die sets (1) connected in sequence, wherein the composite die set (1) is divided into an upper conveying space (3) and a lower conveying space (4) by a layout frame (2), the composite die set (1) comprises a material feeding roller (11), an upper glue roller group (12) and a composite roller group (13), the material feeding roller (11) is arranged at the lower conveying space (4) and placed in a roll shape, the material feeding roller (11) is rotated to output upwards, the upper glue roller group (12) and the composite roller group (13) are arranged in sequence at the upper conveying space (3) and sequentially receive the material of the previous step and the material output by the material feeding roller (11) below, and then the material is glued and compounded.

2. A paperware composite structure according to claim 1, wherein: The layout frame (2) is provided with a material rack (21) which can slide laterally at the lower conveying space (4), the material feeding roller (11) is rotatably arranged on the material rack (21), and when the material rack (21) slides to the side, the material feeding roller (11) is separated from the lower conveying space (4) to replace the material.

3. A paperware composite structure according to claim 2, wherein: The layout frame (2) is provided with a track (22) at one side of the lower part, the material rack (21) is slidably arranged on the track (22), and the material rack (21) is connected with an air cylinder (23) to drive the sliding.

4. A paperware composite according to claim 2 or 3, wherein: The layout frame (2) is further provided with a material moving rack (24) at the lower conveying space (4), the material moving rack (24) is provided with a supporting seat (25) for placing and rotating the material feeding roller (11).

5. A paperware composite structure as defined in claim 4, wherein: The material moving rack (24) is arranged in an obliquely upper position relative to the material rack (21), and the material moving rack (24) is arranged close to the upper glue roller group (12) and the composite roller group (13).

6. A paperware composite as defined in claim 1 or 2 or 3, wherein: The number of the composite die sets (1) is eight.