High-performance personalized composite cellulose acetate fiber rubber plate

By incorporating a main layer and reinforcing structure within the composite cellulose acetate sheet, and employing insert rods and threaded holes for splicing, the problem of existing composite sheets requiring adhesive for disassembly and damage has been solved. This achieves multifunctionality and easy disassembly, expanding the range of applications.

CN224170629UActive Publication Date: 2026-04-28WENZHOU JINYU PLASTIC SHEET CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU JINYU PLASTIC SHEET CO LTD
Filing Date
2025-05-23
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing composite panels require adhesives for splicing and forceful pulling for disassembly, making them prone to damage. They also have limited performance and application.

Method used

Design a high-performance, personalized composite cellulose acetate sheet with an internal main layer and a reinforcing structure, including an anti-corrosion layer, a heat insulation layer, a wear-resistant layer, and an anti-slip layer, and achieve non-destructive disassembly through a splicing structure with inserts and threaded holes.

Benefits of technology

It achieves the multi-functionality of the board, reduces the difficulty of disassembly, avoids damage to the board, expands the application range, and meets personalized needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224170629U_ABST
    Figure CN224170629U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of rubber plates, in particular to a high-performance personalized composite cellulose acetate fiber rubber plate, a first heat insulation layer is fixedly connected above an anti-corrosion layer, and a wear-resistant layer is fixedly connected above the first heat insulation layer. According to the high-performance personalized composite cellulose acetate fiber rubber plate, the anti-corrosion layer can achieve the anti-corrosion effect, the first heat insulation layer and the second heat insulation layer can achieve the heat insulation and heat preservation effect, the wear-resisting layer can achieve the wear-resisting effect, and the anti-skid layer can achieve the anti-skid effect, so that the plate has multiple properties and can be applied to different places; according to the plate splitting device, the use limitation is reduced, a plurality of bolts are rotated, the bolts are screwed out of the first threaded holes and the second threaded holes, then an operator moves the plate on the right side rightwards, when an insertion rod is moved out of a clamping groove, splitting work of the plates is completed, splitting is easier during splitting, and the connected sides of the plates cannot be damaged.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of adhesive sheet technology, specifically a high-performance personalized composite cellulose acetate adhesive sheet. Background Technology

[0002] Fiber acetate uses cellulose as its basic framework and possesses the basic characteristics of cellulose. Due to its low moisture regain, it has thermoplasticity and exhibits some characteristics of synthetic fibers, thus being called a semi-synthetic fiber. Fiber acetate sheets have high strength and can withstand greater pressure and weight.

[0003] For example, a composite sheet material with publication number "CN115958812A" and its preparation method and application directly replaces the electroplated metal shapes with 3D printing and color printing. This allows for arbitrary design, richer patterns, and eliminates the need for electroplated metal shapes, enabling arbitrary pattern designs in any part of the sheet. However, this composite sheet material and its preparation method and application have relatively limited performance, increasing its application limitations. Furthermore, this composite sheet material and its preparation method and application typically require adhesives for splicing the sheets. Disassembling the spliced ​​sheets requires operators to pull forcefully to both sides, making disassembly inconvenient and easily damaging the side of the sheet in contact with the adhesive. Utility Model Content

[0004] The purpose of this invention is to address the limitations of single-performance composite boards, which increase their usability. Furthermore, the composite boards, their preparation methods, and applications typically require adhesives for splicing. When disassembling the spliced ​​boards, operators must pull them forcefully to both sides, making disassembly difficult and easily damaging the side of the board in contact with the adhesive. Therefore, this invention proposes a high-performance, personalized composite cellulose acetate sheet.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] Design a high-performance personalized composite cellulose acetate sheet, including a sheet material, an inner main layer, and reinforcing structures on both sides of the main layer. The reinforcing structures include a second heat insulation layer and a first heat insulation layer. The inner sides of the first and second heat insulation layers are fixedly connected to the main layer. An anti-slip layer is fixedly connected below the second heat insulation layer, and a wear-resistant layer is fixedly connected above the first heat insulation layer.

[0007] Preferably, the wear-resistant layer has multiple patterns processed on its surface, and the plate has a splicing structure inside.

[0008] Preferably, the splicing structure includes insert rods, the ends of which are fixedly connected to the right side plate, and the insert rods are slidably connected to the left side plate through slots. Each insert rod has a second threaded hole machined on its outer wall, and the second threaded hole and the first threaded hole are connected by bolts.

[0009] Preferably, the first threaded holes are machined on both the front and rear sides of the left side plate.

[0010] Preferably, the slots are all machined on the right side wall of the left side plate.

[0011] This utility model proposes a high-performance personalized composite cellulose acetate sheet, which has the following advantages: through the combination of the main layer and the reinforcing structure, the main layer is made of cellulose acetate, and the two sides of the main layer are respectively provided with an anti-corrosion layer, a first heat insulation layer, a wear-resistant layer, a second heat insulation layer, and an anti-slip layer. The anti-corrosion layer can play a role in preventing corrosion, the first and second heat insulation layers can play a role in heat insulation, the wear-resistant layer can play a role in wear resistance, and the anti-slip layer can play a role in anti-slip, so as to give the sheet a variety of properties, allowing the sheet to be used in different places and reducing the limitations of its use.

[0012] By coordinating the plates and the splicing structure, multiple bolts are rotated to unscrew the bolts from the first and second threaded holes. Then, the operator moves the plate on the right side to the right. When the insert rod is removed from the slot, the plate disassembly is completed. This makes disassembly easier and prevents damage to the connected side of the plates. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 for Figure 1 A front sectional view;

[0015] Figure 3 for Figure 1 Partial top sectional view;

[0016] Figure 4 A schematic diagram showing the connection relationship between the plate, the slot, and the first threaded hole;

[0017] Figure 5 for Figure 2 A partial front sectional view;

[0018] Figure 6 This is a schematic diagram showing the connection relationship between the plate, the insert rod, and the second threaded hole;

[0019] Figure 7 for Figure 2 A magnified view of part A in the diagram.

