A kind of high lithium heat-resistant ceramic material

A ceramic material and high-lithium technology, which is applied in the field of high-lithium heat-resistant ceramic materials, can solve the problems of incomplete production technology, unsatisfactory combination scheme, and further research and development of enhanced heat-resistant stability, so as to achieve good cooking effect , long service life and improved thermal stability

Active Publication Date: 2011-12-14
江西欣天利陶瓷有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Since the material combination scheme of producing heat-resistant ceramics with lithium petalite as the main material is not very ideal, and t

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0014] Embodiment 1: the parts by weight of each raw material are: 48 parts of petalite feldspar; 16 parts of Guizhou kaolin; 25 parts of Hualin soil; 8 parts of waste porcelain powder; 7 parts of Yichun kaolin; 7 parts of Zhongxia soil; 3 parts of Zhangzhou black soil 3 parts of talc powder; 3 parts of alumina; 5 parts of quartz powder; waste porcelain powder is above 250 mesh.

Embodiment 2

[0015] Embodiment 2: the parts by weight of each raw material are: 40 parts of lithium petalite; 20 parts of Guizhou kaolin; 20 parts of Hualin soil; 10 parts of waste porcelain powder; 6 parts of Yichun kaolin; 8 parts of Zhongxia soil; 2 parts of Zhangzhou black soil 4 parts of talc powder; 2 parts of alumina; 6 parts of quartz powder; waste porcelain powder is above 200 mesh.

Embodiment 3

[0016] Embodiment 3: the parts by weight of each raw material are: 55 parts of lithium petalite; 12 parts of Guizhou kaolin; 30 parts of Hualin soil; 5 parts of waste porcelain powder; 8 parts of Yichun kaolin; 6 parts of Zhongxia soil; 4 parts of Zhangzhou black soil 2 parts of talc powder; 4 parts of alumina; 3 parts of quartz powder; waste porcelain powder is above 200 mesh.

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PUM

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Abstract

The invention belongs to the field of ceramic materials and relates to a high-lithium heat-resisting ceramic material. The high-lithium heat-resisting ceramic material is formed by combining and sintering petalite, Waring soil, kaolin and waste ceramic powder which are mainly used as raw materials. The high-lithium heat-resisting ceramic material is characterized by comprising the following raw materials in parts by weight: 40-55 parts of petalite, 12-20 parts of Guizhou kaolin, 20-30 parts of Waring soil, 5-10 parts of waste ceramic powder, 6-8 parts of Yichun kaolin, 6-8 parts of Zhongxia soil, 2-4 parts of Zhangzhou black soil, 2-4 parts of talcum powder, 2-4 parts of alumina and 3-6 parts of quartz powder. According to the invention, the produced heat-resisting ceramic pot has good thermal stability, i.e., the produced heat-resisting ceramic pot dose not break under the quenching condition at the temperature of 520 DEG C-20 DEG C; a quality index exceeds a standard requirement of GB/T258-2002; and the thermal stability is better, thus the prepared heat-resisting ceramic pot is longer in service life, is good in cooking effect, is clean and is easy to wash.

Description

technical field [0001] The invention belongs to the field of ceramic materials and relates to a high-lithium heat-resistant ceramic material. Background technique [0002] Lithium feldspar is a framework silicate mineral with a Mohs hardness of 6-6.5, a density of 2.3-2.5g / cm3, and a brittle nature; it is mainly produced in granite pegmatites, together with spodumene, cesium garnet, and colored Tourmaline and other symbiosis can be used as ceramic raw materials. At present, in the field of heat-resistant porcelain produced in China, the production technology of using petalite feldspar instead of spodumene as the main raw material is being improved day by day, such as "petalite / cordierite composite low-expansion ceramics and its preparation method" CN200710129302 .9, using petalite, kaolin, talc, etc. as raw materials, adopting ordinary ceramic sintering methods to produce low-expansion ceramics whose main crystal phase is composite petalite / cordierite composite crystal stru...

Claims

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Application Information

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IPC IPC(8): C04B35/16
Inventor 饶国良
Owner 江西欣天利陶瓷有限公司
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