High-strength SMC (Sheet Molding Compound) insulating plate

By designing structures such as protrusions, wear-resistant layers, snap-fit ​​grooves, and magnetic blocks on the insulation board, the problem of slipping and falling in damp or rainy weather is solved, the friction and stability of the insulation board are enhanced, and the service life and comfort are improved.

CN224190741UActive Publication Date: 2026-05-01SHANDONG JINGWEIYUAN NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG JINGWEIYUAN NEW MATERIAL TECH CO LTD
Filing Date
2025-05-29
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing insulation boards are prone to causing workers to slip and fall in damp or rainy weather, posing a safety hazard.

Method used

The design incorporates raised structures, wear-resistant layers, snap-fit ​​grooves and blocks, as well as magnetic blocks, to enhance friction and stability. The air cushion also increases comfort and extends service life.

Benefits of technology

It improves the friction and stability of the insulation board, reduces the risk of slipping, increases service life, and provides a comfortable user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-strength SMC insulating plate which is characterized in that the high-strength SMC insulating plate comprises a connecting plate, a fixing hole is formed in the top face of the connecting plate, an upper insulating plate is fixedly installed in the fixing hole, a plurality of protrusions are fixedly installed on the top face of the upper insulating plate, the protrusions are distributed on the top face of the upper insulating plate at equal intervals, and the protrusions are fixedly installed on the top face of the upper insulating plate. By arranging the protrusions, on one hand, the effect that concave bodies on the surface of the upper insulating plate are uneven can be achieved through the shape of the protrusions, then a worker can be warned and automatically slowed down when passing by, and on the other hand, the friction force can be increased, and the situation that the worker slips and is injured due to the smooth surface is reduced; and through the design of the second clamping grooves and the second clamping blocks, the second clamping grooves and the second clamping blocks of the adjacent devices can be clamped together, the stability of the device in the vertical direction and the adjacent devices is improved, and the overall structure formed after laying has higher stability.
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Description

A high-strength SMC insulation board Technical Field

[0001] This utility model relates to the field of SMC insulation board technology, specifically to a high-strength SMC insulation board. Background Technology

[0002] SMC insulation boards are sheet-like products of various colors, molded from unsaturated polyester glass fiber reinforced sheet molding compound. The main raw materials consist of GF (special yarn), UP (unsaturated resin), low-shrinkage additives, MD (filler), and various auxiliaries. The primary use of insulation boards is in power distribution rooms and substations, where they are laid on the floor of power distribution facilities to provide insulation, minimizing the probability of electric shock accidents and protecting workers.

[0003] The existing insulation boards on the market are mainly square plates, which are laid on the ground in an adjacent manner. In actual use, when workers are moving on the ground or equipment is working, they are prone to slipping and falling in damp or rainy weather, which poses a certain safety hazard. To address this, we have proposed a high-strength SMC insulation board. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this utility model provides a high-strength SMC insulation board, which solves the problem that workers are prone to slipping and falling when working on the ground or in damp or rainy weather, posing a certain safety hazard.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0006] A high-strength SMC insulation board includes a connecting plate. A fixing hole is formed on the top surface of the connecting plate. An upper insulation plate is fixedly installed inside the fixing hole. A plurality of protrusions are fixedly installed on the top surface of the upper insulation plate. The protrusions are evenly distributed on the top surface of the upper insulation plate.

[0007] Preferably, the protrusion is made of rubber, and an upper wear-resistant layer is fixedly installed on the top surface of the upper insulating plate.

[0008] Preferably, a lower insulating layer is fixedly installed inside the fixing hole, and a lower wear-resistant layer is fixedly installed inside the fixing hole. Both the upper wear-resistant layer and the lower wear-resistant layer are silicon carbide coatings.

[0009] Preferably, a first snap-fit ​​groove is provided on one side of the connecting plate. The first snap-fit ​​groove is a T-shaped groove structure. A first snap-fit ​​block is fixedly installed on the side of the connecting plate away from the first snap-fit ​​groove. The first snap-fit ​​block is a T-shaped block structure.

[0010] Preferably, a second snap-fit ​​groove is provided on one side of the connecting plate, and a second snap-fit ​​block is fixedly installed on the side of the connecting plate away from the second snap-fit ​​groove.

[0011] Preferably, the second snap-fit ​​block is made of metal, a magnetic block is fixedly installed inside the second snap-fit ​​groove, an air cushion is provided inside the fixing hole, and the air cushion is located between the upper insulating plate and the lower insulating layer.

[0012] In summary, the present invention has the following main advantages:

[0013] 1. By setting protrusions, on the one hand, the protrusions can create an uneven surface on the upper insulation board, which can serve as a warning to workers when they pass by and automatically slow them down. On the other hand, they can increase friction and reduce the chance of workers slipping and getting injured due to the smooth surface.

[0014] 2. By setting a second locking slot and a second locking block, the second locking slots and blocks of adjacent devices can be locked together, increasing the vertical stability of the device and adjacent devices, resulting in a more stable overall structure after installation. The design of the magnetic block further increases the stability when the second locking slot and the second locking block are locked together, minimizing the possibility of the device falling apart under external force. The air cushion design, which is a commercially available structure, increases the comfort during use and enhances the device's actual service life due to its high deformation capacity. Attached Figure Description

[0015] Figure 1 is a three-dimensional structural diagram of this utility model;

[0016] Figure 2 is a schematic diagram of the disassembled structure of this utility model;

[0017] Figure 3 is a schematic diagram of the connecting plate structure of this utility model.

