Antioxidant silicone cloth

CN224646889UActive Publication Date: 2026-08-18SHENZHEN LAIMEISI SILICON IND CO LTD
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Patent Information

Application Number
CN202521978644.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-08-18
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

[0003]为了解决上述技术问题,本实用新型提供了一种抗氧化硅胶布,以解决现有技术中,传统的硅胶布不具备抗氧化与抗燃烧功能的技术问题

Benefits of technology

1、该装置通过第一抗氧化层与第二抗氧化层的设置,使得装置能够抵御外界环境对基层布体的氧化侵蚀,提升了该装置的耐用性。装置可通过在基层布体两侧分别涂覆第一抗氧化层、第二抗氧化层,来形成抗氧化屏障,使得装置在不同环境下长期使用不易因氧化而损坏,提高了该装置在抗氧化方面的能力。

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Abstract

The utility model provides an anti -oxidation silica gel cloth belongs to the technical field of adhesive tape, including base layer cloth body, has opened a plurality of first clamping groove and a plurality of second clamping groove on base layer cloth body, is provided with first anti -oxidation layer and second anti -oxidation layer on base layer cloth body, first anti -oxidation layer and second anti -oxidation layer are located respectively on both sides of base layer cloth body, is provided with composite muscle layer in base layer cloth body, and the composite muscle layer includes a plurality of first reinforcing rib and a plurality of second reinforcing rib, a plurality of first reinforcing rib is formed grid -shaped by being worn on a plurality of second reinforcing rib, first anti -oxidation layer and second anti -oxidation layer one side all are equipped with fire -retardant layer, two groups of fire -retardant layer one side all are provided with antibacterial layer, and two groups of antibacterial layer one side all are provided with anti -scratch film. The device can add first anti -oxidation layer, second anti -oxidation layer respectively on both sides of base layer cloth body to form the oxidation -resistant barrier, so that the device is not easy to damage due to oxidation in different environments for long -term use.
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Description

Technical Field

[0001] This utility model belongs to the field of adhesive tape technology, and more specifically, it relates to an antioxidant silicone tape. Background Technology

[0002] In electronic equipment manufacturing workshops, in order to prevent equipment from being affected by the external environment and to ensure the stability and safety of the production environment, it is often necessary to use protective materials with multiple properties for protection and isolation. However, traditional silicone cloth does not have the functions of anti-oxidation and anti-flame, which means that in actual use, due to long-term exposure to air, the material is easily oxidized, its performance gradually declines, and its protective effect is greatly reduced. In scenarios where there may be static electricity hazards or open flame risks, ordinary protective materials cannot eliminate static electricity or prevent the spread of flames, which can easily lead to safety accidents such as fires. This not only affects the normal operation of production, resulting in reduced production efficiency and equipment damage, but also increases production costs and safety risks due to equipment maintenance and safety accident handling, thus threatening the company's economic benefits and personnel safety. Utility Model Content

[0003] To address the aforementioned technical problems, this utility model provides an antioxidant silicone cloth, thereby solving the technical problem that traditional silicone cloths in the prior art do not possess antioxidant and flame-retardant functions.

[0004] The purpose and efficacy of this anti-oxidation silicone cloth are achieved by the following specific technical means: An antioxidant silicone cloth includes a base fabric with multiple sets of first slots and multiple sets of second slots. A first antioxidant layer and a second antioxidant layer are disposed on the base fabric, located on opposite sides of the base fabric. A composite reinforcing layer is disposed within the base fabric, comprising multiple sets of first reinforcing ribs and multiple sets of second reinforcing ribs. The multiple sets of first reinforcing ribs pass through the multiple sets of second reinforcing ribs to form a mesh. A flame-retardant layer is disposed on one side of each of the first and second antioxidant layers. An antibacterial layer is disposed on one side of each of the flame-retardant layers. An anti-scratch film is disposed on one side of each of the antibacterial layers.

[0005] According to a preferred embodiment, multiple sets of first slots are distributed along the length direction of the base fabric, multiple sets of second slots are distributed along the width direction of the base fabric, and the multiple sets of first slots and multiple sets of second slots are staggered.

[0006] According to a preferred embodiment, each of the multiple sets of first slots is provided with a first fiber filament, and each of the multiple sets of second slots is provided with a second fiber filament. The multiple sets of second fiber filaments are interlaced and bonded with the multiple sets of first fiber filaments. Multiple sets of mounting holes are provided on both the first and second anti-oxidation layers. Wear-resistant particles are clamped in each of the multiple sets of mounting holes. The multiple sets of wear-resistant particles are all square in shape.

