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Antiskid material based on fiber array, and preparation method thereof

A fiber and array technology, applied in the field of anti-skid materials, can solve the problems of limited anti-skid performance, insufficient rigidity of flexible fluff, easy deformation, etc., and achieve the effects of low outgassing rate, excellent anti-skid characteristics, and high bonding strength

Active Publication Date: 2020-04-03
THE NAT CENT FOR NANOSCI & TECH NCNST OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The invention uses electrostatic flocking technology to implant flexible fluff on the sole and attach an oil layer to prepare non-slip soles. The flocking surface prepared by this method has a high surface density and a certain aspect ratio, but the rigidity of the flexible fluff is insufficient, easy to deform, and the anti-skid performance is limited.

Method used

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  • Antiskid material based on fiber array, and preparation method thereof
  • Antiskid material based on fiber array, and preparation method thereof
  • Antiskid material based on fiber array, and preparation method thereof

Examples

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preparation example Construction

[0044] The invention provides a method for preparing a non-slip material based on a fiber array comprising the following steps:

[0045] The first step, fiber pretreatment: the fiber filaments are cut into a certain length of chopped fibers by a fiber cutter, and the chopped fibers are sieved by a mechanical vibrating screen for 2 hours. Chopped fibers pass through screens of different meshes, and fibers with similar lengths stay in the same mesh. After sieving, the chopped fibers have high consistency in length and good dispersion. The mesh numbers of the sieves are respectively: 50 mesh, 100 mesh, 200 mesh, 300 mesh and 400 mesh.

[0046] The second step is to apply adhesive glue: use ethanol or acetone solvent to clean the surface of the substrate, and evenly coat the adhesive glue with a thickness of not less than 100 μm. For flat substrates, the adhesive can be coated with a wire rod or a film applicator; for special-shaped substrates, the adhesive can be evenly sprayed ...

Embodiment 1

[0051] The preparation method of the non-slip material of the carbon fiber array epoxy substrate of the present embodiment is as follows:

[0052] (1) Place polyacrylonitrile-based carbon fibers with a length of 0.4 mm in a mechanical vibrating screen for 2 hours, and the mesh numbers of the screens are: 50 mesh, 100 mesh, 200 mesh, 300 mesh and 400 mesh;

[0053] (2) Take out 1g of the fiber sample on the 200-mesh sieve and evenly disperse it on the metal plate under the high-voltage electrostatic device; paste the epoxy resin matrix cured by the flat mold on the surface of the upper metal plate with adhesive tape, and use ethanol respectively Clean the surface of the substrate with acetone; weigh 1g of epoxy resin adhesive, and use a SZQ film applicator to evenly coat the surface of the substrate with a wet film thickness of 250μm;

[0054] (3) Close the electrostatic flocking device, adjust the distance between the plates to 10cm, turn on the high-voltage DC power supply, a...

Embodiment 2

[0057] The preparation method of the anti-slip material of the glass fiber array epoxy substrate of the present embodiment is as follows:

[0058] (1) Place the glass fibers with a length of 0.5 mm in a mechanical vibrating sieve and sieve for 2 hours. The meshes of the screens are: 50 mesh, 100 mesh, 200 mesh, 300 mesh and 400 mesh;

[0059] (2) Take out 1g of the fiber sample on the 100-mesh sieve and evenly disperse it on the metal plate under the high-voltage electrostatic device; use double-sided adhesive tape to attach the epoxy resin substrate to the surface of the upper metal plate, and clean it with ethanol and acetone respectively Surface: weigh 1g of epoxy adhesive, and use a wire rod to evenly coat the surface of the substrate, with a wet film thickness of 200μm;

[0060] (3) Install an electrostatic flocking device, adjust the distance between the plates to 10cm, and place a nylon screen frame in parallel in the middle of the plates, with a screen mesh of 100 mesh...

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Abstract

The invention provides an antiskid material based on a fiber array, and a preparation method thereof. The antiskid material based on the fiber array comprises a substrate, an adhesion glue and rigid chopped fibers, wherein the surface of the substrate is coated with the adhesion glue, and one end of the rigid chopped fiber is arranged on the surface, coated with the adhesion glue, of the substrate. According to the invention, the antiskid material based on the fiber array has excellent antiskid characteristic, wherein the ice surface friction coefficient of the carbon fiber array is more than0.3 and can reach 0.6 at most; and the antiskid material has the characteristics of high bonding strength, low outgassing rate and excellent high-temperature resistance, and has wide application prospect in the fields of civil products, aerospace and precise instruments.

Description

technical field [0001] The invention belongs to the technical field of anti-slip materials, and relates to an anti-slip material based on fiber arrays and a preparation method thereof. Background technique [0002] The function of the anti-slip material is to improve the friction characteristics of the surface of the object, form a non-slip surface with a high friction coefficient, increase the friction of the surface of the object, and reduce the sliding of the object on a smooth surface, especially an ice surface. Applying anti-slip materials to surfaces such as shoe soles can reduce the occurrence of human slipping and falling accidents, and applying them to packaging materials, equipment and instrument surfaces can meet specific anti-slip requirements. [0003] At present, commonly used anti-slip materials are mainly used for soles and surfaces such as runways, parking lots, and ship decks. The anti-skid characteristics of the wet skating surface can be achieved by cons...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K3/14
CPCC09K3/149
Inventor 阿布哈桑·伊玛尼蔡文甫张晖张忠
Owner THE NAT CENT FOR NANOSCI & TECH NCNST OF CHINA