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Toughened ceramic for insulator and preparation method of toughened ceramic

A manufacturing method and technology for insulators, which are applied in the field of toughened ceramics for insulators and their manufacturing, can solve the problems of reduced insulation performance, fracture or breakage, and exerting the advantages of comprehensive performance of materials, and achieve the effect of improving fracture toughness and improving insulation.

Inactive Publication Date: 2017-01-04
宁波高智科技咨询服务有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Among the relevant patents that have been applied in China, the patent "High Insulation Silicon Carbide / Boron Nitride Ceramic Material and Its Preparation Method" (application number: 201310294766.0, publication date: 2015-01-14) discloses a silicon carbide / nitrogen boron oxide ceramic material and its preparation method, but these two materials are brittle materials, their fracture toughness is not higher than 6Mpa, easy to break or break under transportation and other vibration conditions, and the invention belongs to high temperature sintering (1900°C -2300°C) heating isostatic pressing, the cost is too high to carry out industrial production. On the other hand, due to the low oxidation temperature of silicon carbide, when the high temperature is generated by an electrical short circuit, the insulator is prone to surface oxidation and leads to insulation performance Reduced; the patent "An Inorganic Nanocomposite Ceramic with Insulation and Heat Conduction and Its Preparation Method and Application" (Application No.: 201410310359.9, Publication Date: 2015-12-30) discloses an inorganic nanocomposite ceramic whose active ingredients are After being made into ceramics, they are all highly brittle materials, without toughening treatment, and at the same time, the comprehensive performance advantages of the material have not been brought into play

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  • Toughened ceramic for insulator and preparation method of toughened ceramic

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Embodiment 1

[0026] A toughened ceramic, which is divided into a core part 2 and a surface layer 1, wherein the surface layer 1 includes the following components by weight: 17.5 parts of silicon carbide, 20 parts of aluminum nitride, and 1 part of calcium fluoride; the core part 2 includes the following parts by weight Ingredients: 58 parts of silicon carbide, 2 parts of aluminum borate whiskers, 10 parts of indeterminate compounds of molybdenum;

[0027] A toughened ceramic for an insulator, the manufacturing method comprising the following steps:

[0028] 1) Raw material preparation

[0029] ①Prepare 2 parts by weight of aluminum borate whiskers, 70 parts of silicon carbide micropowder with a particle size of 3 μm-5 μm, 20 parts of aluminum nitride micropowder with a particle size of 3 μm-5 μm, 1 part of calcium fluoride powder, 10 parts of carbon powder, 10 parts of molybdenum silicide, 6 parts of ethyl orthosilicate, 3 parts of absolute ethanol, 3 parts of purified water, 1.5 parts of...

Embodiment 2

[0041] A toughened ceramic, which is divided into a core part 2 and a surface layer 1, wherein the surface layer 1 includes the following components by weight: 32 parts of silicon carbide, 30 parts of aluminum nitride, and 1.5 parts of calcium fluoride; the core part 2 includes the following parts by weight Ingredients: 77.5 parts of silicon carbide, 3 parts of aluminum borate whiskers, 15 parts of indeterminate compounds of molybdenum;

[0042] A toughened ceramic for an insulator, the manufacturing method comprising the following steps:

[0043] 1) Raw material preparation

[0044] ①Prepare 3 parts by weight of aluminum borate whiskers, 80 parts of silicon carbide micropowder with a particle size of 3 μm-5 μm, 30 parts of aluminum nitride micropowder with a particle size of 3 μm-5 μm, 1.5 parts of calcium fluoride powder, 15 parts of carbon powder, 15 parts of molybdenum silicide, 8 parts of ethyl orthosilicate, 5 parts of absolute ethanol, 5 parts of purified water, 2.5 pa...

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Abstract

The invention discloses toughened ceramic for an insulator and a preparation method of the toughened ceramic. The toughened ceramic is prepared from, by weight, 2-3 parts of aluminum borate whiskers, 70-80 parts of silicon carbide micro powder with the proper size, 20-30 parts of aluminum nitride micro powder with the proper size, 1-1.5 parts of calcium fluoride powder, 10-15 parts of carbon powder, 10-15 parts of molybdenum silicide, 6-8 parts of ethyl orthosilicate, 3-5 parts of absolute ethyl alcohol, 3-5 parts of purified water and 1.5-2.5 parts of thermoplastic phenolic resin. By means of the steps of raw material preparation, insulator pre-preparation, insulator sintering and completing, the high-tenacity insulation ceramic with the volume resistivity larger than or equal to 2*1,013 omega-cm, the dielectric strength larger than or equal to 750 kV / cm, the thermal conductivity larger than or equal to 25 W / m.K, the bending strength larger than or equal to 400 Mpa, the Young modulus larger than or equal to 320 Gpa and the breaking tenacity larger than or equal to 25 Mpa is formed. The toughened ceramic is good in economical efficiency, resistant to high temperature oxidation and high in breaking tenacity, and the functions of main materials complement one another.

Description

technical field [0001] The invention relates to the field of electronic components, in particular to a toughened ceramic for insulators and a manufacturing method thereof. Background technique [0002] Insulators are special insulation controls that can play an important role in overhead transmission lines. [0003] In the early years, insulators were mostly used on utility poles, and gradually developed into high-voltage wire connection towers where many disc-shaped insulators were hung at one end. It was used to increase the creepage distance, usually made of glass or ceramics, and was called an insulator. Insulators play two basic roles in overhead transmission lines, namely supporting wires and preventing current from returning to the ground. These two roles must be guaranteed; at the same time, insulators should have sufficient electrical insulation strength, moisture resistance and high temperature resistance. [0004] Among the relevant patents that have been applied...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/81C04B35/565C04B35/622C04B35/632C04B35/634C04B35/64
CPCC04B35/806C04B35/565C04B35/622C04B35/632C04B35/63476C04B35/64C04B2235/3865C04B2235/3891C04B2235/422C04B2235/445C04B2235/524C04B2235/6562C04B2235/6565C04B2235/6581C04B2235/661C04B2235/96
Inventor 何苗
Owner 宁波高智科技咨询服务有限公司
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