Production process of insulating ceramic for power equipment

A technology for insulating ceramics and power equipment, applied in the field of manufacturing technology of insulating ceramics for power equipment, can solve the problems of reduced product durability, low insulation performance, low insulation resistance value, etc., and achieve the effect of reducing energy consumption

Inactive Publication Date: 2017-07-07
合肥羿振电力设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the prior art, the insulation resistance value prepared by alumina is low, and

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] A manufacturing process of insulating ceramics for electric equipment, comprising the following steps:

[0020] Step 1: Pretreatment of Polygonatum Polygonatum, crush Polygonatum Polygonatum through a pulverizer, then pass through a 200-mesh sieve, and add 1.5 times its mass of glacial acetic acid, stir evenly, and put it in a sealed heat preservation device at a temperature of 55 degrees Celsius After medium heat preservation for 2 hours, take out Polygonatum Polygonatum and dry naturally to obtain pretreated Polygonatum Polygonatum;

[0021] Step 2: Preparation of mixed raw materials, put the raw materials for preparing insulating ceramics into a pulverizer in order according to the mass fraction, pass through a 200-mesh sieve, and then mix them into a ball mill for wet ball milling for 40 minutes, and then add titanium 3.5 times the mass of Polygonatum odoratum White powder and deionized water with 20 times the mass of Polygonatum odoratum, stirred evenly, and then s...

Embodiment 2

[0031] A manufacturing process of insulating ceramics for electric equipment, comprising the following steps:

[0032] Step 1: Pretreatment of Polygonatum Polygonatum, crush Polygonatum Polygonatum through a pulverizer, then pass through a 400-mesh sieve, and add glacial acetic acid 3.5 times its mass, stir evenly, and put it in a sealed heat preservation device at a temperature of 60 degrees Celsius After 6 hours of medium heat preservation, take out Polygonatum Polygonatum and dry naturally to obtain pretreated Polygonatum Polygonatum;

[0033] Step 2: Preparation of mixed raw materials, put the raw materials for preparing insulating ceramics into a pulverizer in order according to the mass fraction, pass through a 250-mesh sieve, and then mix them into a ball mill for wet ball milling for 60 minutes, and then add titanium 9.5 times the mass of Polygonatum odoratum White powder and 40 times the quality of Polygonatum odoratum, after being stirred evenly, ultrasonic treatment...

Embodiment 3

[0043] A manufacturing process of insulating ceramics for electric equipment, comprising the following steps:

[0044] Step 1: Pretreatment of Polygonatum Polygonatum, crush Polygonatum Polygonatum through a pulverizer, then pass through a 200-mesh sieve, and add glacial acetic acid 2.5 times its mass, stir evenly, and put it in a sealed heat preservation device at a temperature of 60 degrees Celsius After medium heat preservation for 2 hours, take out Polygonatum Polygonatum and dry naturally to obtain pretreated Polygonatum Polygonatum;

[0045] Step 2: Preparation of mixed raw materials, put the raw materials for preparing insulating ceramics into a pulverizer in order according to the mass fraction, pass through a 300-mesh sieve, and then mix them into a ball mill for wet ball milling for 40 minutes, and then add titanium 3.5 times the mass of Polygonatum odoratum White powder and deionized water with 20 times the mass of Polygonatum odoratum, stirred evenly, and then subj...

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PUM

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Abstract

The invention discloses a production process of an insulating ceramic for power equipment. The production process comprises the following steps: firstly, carrying out pretreatment on polygonatum odoratum; secondly, preparing a mixed raw material; thirdly, sintering and moulding, heating the mixed raw material to 80-120 DEG C within 40-50 minutes at a rate of 10 DEG C per minute, adding a sintering additive, and carrying out ball milling for 12-24 hours so that slurry with the solid phase content of 50-75vol is obtained, preparing the slurry into a transparent ceramic blank which is 1-3mm thick, heating the blank to 1400 DEG C in a high temperature box-type furnace at a rate of 2 DEG C/min, moulding in a perfusion mould, and carrying out heat preservation for 1.5-2.5 hours after moulding is carried out for 20-90 seconds, so that the insulating ceramic for the power equipment is obtained. The production process disclosed by the invention has the advantages that structural changes and chemical changes of the insulating ceramic material in a sintering process can be controlled by strictly controlling technological parameters, industrial application requirements can be met, and the production process can obviously reduce energy consumption compared with an existing process.

Description

technical field [0001] The invention belongs to the field of electric equipment, and in particular relates to a manufacturing process of insulating ceramics for electric equipment. Background technique [0002] Ceramics are various products made of natural clay and various natural minerals as the main raw materials through crushing, kneading, molding and calcination. In the past, people called ceramics made of clay and fired at high temperature in special kilns. Ceramics is the general term for pottery and porcelain. The traditional concept of ceramics refers to all artificial industrial products that use inorganic non-metallic minerals such as clay as raw materials. It includes various products made of clay or a mixture containing clay through kneading, shaping, and calcination. It ranges from the roughest earthenware to the finest fine pottery and porcelain. There are many types of ceramics, and they are widely used in the fields of chemical industry and electronics. A...

Claims

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Application Information

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IPC IPC(8): C04B33/13C04B33/04C04B33/16C04B33/32
CPCC04B33/13C04B33/04C04B33/16C04B33/32C04B2235/3227C04B2235/3232C04B2235/3241C04B2235/3472C04B2235/3821C04B2235/3826C04B2235/386C04B2235/3873C04B2235/443C04B2235/6562C04B2235/6567
Inventor 武行峰
Owner 合肥羿振电力设备有限公司
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