Preparation method of ultralight conductive sole material

A sole material and component technology, applied in the field of daily necessities, to achieve the effect of good air permeability, good conductivity, and light weight

Inactive Publication Date: 2016-09-28
NANJING DONGYA RUBBER & PLASTICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Some precision instruments in the laboratory are also very afraid of static electricity, and operators are also required to wear conductive shoes

Method used

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Examples

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Example Embodiment

[0014] The following is a further description of the ultralight conductive sole material of the present invention.

[0015] The ultra-light conductive sole material includes component A and component B with a mass ratio of 3:1; wherein, the component A is made of the following components by weight: 46 parts of natural rubber, 86 parts of nitrile rubber, 27 parts of acetylene carbon black, 34 parts of clay, 7 parts of dibutyl ester, 16 parts of dioctyl ester, 12-19 parts of high styrene, 1-5 parts of accelerator; The component B is made of the following parts by weight Ingredients: 10-18 parts of nano zinc oxide, 17-30 parts of antimony trioxide, 11-18 parts of zinc carbonate, 6-15 parts of stearic acid, 7-14 parts of sulfur, 9-17 parts of salicylic acid, white carbon 4-15 parts of black, 9-12 parts of magnesium oxide, 3-5 parts of active agent, 4-8 parts of antioxidant D, 1-8 parts of super-reinforcing agent.

[0016] The preparation method includes the following steps:

[0017] (1) W

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Abstract

The invention provides a preparation method of an ultralight conductive sole material. The method comprises the following steps: adding the components in a component A into a high-pressure kettle; reacting for 2-3h at 60-70 DEG C; cooling to room temperature to obtain a prepolymer; uniformly mixing the prepolymer with 2/3 of a component B; adding the mixture into a material tank of a sole pouring machine; heating to 60-70 DEG C and keeping the temperature for 5-10min; cooling to 55-60 DEG C; continuously adding the remaining 1/3 of the component B, and keeping the temperature for 10-20min; applying a demoulding agent to the product of the step (3) on a sole mould; blow-drying and pouring; preserving heat for 10-12min; and demoulding to obtain the ultralight conductive sole material. The sole material has the advantages of simple preparation technology, low cost, good air permeability, light weight and good conductivity.

Description

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Claims

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Application Information

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Owner NANJING DONGYA RUBBER & PLASTICS
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