[0007] According to a preferred embodiment, the flame-retardant layer is provided with multiple sets of flame-retardant particles, the multiple sets of flame-retardant particles are equidistantly arranged along the length direction of the base fabric, wherein an antistatic strip is provided between two sets of flame-retardant particles, and the multiple sets of antistatic strips are equidistantly arranged along the length direction of the base fabric.

[0008] According to a preferred embodiment, the plurality of first fiber filaments, the plurality of second fiber filaments, and the base fabric are all made of silicone rubber, and the base fabric is integrally formed with the plurality of first fiber filaments and the plurality of second fiber filaments.

[0009] According to a preferred embodiment, the plurality of first reinforcing ribs and the plurality of second reinforcing ribs are cylindrical, the plurality of first reinforcing ribs and the plurality of second reinforcing ribs are all made of glass fiber material, and the plurality of first reinforcing ribs and the plurality of second reinforcing ribs are bonded together at the connection points.

[0010] According to a preferred embodiment, the outer wall of the base fabric is provided with an edge sealing strip, which wraps the first antioxidant layer, the second antioxidant layer, the two sets of flame retardant layers, the two sets of antibacterial layers, and the base fabric together, and the two sets of anti-scratch films are respectively attached to the edge sealing strip.

[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. By employing a first and a second anti-oxidation layer, this device can resist the oxidative erosion of the base fabric by the external environment, thus improving its durability. The device forms an anti-oxidation barrier by coating the base fabric with the first and second anti-oxidation layers respectively, making it less prone to oxidation damage during long-term use in different environments and enhancing its antioxidant capabilities.

[0012] 2. When using this device, the grid-like composite reinforcement layer formed by multiple sets of first and second reinforcing ribs enhances the overall strength and stability of the base fabric, enabling the device to withstand greater external forces and improving its practicality. Furthermore, by setting equidistantly arranged flame-retardant particles and anti-static strips on the flame-retardant layer, the device can eliminate static electricity while possessing excellent flame-retardant properties, preventing safety hazards caused by static electricity and improving its safety in terms of fire prevention and anti-static properties. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the assembled structure of this utility model; Figure 2 This is a schematic diagram of the disassembled structure of this utility model; Figure 3 This is a schematic diagram of the internal structure of this utility model.

[0014] In the diagram, the correspondence between component names and drawing numbers is as follows: 11. Base fabric; 12. First anti-oxidation layer; 13. Second anti-oxidation layer; 15. First reinforcing rib; 16. Second reinforcing rib; 17. Flame retardant layer; 18. Antibacterial layer; 19. Scratch-resistant film; 26. First fiber filament; 21. Second fiber filament; 22. Wear-resistant particles; 23. Flame retardant particles; 24. Antistatic strip; 25. Edge sealing strip. Detailed Implementation

[0015] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the technical solution of this utility model, but should not be used to limit the scope of protection of this utility model. Example

[0016] like Figures 1 to 3 As shown, an anti-oxidation silicone cloth includes a base fabric 11, which serves as the foundation structure of the entire anti-oxidation silicone cloth, supporting the other layers. The base fabric 11 has multiple sets of first slots and multiple sets of second slots. The first slots are distributed along the length of the base fabric 11, and the second slots are distributed along the width of the base fabric 11. The first and second slots are staggered, providing a regular layout for the installation of subsequent components.

[0017] A first anti-oxidation layer 12 and a second anti-oxidation layer 13 are provided on the base fabric 11. The first anti-oxidation layer 12 and the second anti-oxidation layer 13 are located on both sides of the base fabric 11, respectively. Their function is to resist the oxidation and erosion of the base fabric 11 by the external environment and extend the service life of the anti-oxidation silicone cloth. A composite reinforcement layer is provided inside the base fabric 11. The composite reinforcement layer includes multiple sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16. The multiple sets of first reinforcing ribs 15 are inserted through the multiple sets of second reinforcing ribs 16 to form a grid pattern. This arrangement enhances the overall strength and stability of the base fabric 11.

[0018] Both the first antioxidant layer 12 and the second antioxidant layer 13 have a flame-retardant layer 17 on one side. The flame-retardant layer 17 can prevent the spread of flames and improve the fire safety performance of the antioxidant silicone cloth. Both sets of flame-retardant layers 17 have an antibacterial layer 18 on one side. The antibacterial layer 18 can inhibit the growth and reproduction of bacteria, keeping the antioxidant silicone cloth hygienic and clean, suitable for environments with high hygiene requirements. Both sets of antibacterial layers 18 have an anti-scratch film 19 on one side. The anti-scratch film 19 can prevent the surface of the antioxidant silicone cloth from being scratched, improving its abrasion resistance and aesthetics.