[0018] Reference numerals: 1. Connecting plate; 2. Fixing hole; 3. Upper insulating plate; 4. Protrusion; 5. Upper wear-resistant layer; 6. Lower insulating layer; 7. Lower wear-resistant layer; 8. First snap-fit ​​groove; 9. First snap-fit ​​block; 10. Second snap-fit ​​groove; 11. Second snap-fit ​​block; 12. Magnetic block; 13. Air cushion. Detailed Implementation

[0019] 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.

[0020] Referring to Figures 1-3, a high-strength SMC insulation board includes a connecting plate 1. The top surface of the connecting plate 1 has a fixing hole 2, and an upper insulation plate 3 is fixedly installed inside the fixing hole 2. Several protrusions 4 are fixedly installed on the top surface of the upper insulation plate 3. The protrusions 4 are evenly distributed on the top surface of the upper insulation plate 3. Through the design of the protrusions 4, on the one hand, their shape can create an uneven concave surface on the upper insulation plate 3, thereby alerting workers when passing by and automatically slowing down. On the other hand, it can increase friction and reduce the possibility of workers slipping and getting injured due to the smooth surface.

[0021] The protrusion 4 is made of rubber. Through its design, the rubber material maintains the insulation properties of the upper insulating plate 3 while simultaneously increasing friction. An upper wear-resistant layer 5 is fixedly installed on the top surface of the upper insulating plate 3. A lower insulating layer 6 and a lower wear-resistant layer 7 are fixedly installed inside the fixing hole 2. Both the upper wear-resistant layer 5 and the lower wear-resistant layer 7 are made of silicon carbide coating. The design of the upper wear-resistant layer 5 and the lower wear-resistant layer 7 utilizes the excellent wear-resistant and corrosion-resistant properties of the silicon carbide coating to achieve... This significantly extends the lifespan of the device, making it more practical. A first locking groove 8 is provided on one side of the connecting plate 1; the first locking groove 8 has a T-shaped groove structure. A first locking block 9, also a T-shaped block structure, is fixedly installed on the side of the connecting plate 1 away from the first locking groove 8. Through the design of the first locking groove 8 and the first locking block 9, adjacent devices can be locked together, achieving lateral splicing of the devices. The T-shaped design increases the stability of the locking connection and prevents damage from external forces. To prevent damage to the connection structure and affect the stability of the device, a second snap-fit ​​groove 10 is provided on one side of the connecting plate 1. A second snap-fit ​​block 11 is fixedly installed on the side of the connecting plate 1 away from the second snap-fit ​​groove 10. Through the design of the second snap-fit ​​groove 10 and the second snap-fit ​​block 11, the second snap-fit ​​groove 10 and the second snap-fit ​​block 11 of adjacent devices can be snapped together, increasing the vertical stability of the device and adjacent devices, so that the overall structure formed after laying has higher stability. The material of the second snap-fit ​​block 11 is metal. A magnetic block 12 is fixedly installed inside the second snap-fit ​​groove 10. Through the design of the magnetic block 12, the stability of the second snap-fit ​​groove 10 and the second snap-fit ​​block 11 when snapped together can be further increased, and the device can be prevented from falling apart when subjected to external force as much as possible. An air cushion 13 is provided inside the fixing hole 2. The air cushion 13 is located between the upper insulating plate 3 and the lower insulating layer 6. Through the design of the air cushion 13, the air cushion 13 is a structure that is already available on the market. On the one hand, it can increase the comfort during use, and on the other hand, it can increase the actual service life of the device by taking advantage of the deformation capacity.

[0022] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-strength SMC insulation board, comprising a connecting plate (1), characterized in that, The top surface of the connecting plate (1) is provided with a fixing hole (2), and an upper insulating plate (3) is fixedly installed inside the fixing hole (2). Several protrusions (4) are fixedly installed on the top surface of the upper insulating plate (3), and the protrusions (4) are evenly distributed on the top surface of the upper insulating plate (3).

2. The high-strength SMC insulation board according to claim 1, characterized in that, The protrusion (4) is made of rubber, and the upper wear-resistant layer (5) is fixedly installed on the top surface of the upper insulating plate (3).

3. A high strength SMC insulation panel according to claim 2, characterized in that, The lower insulating layer (6) is fixedly installed inside the fixing hole (2), and the lower wear-resistant layer (7) is fixedly installed inside the fixing hole (2). Both the upper wear-resistant layer (5) and the lower wear-resistant layer (7) are silicon carbide coatings.

4. A high-strength SMC insulation board according to claim 1, characterized in that, A first snap-fit ​​groove (8) is provided on one side of the connecting plate (1). The first snap-fit ​​groove (8) is a T-shaped groove structure. A first snap-fit ​​block (9) is fixedly installed on the side of the connecting plate (1) away from the first snap-fit ​​groove (8). The first snap-fit ​​block (9) is a T-shaped block structure.

5. A high-strength SMC insulation board according to claim 3, characterized in that, A second snap-fit ​​groove (10) is provided on one side of the connecting plate (1), and a second snap-fit ​​block (11) is fixedly installed on the side of the connecting plate (1) away from the second snap-fit ​​groove (10).

6. A high strength SMC insulated panel according to claim 5, wherein, The second snap-fit ​​block (11) is made of metal. A magnetic block (12) is fixedly installed inside the second snap-fit ​​groove (10). An air cushion (13) is provided inside the fixing hole (2). The air cushion (13) is located between the upper insulating plate (3) and the lower insulating layer (6).