Preparation method of anti-static coating

An anti-static coating and preparation process technology, applied in conductive coatings, epoxy resin coatings, coatings, etc., can solve the problems of large interface resistance and poor anti-static performance of coatings, improve anti-static performance and improve interface The effect of improving resistance and conductivity

Inactive Publication Date: 2019-06-07
陈可
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The technical problem mainly solved by the present invention is: aiming at the problem of poor antistatic performance of the coating due to the large interface resistance between the conductive fillers in the traditional antistatic coating, a preparation method of the antistatic coating is provided

Method used

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Examples

Experimental program
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Embodiment Construction

[0022]In parts by weight, put 2 to 3 parts of Bacillus pasteurianus, 1 to 2 parts of glycerol, 1 to 2 parts of polyethylene glycol, and 20 to 30 parts of water in No. 1 beaker, and then place No. 1 beaker in In a magnetic stirrer with digital speed measurement and constant temperature, at a temperature of 30 to 35°C and a rotating speed of 200 to 300r / min, stir and mix at a constant temperature for 40 to 60 minutes to obtain a Bacillus pasteurian bacterial liquid; in parts by weight, 20 ~30 parts of mica powder, 10~20 parts of starch, 1~2 parts of yeast, 20~30 parts of water are placed in No. 1 fermentation kettle, and stirred at a temperature of 30~35°C and a speed of 200~300r / min. Mix and ferment for 3 to 5 days, then add sodium hydroxide solution with a mass fraction of 20 to 30% into No. 1 fermentation kettle, and stir and mix for 40 to 60 minutes at a rotation speed of 300 to 500 r / min to obtain a fermentation material, then Put the fermented material in an oven, and dry ...

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PUM

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Abstract

The invention discloses a preparation method of an antistatic coating, and belongs to the technical field of high polymer materials. The preparation method comprises the following steps: mixing and fermenting sisal fibers, a bacillus pasteurii bacterial solution, urea and water, dropwise adding an iron nitrate solution, stirring and mixing, filtering, freezing, ball-milling, sieving, drying and carbonizing the mixture, performing gradual heating, and carrying out high-temperature treatment to obtain the modified fibers. According to weight ratio, 40-60 parts of modified epoxy resin, 40-60 parts of a diluent, 10-20 parts of pretreated mica powder, 10-20 parts of modified fiber, 10-20 parts of modified additive, 5-8 parts of a curing agent, 5-8 parts of modified sepiolite, 20-30 parts of alkaline phenolic resin and 10-20 parts of modified diatomite are stirred and mixed to obtain the antistatic coating. The anti-static coating provided by the invention has excellent anti-static performance.

Description

technical field [0001] The invention discloses a preparation method of an antistatic coating, which belongs to the technical field of polymer materials. Background technique [0002] Non-metallic structural / functional materials represented by resin-based composite materials have the characteristics of light weight, designable performance, and easy mass production, and their application range is expanding day by day. The volume resistivity of resin-based composite materials is relatively high, generally greater than 109Ω·cm. When the surface is subjected to friction and impact by air flow, solid particles and liquids, it is easy to generate and accumulate static electricity. When the accumulation of static electricity reaches a certain level, it will cause electrostatic discharge, which will lead to the breakdown and scrapping of the components of the equipment, the failure of the control system, the reduction of the accuracy of the hit, and the danger of explosion of the wea...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D163/00C09D5/24C09D7/62C09D7/63C09D7/65D06M16/00D06M13/432D06M11/65D06M101/06
Inventor 陈可仲华薛丞
Owner 陈可
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