[0019] Each of the multiple sets of first slots is provided with a first fiber filament 26, and each of the multiple sets of second slots is provided with a second fiber filament 21. The multiple sets of second fiber filaments 21 and the multiple sets of first fiber filaments 26 are interlaced and bonded together. This interlacing bonding method further enhances the toughness and strength of the base fabric 11. The first anti-oxidation layer 12 and the second anti-oxidation layer 13 are each provided with multiple sets of mounting holes. Each of the multiple sets of mounting holes is provided with wear-resistant particles 22. The multiple sets of wear-resistant particles 22 are all square. The setting of wear-resistant particles 22 improves the wear resistance of the surface of the anti-oxidation silicone cloth and reduces damage caused by friction.

[0020] The flame-retardant layer 17 is provided with multiple sets of flame-retardant particles 23, which are equidistantly arranged along the length of the base fabric 11. An anti-static strip 24 is provided between two sets of flame-retardant particles 23, and the multiple sets of anti-static strips 24 are equidistantly arranged along the length of the base fabric 11. This layout enables the flame-retardant layer 17 to not only have good flame-retardant performance, but also to eliminate static electricity and avoid safety hazards caused by static electricity.

[0021] The multiple sets of first fiber filaments 26, the multiple sets of second fiber filaments 21, and the base fabric 11 are all made of silicone rubber. The base fabric 11, the multiple sets of first fiber filaments 26, and the multiple sets of second fiber filaments 21 are integrally formed during the weaving process. This integral forming method ensures the bonding between the parts and improves the overall performance of the anti-oxidation silicone cloth.

[0022] The multiple sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16 are cylindrical. Both sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16 are made of glass fiber material, which also utilizes the characteristics of glass fiber material. The multiple sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16 are bonded together to ensure the stability of the composite reinforcement layer structure.

[0023] An edge sealing strip 25 is provided on the outer wall of the base fabric 11. The edge sealing strip 25 wraps the first anti-oxidation layer 12, the second anti-oxidation layer 13, the two sets of flame-retardant layers 17, the two sets of antibacterial layers 18, and the base fabric 11 together, playing a role in sealing and protection, preventing the separation of the layers or damage to the internal structure by external factors. Two sets of anti-scratch films 19 are respectively attached to the edge sealing strip 25, further enhancing the sealing and wear resistance of the edge of the anti-oxidation silicone cloth.

[0024] Specifically, the staggered arrangement of the first and second slots provides installation positions for the first fiber filament 26 and the second fiber filament 21, enabling them to be interlaced and bonded in a specific manner to jointly improve the performance of the base fabric 11; the first anti-oxidation layer 12 and the second anti-oxidation layer 13 are coated on both sides of the base fabric 11 by a process and bonded to the base fabric 11 to form an anti-oxidation barrier, for example by spraying or hot pressing.

[0025] The grid-like structure formed by multiple sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16 in the composite reinforcement layer, like a steel frame in a building, provides support for the base layer 11, making it less prone to deformation when subjected to tensile, compressive, or other external forces. The flame-retardant particles 23 and anti-static strips 24 on the flame-retardant layer 17 work together. The flame-retardant particles 23 can decompose or expand when exposed to a fire source, forming an isolation layer to prevent the spread of flames, while the anti-static strips 24 can conduct away accumulated static electricity in a timely manner, preventing static electricity from causing fires (e.g., in environments with static electricity, such as electronic equipment manufacturing workshops).

[0026] Multiple sets of first fiber filaments 26, multiple sets of second fiber filaments 21, and the base fabric 11 are made of silicone rubber and integrally molded, which gives the entire anti-oxidation silicone cloth good integrity and stability. The high strength of the glass fiber material ensures that the cloth is not easy to break during use, and the insulation can prevent static electricity accumulation.

[0027] Multiple sets of first reinforcing ribs 15 and multiple sets of second reinforcing ribs 16 are made of glass fiber and are bonded together to ensure the structural strength and stability of the composite rib layer. High-strength special adhesive can be used for bonding to ensure the stability of the connection.

[0028] The edge sealing strip 25 encapsulates each layer of the structure, enhancing the sealing performance of the anti-oxidation silicone cloth and protecting the internal layers from external moisture, dust, and other factors, thus extending the product's lifespan (e.g., in humid or dusty environments). Two sets of anti-scratch films 19 adhere to the edge sealing strip 25, further improving the abrasion resistance of the anti-oxidation silicone cloth's edges and preventing scratches during handling or use, which could affect overall performance (e.g., in scenarios involving frequent movement or contact with sharp objects, the anti-scratch film 19 protects the cloth).

