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High-temperature resistance sole material

A technology for shoe sole materials and high temperature resistance, applied in the field of shoe sole materials, can solve problems such as difficulty in meeting safety protection requirements, low temperature resistance of soles, and easy softening, etc., and achieve good insulation, low production costs, and good high temperature resistance Effect

Inactive Publication Date: 2017-05-31
QINGDAO JUNENG PIPELINE EQUIP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the rubber soles of existing insulating shoes have low insulation capacity, and it is difficult to meet high safety protection requirements. For example, if used in a high temperature environment, the high temperature resistance of the soles is low, and it is easy to soften.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0013] A high-temperature-resistant shoe sole material is composed of the following formula components in mass fractions: 4-8 parts of tribasic lead sulfate, 60-80 parts of silicone rubber, 20-30 parts of high-grade rubber powder, 6-10 parts of electrical grade clay, and 10 parts of collagen fiber -12 parts, 7-9 parts of polyethylene glycol, 4-6 parts of dibutyltin maleate, 20-40 parts of nitrile, 6-8 parts of phenolsulfonic acid.

Embodiment 2

[0015] A high-temperature-resistant shoe sole material is composed of the following mass fraction formula components: 4 parts of tribasic lead sulfate, 60 parts of silicone rubber, 20 parts of high-grade rubber powder, 6 parts of electrical grade clay, 10 parts of collagen fiber, and 7 parts of polyethylene glycol , 4 parts of dibutyltin maleate, 20 parts of nitrile, 6 parts of phenolsulfonic acid.

Embodiment 3

[0017] A high-temperature-resistant shoe sole material is composed of the following mass fraction formula components: 6 parts of tribasic lead sulfate, 70 parts of silicone rubber, 25 parts of high-grade rubber powder, 8 parts of electrical grade clay, 11 parts of collagen fiber, and 8 parts of polyethylene glycol , 5 parts of dibutyltin maleate, 30 parts of nitrile, 7 parts of phenolsulfonic acid.

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PUM

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Abstract

The invention discloses a high-temperature resistance sole material. The high-temperature resistance sole material is prepared from, by mass, 4-8 parts of tribasic lead sulfate, 60-80 parts of silicone rubber, 20-30 parts of high glue powder, 6-10 parts of electrical argil, 10-12 parts of collagenous fiber, 7-9 parts of polyethylene glycol, 4-6 parts of dibutyltin maleate, 20-40 parts of Buna-N, and 6-8 parts of phenolsulfonic acid. The high-temperature resistance sole material is simple in preparing technology, low in production cost, good in elasticity, good in insulativity, good in high-temperature resistance, and has effects of being light in weight and comfortable.

Description

technical field [0001] The invention relates to the field of shoe sole materials, in particular to a high temperature resistant shoe sole material. Background technique [0002] In recent years, with the advancement of science and technology, the use of sole materials has become more and more extensive. At present, most of the sole materials on the market are synthetic rubber. In order to adapt to different working environments, the performance of synthetic rubber will be further improved. Generally, a large amount of Fillers, resins and oils will greatly increase the production cost, and will cause serious pollution in the production process. Among them, insulating shoes are a kind of safety shoes made with insulating materials. However, the rubber soles of existing insulated shoes have low insulation capacity and are difficult to meet high safety protection requirements. For example, if used in a high temperature environment, the soles have low high temperature resistance...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L83/04C08L21/00C08L89/00C08L71/02C08L9/02C08K13/02C08K3/30C08K3/34C08K5/57C08K5/42A43B13/04
CPCC08L83/04A43B13/04C08L2201/08C08L2205/035C08L2205/16
Inventor 朱晓纬
Owner QINGDAO JUNENG PIPELINE EQUIP CO LTD