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Unbreakable ceramic product and manufacturing method thereof

A kind of ceramic products, not easy technology, applied in the field of ceramic products, can solve the problems of easy breakage, no shock resistance, poor mechanical properties, etc., achieve good strength, reduce damage, and good adhesion

Inactive Publication Date: 2016-02-17
DEYI CULTURAL & CREATIVE GRP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, ceramic products generally have the disadvantage of poor mechanical properties, they are not shock-resistant and drop-resistant, and they are easy to break if they fall off accidentally during use.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0068] A method for preparing a non-fragile ceramic product, comprising the following steps:

[0069] 1) By weight, weigh the following components:

[0070] Sodalite 18 parts;

[0071] 16 parts of earth borate;

[0072] 55 parts of kaolin;

[0073] 15 parts of zirconium dioxide;

[0074] 10 parts of zircon sand;

[0075] 8 parts of fused magnesia;

[0076] 12 parts of aluminum oxide;

[0077] 18 parts of polyimide resin powder;

[0078] 20 parts of mother-of-pearl powder;

[0079] 12 parts of negative ion powder;

[0080] 3 parts of auxiliary agent;

[0081] Wherein, the negative ion powder is tourmaline powder, and the components of the auxiliary agent and their percentages by weight in the auxiliary agent are: polyvinyl alcohol 35%, methyl cellulose 30%, polyethylene glycol 23%, polyacrylamide 12%;

[0082] 2) First crush sodalite, borate soil, kaolin, zircon sand and fused magnesia, and pass through a 90-mesh sieve;

[0083] 3) Mix the material obtained in step ...

Embodiment 2

[0088] A method for preparing a non-fragile ceramic product, comprising the following steps:

[0089] 1) By weight, weigh the following components:

[0090] 16 parts of sodalite;

[0091] 20 parts of earth borate;

[0092] 60 parts of kaolin;

[0093] 18 parts of zirconium dioxide;

[0094] 9 parts zircon sand;

[0095] 8 parts of fused magnesia;

[0096] 10 parts of aluminum oxide;

[0097] 21 parts of polyimide resin powder;

[0098] 23 parts of mother-of-pearl powder;

[0099] 10 parts of negative ion powder;

[0100] 3 parts of auxiliary agent;

[0101] Wherein, the negative ion powder is hexacyclite powder, and the components of the auxiliary agent and their weight percentages in the auxiliary agent are: polyvinyl alcohol 35%, methyl cellulose 20%, polyethylene glycol 19%, polyacrylic acid Amine 26%;

[0102] 2) First crush sodalite, borate soil, kaolin, zircon sand and fused magnesia, and pass through a 80-mesh sieve;

[0103] 3) Mix the material obtained in ...

Embodiment 3

[0108] A method for preparing a non-fragile ceramic product, comprising the following steps:

[0109] 1) By weight, weigh the following components:

[0110] Sodalite 18 parts;

[0111] 10 parts of earth borate;

[0112] 55 parts of kaolin;

[0113] 15 parts of zirconium dioxide;

[0114] 10 parts of zircon sand;

[0115] 5 parts of fused magnesia;

[0116] 13 parts of aluminum oxide;

[0117] 15 parts of polyimide resin powder;

[0118] 25 parts of mother-of-pearl powder;

[0119] 12 parts of negative ion powder;

[0120] 4 parts of auxiliary agent;

[0121] Wherein, the negative ion powder is opal powder, and the components of the auxiliary agent and their percentages by weight in the auxiliary agent are: polyvinyl alcohol 30%, methyl cellulose 35%, polyethylene glycol 25%, polyacrylamide 10%;

[0122] 2) First crush sodalite, borate soil, kaolin, zircon sand and fused magnesia, and pass through a 100-mesh sieve;

[0123] 3) Mix the material obtained in step 2) wi...

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Abstract

The invention discloses an unbreakable ceramic product and a manufacturing method thereof. The unbreakable ceramic product is prepared from, by weight, 16-20 parts of sodalite, 10-20 parts of boric acid soil, 50-60 parts of kaolin, 12-18 parts of zirconium dioxide, 8-10 parts of zircon sand, 5-8 parts of fused magnesite, 10-15 parts of aluminum oxide, 15-21 parts of polyimide resin powder, 20-25 parts of nacre powder, 10-15 parts of negative ion powder and 3-5 parts of auxiliaries. The auxiliaries are composed of polyvinyl alcohol, methylcellulose, polyethylene glycol and polyacrylamide. The scientific raw material formula is adopted, the raw materials are gathered into a layered structure in the manufacturing process, cracks are not prone to expanding in the layered material, the ceramic finished product is high in strength and resistant to shock and breaking, cohesiveness among particles is high, and ceramic breakage is reduced.

Description

technical field [0001] The invention belongs to the field of ceramic products, and in particular relates to a non-fragile ceramic product and a manufacturing method thereof. Background technique [0002] China is one of the first countries in the world to use ceramics. Because of its hard texture, fineness, high temperature resistance, and rich glaze colors, ceramics are widely used in food utensils, decoration, science and other fields. However, ceramic products generally have the disadvantages of poor mechanical properties, are not shock-resistant and drop-resistant, and are easy to break if they fall off accidentally during use. Solving the fragility of ceramic materials is not only the focus of foreign material fields, but also the direction of joint research by Chinese material scientists. [0003] On the other hand, with the development of society and the improvement of people's living standards, more and more attention is paid to environmental protection and health, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B33/04C04B33/13
CPCC04B33/04C04B33/1305C04B33/131C04B33/1315C04B2235/96
Inventor 吴国顺吴体芳
Owner DEYI CULTURAL & CREATIVE GRP CO LTD
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