[0020] In the diagram: 1. Sheet material, 2. Main layer, 3. Reinforcing structure, 301. Anti-slip layer, 302. First heat insulation layer, 303. Wear-resistant layer, 304. Second heat insulation layer, 4. Pattern, 5. Splicing structure, 501. Insert rod, 502. Slot, 503. Bolt, 504. First threaded hole, 505. Second threaded hole. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings:

[0022] See attached document Figure 1-7 In this embodiment, a high-performance personalized composite cellulose acetate sheet includes a sheet 1, with a main layer 2 inside the sheet 1. The main layer 2 is made of cellulose acetate. Reinforcing structures 3 are provided on both sides of the main layer 2. The reinforcing structures 3 include a second heat insulation layer 304 and a first heat insulation layer 302. The inner sides of the first heat insulation layer 302 and the second heat insulation layer 304 are fixedly connected to the main layer 2. An anti-slip layer 301 is fixedly connected below the second heat insulation layer 304. The anti-slip layer 301 is made of silicone and has good anti-slip properties.

[0023] The second insulation layer 304 and the first insulation layer 302 are made of polyurethane, which can effectively prevent heat conduction and prevent thermal expansion and contraction. A wear-resistant layer 303 is fixedly connected above the first insulation layer 302. The wear-resistant layer 303 is made of BNR and has good wear resistance.

[0024] Multiple patterns 4 are processed on the wear-resistant layer 303. The plate 1 has a splicing structure 5 inside. The first threaded hole 504 is processed on the front and rear sides of the left plate 1. The slot 502 is processed on the right side wall of the left plate 1.

[0025] The splicing structure 5 includes insert rods 501. The ends of multiple insert rods 501 are fixedly connected to the right plate 1. The insert rods 501 are slidably connected to the left plate 1 through slots 502. The outer wall of each insert rod 501 is machined with a second threaded hole 505. The second threaded hole 505 and the first threaded hole 504 are connected by bolts 503. The inner wall of the thread head of the bolt 503 is machined with an internal hexagonal groove.

[0026] Working principle:

[0027] During the splicing process, the operator inserts multiple inserts 501 from the right side plate 1 into the slots 502 processed on the left side plate 1, aligning multiple first threaded holes 504 and second threaded holes 505. Then, the operator rotates multiple bolts 503, causing the ends of the bolts 503 to be screwed into the first threaded holes 504 and second threaded holes 505 in sequence, thereby splicing the left side plate 1 and the right side plate 1 together.

[0028] When it is necessary to separate the spliced ​​panels 1, the operator rotates multiple bolts 503 so that the bolts 503 are unscrewed from the first threaded hole 504 and the second threaded hole 505. Then the operator moves the right side of panel 1 to the right. When the insert 501 is removed from the slot 502, the disassembly of panel 1 is completed. This makes it easier to disassemble the panels and prevents damage to the connected side of panel 1.

[0029] The main body layer 2 is made of cellulose acetate. On both sides of the main body layer 2 are respectively provided a first heat insulation layer 302, a wear-resistant layer 303, a second heat insulation layer 304, and an anti-slip layer 301. The anti-corrosion layer 301 provides corrosion protection. The second heat insulation layer 304 and the first heat insulation layer 302 are made of polyurethane, which effectively prevents heat conduction and thermal expansion and contraction, thus providing heat insulation. The wear-resistant layer 303 is made of BNR, which has good wear resistance. The anti-slip layer 301 is made of silicone, which has good anti-slip properties, thus providing anti-slip properties. This gives the board 1 a variety of performance characteristics, allowing it to be used in different applications and reducing limitations in its use. Furthermore, the pattern 4 on the wear-resistant layer 1 can be customized according to the user's actual needs, meeting the customer's personalized requirements.

[0030] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.

Claims

1. A high-performance personalized composite cellulose acetate sheet, comprising a sheet (1), wherein the sheet (1) has a main body layer (2) inside, characterized in that: The main body layer (2) is provided with a reinforcing structure (3) on both sides. The reinforcing structure (3) includes a second heat insulation layer (304) and a first heat insulation layer (302). The inner sides of the first heat insulation layer (302) and the second heat insulation layer (304) are fixedly connected to the main body layer (2). An anti-slip layer (301) is fixedly connected below the second heat insulation layer (304), and a wear-resistant layer (303) is fixedly connected above the first heat insulation layer (302).

2. The high-performance personalized composite cellulose acetate sheet according to claim 1, characterized in that: Multiple patterns (4) are processed on the wear-resistant layer (303), and splicing structure (5) is provided inside the plate (1).

3. The high-performance personalized composite cellulose acetate sheet according to claim 2, characterized in that: The splicing structure (5) includes a plug rod (501), the ends of which are fixedly connected to the right plate (1). The plug rod (501) is slidably connected to the left plate (1) through a slot (502). The outer wall of the plug rod (501) is machined with a second threaded hole (505). The second threaded hole (505) and the first threaded hole (504) are connected by bolts (503).

4. The high-performance personalized composite cellulose acetate sheet according to claim 3, characterized in that: The first threaded hole (504) is machined on both the front and back sides of the left plate (1).

5. The high-performance personalized composite cellulose acetate sheet according to claim 3, characterized in that: The slots (502) are all machined on the right side wall of the left plate (1).

Citation Information

Patent Citations

  • Composite board as well as preparation method and application thereof

    CN115958812A