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Compression and tension resistant computer mouse material and preparation method thereof

A tensile material and computer technology, applied in the field of materials, can solve problems such as various failures, and achieve the effect of improving the compressive and tensile properties

Inactive Publication Date: 2016-10-12
XUCHANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, frequent clicks and long-term use are prone to various failures, and there is an urgent need to develop a new type of mouse with strong durability

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A compressive and tensile material for a computer mouse, consisting of a matrix and a reinforcement, the matrix includes ceramic powder, tungsten steel powder and glass fibers, and the reinforcement includes vinyl chloride, acrylate, magnesium oxide powder, calcium chloride Powder, tinned copper wire, iminodisuccinic acid, nano-titanium dioxide powder, in parts by weight, ceramic powder 25 parts, tungsten steel powder 15 parts, glass fiber 15 parts, vinyl chloride 5 parts, acrylate 5 parts, oxidation 2 parts of magnesium powder, 2 parts of calcium chloride powder, 2 parts of tinned copper wire, 0.1 part of iminodisuccinic acid, 0.1 part of nano-titanium dioxide powder; the mesh number of the ceramic powder is 1200 mesh, and the mesh of the tungsten steel powder is The number is 1400 mesh, the mesh number of the magnesium oxide powder is 1200 mesh, the mesh number of the calcium chloride powder is 800 mesh; the diameter of the glass fiber is 500-800nm, and the length is 4...

Embodiment 2

[0027] A compressive and tensile material for a computer mouse, consisting of a matrix and a reinforcement, the matrix includes ceramic powder, tungsten steel powder and glass fibers, and the reinforcement includes vinyl chloride, acrylate, magnesium oxide powder, calcium chloride Powder, tinned copper wire, iminodisuccinic acid, nano-titanium dioxide powder, in parts by weight, ceramic powder 35 parts, tungsten steel powder 23 parts, glass fiber 18 parts, vinyl chloride 8 parts, acrylate 8 parts, oxidation 5 parts of magnesium powder, 5 parts of calcium chloride powder, 5 parts of tinned copper wire, 0.3 part of iminodisuccinic acid, 0.2 part of nano-titanium dioxide powder; the mesh number of the ceramic powder is 1200 mesh, and the mesh of the tungsten steel powder The number is 1400 mesh, the mesh number of the magnesium oxide powder is 1200 mesh, the mesh number of the calcium chloride powder is 800 mesh; the diameter of the glass fiber is 500-800nm, and the length is 400-...

Embodiment 3

[0034] A compressive and tensile material for a computer mouse, consisting of a matrix and a reinforcement, the matrix includes ceramic powder, tungsten steel powder and glass fibers, and the reinforcement includes vinyl chloride, acrylate, magnesium oxide powder, calcium chloride Powder, tinned copper wire, iminodisuccinic acid, nano-titanium dioxide powder, in parts by weight, ceramic powder 45 parts, tungsten steel powder 30 parts, glass fiber 20 parts, vinyl chloride 10 parts, acrylate 10 parts, oxidation 8 parts of magnesium powder, 8 parts of calcium chloride powder, 8 parts of tinned copper wire, 0.5 part of iminodisuccinic acid, 0.3 part of nano-titanium dioxide powder; the mesh number of the ceramic powder is 1200 mesh, and the mesh of the tungsten steel powder The number is 1400 mesh, the mesh number of the magnesium oxide powder is 1200 mesh, the mesh number of the calcium chloride powder is 800 mesh; the diameter of the glass fiber is 500-800nm, and the length is 40...

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PUM

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Abstract

The invention discloses a compression and tension resistant computer mouse material and a preparation method thereof. The compression and tension resistant computer mouse material comprises a matrix and a reinforcement, the matrix comprises ceramic powder, tungsten steel powder and glass fibers, the reinforcement comprises vinyl chloride, acrylate, magnesium oxide powder, calcium chloride powder, tin coated copper wires, iminodisuccinic acid, titanium dioxide nanopowder, and the compression and tension resistant computer mouse material concretely comprises, by weight, comprises 25-45 parts of ceramic powder, 15-30 parts of tungsten steel powder, 15-20 parts of glass fibers, 5-10 parts of vinyl chloride, 5-10 parts of acrylate, 2-8 parts of the magnesium oxide powder, 2-8 parts of the calcium chloride powder, 2-8 parts of tin coated copper wires, 0.1-0.5 parts of iminodisuccinic acid and 0.1-0.3 parts of the titanium dioxide nanopowder. The compression and tension resistant computer mouse material is optimized to substantially improve the compression and tension resistance of computer mice. The compressive strength of the compression and tension resistant computer mouse material prepared through the method is 20MPa or above, the tensile strength is 15MPa or above, and the bending strength is 6MPa or above.

Description

technical field [0001] The invention relates to the technical field of materials, in particular to a compressive and tensile material for a computer mouse and a preparation method thereof. Background technique [0002] Along with the extensive use of personal computer, mouse also more and more occurs in daily life. However, frequent clicks and long-term use are prone to various failures, and there is an urgent need to develop a durable new mouse. Therefore, how to prepare the compressive and tensile material for computer mouse, while reducing its process cost and improving the compressive and tensile performance, has always been a technical problem for popularizing and applying the compressive and tensile material for computer mouse. Contents of the invention [0003] The object of the present invention is to provide a compressive and tensile material for a computer mouse and a preparation method thereof, so as to solve the problems raised in the above-mentioned backgroun...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L27/06C08L33/08C08K13/04C08K7/14C08K3/08C08K3/00C08K3/22C04B32/00G06F3/0354
CPCC08K13/04C04B32/00C08K3/00C08K3/08C08K3/22C08K7/14C08K2003/0856C08K2003/222C08K2003/2241C08K2201/003C08K2201/004C08K2201/011G06F3/03541C08L27/06C08L33/08
Inventor 秦元王彬彬高岩
Owner XUCHANG UNIV
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