[0029] The specific usage and function of this embodiment are as follows: In use, the base fabric 11 is based on which multiple sets of first and second slots are staggered to install the staggered first and second fiber filaments, which enhance the toughness and strength of the base. The base is provided with a first anti-oxidation layer 12 and a second anti-oxidation layer 13 on both sides to resist oxidation and extend the service life. The internal composite rib layer is made of cylindrical first reinforcing ribs 15 and second reinforcing ribs 16 of glass fiber material, which are staggered and bonded into a grid to improve the overall strength.

[0030] The outer side of the anti-oxidation layer is sequentially provided with a flame-retardant layer 17, an antibacterial layer 18, and an anti-scratch film 19, which respectively provide fireproof, antibacterial, and scratch-resistant functions. The flame-retardant layer contains equidistantly arranged flame-retardant particles 23 and antistatic strips 24, combining flame retardancy and antistatic properties. The mounting holes of the anti-oxidation layer are provided with square wear-resistant particles 22 to improve wear resistance.

[0031] The base fabric and fiber filaments are made of silicone rubber, integrally molded or bonded together to ensure overall performance. A 25mm sealing strip covers each layer on the outer edge of the base layer, with an anti-scratch film adhering to it, enhancing sealing and edge abrasion resistance.

[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It is obvious to those skilled in the art that this utility model is not limited to the details of the above exemplary embodiments.

Claims

1. An antioxidant silicone fabric cloth comprising a base cloth body (11), characterized in that: The base fabric (11) has multiple sets of first slots and multiple sets of second slots. The base fabric (11) is provided with a first antioxidant layer (12) and a second antioxidant layer (13). The first antioxidant layer (12) and the second antioxidant layer (13) are located on both sides of the base fabric (11). The base fabric (11) is provided with a composite reinforcement layer. The composite reinforcement layer includes multiple sets of first reinforcing ribs (15) and multiple sets of second reinforcing ribs (16). Multiple sets of first reinforcing ribs (15) are inserted through multiple sets of second reinforcing ribs (16) to form a grid. A flame retardant layer (17) is provided on one side of both the first antioxidant layer (12) and the second antioxidant layer (13). An antibacterial layer (18) is provided on one side of both sets of flame retardant layers (17). An anti-scratch film (19) is provided on one side of both sets of antibacterial layers (18).

2. The antioxidant silicone cloth according to claim 1, characterized in that: Multiple sets of first slots are distributed along the length direction of the base fabric (11), and multiple sets of second slots are distributed along the width direction of the base fabric (11), with multiple sets of first slots and multiple sets of second slots being staggered.

3. The antioxidant silicone cloth according to claim 2, characterized in that: Each of the first slots is provided with a first fiber filament (26), and each of the second slots is provided with a second fiber filament (21). The second fiber filament (21) and the first fiber filament (26) are interlaced and bonded together. Each of the first antioxidant layer (12) and the second antioxidant layer (13) has multiple sets of mounting holes. Each of the mounting holes is provided with wear-resistant particles (22), and each of the wear-resistant particles (22) is square.

4. The antioxidant silicone cloth according to claim 3, characterized in that: The flame-retardant layer (17) is provided with multiple sets of flame-retardant particles (23), and the multiple sets of flame-retardant particles (23) are arranged at equal intervals along the length direction of the base fabric (11). An antistatic strip (24) is provided between two sets of flame-retardant particles (23), and the multiple sets of antistatic strips (24) are arranged at equal intervals along the length direction of the base fabric (11).

5. The antioxidant silicone cloth according to claim 3, characterized in that: The multiple sets of first fiber filaments (26), the multiple sets of second fiber filaments (21), and the base fabric (11) are all made of silicone rubber, and the base fabric (11) is integrally formed with the multiple sets of first fiber filaments (26) and the multiple sets of second fiber filaments (21).

6. The antioxidant silicone cloth according to claim 4, characterized in that: The multiple sets of first reinforcing ribs (15) and multiple sets of second reinforcing ribs (16) are cylindrical. The multiple sets of first reinforcing ribs (15) and multiple sets of second reinforcing ribs (16) are all made of glass fiber material, and the multiple sets of first reinforcing ribs (15) and multiple sets of second reinforcing ribs (16) are bonded together at the connection point.

7. The antioxidant silicone cloth according to claim 6, characterized in that: The outer wall of the base fabric (11) is provided with an edge sealing strip (25). The edge sealing strip (25) wraps the first antioxidant layer (12), the second antioxidant layer (13), the two sets of flame retardant layers (17), the two sets of antibacterial layers (18), and the base fabric (11) into one piece. The two sets of anti-scratch films (19) are respectively attached to the edge sealing strip (25).