Fullerene reinforced ceramic tile

A technology of fullerene and ceramic bricks, applied in the field of refractory ceramic bricks, to achieve the effect of easy industrial production, good mechanical properties and light weight

Inactive Publication Date: 2014-11-19
朱玉华
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are still many challenges in the application of fullerenes and nanomaterials to the field of fullerene-enhanced ceramic tiles.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] A fullerene-enhanced ceramic tile, the green body consists of:

[0026] 10 parts of potassium feldspar; 10 parts of albite feldspar; 15 parts of clay; 30 parts of attapulgite; 20 parts of alumina; 30 parts of water; 1 part of fullerene; 1 part of sodium tripolyphosphate; 1 part of steel fiber;

[0027] The glaze weight part consists of:

[0028] 15 parts of feldspar, 10 parts of kaolin, 8 parts of quartz, 10 parts of burnt talc, 13 parts of limestone, 0.5 parts of iron oxide, 3 parts of diboron pentoxide, 8 parts of alumina, 5 parts of diatomaceous earth, 6 parts of magnesia, 5 parts of zirconium silicate, 1 part of titanium oxide, 1 part of zinc oxide, 1 part of terbium oxide, 1 part of samarium oxide, 1 part of lutetium oxide, and 1 part of gold nanoparticles; the size of the gold nanoparticles is 10 nm;

[0029] The fullerene-enhanced ceramic tiles are prepared by the following preparation method:

[0030] (1) After mixing the green body raw materials in proportion...

Embodiment 2

[0035] A fullerene-enhanced ceramic tile, the green body consists of:

[0036] 10 parts of potassium feldspar; 10 parts of albite feldspar; 15 parts of clay; 30 parts of attapulgite; 20 parts of alumina; 30 parts of water; 1 part of fullerene; 1 part of sodium tripolyphosphate; 1 part of steel fiber;

[0037] The glaze weight part consists of:

[0038] 15 parts of feldspar, 10 parts of kaolin, 8 parts of quartz, 10 parts of burnt talc, 13 parts of limestone, 0.5 parts of iron oxide, 3 parts of diboron pentoxide, 8 parts of alumina, 5 parts of diatomaceous earth, 6 parts of magnesia, 5 parts of zirconium silicate, 1 part of titanium oxide, 1 part of zinc oxide, 1 part of terbium oxide, 1 part of samarium oxide, 1 part of lutetium oxide, and 1 part of silver nanoparticles; the size of the silver nanoparticles is 10 nm;

[0039] The fullerene-enhanced ceramic tiles are prepared by the following preparation method:

[0040] (1) After mixing the green body raw materials in propor...

Embodiment 3

[0045] A fullerene-enhanced ceramic tile, the green body consists of:

[0046] 10 parts of potassium feldspar; 10 parts of albite feldspar; 15 parts of clay; 30 parts of attapulgite; 20 parts of alumina; 30 parts of water; 1 part of fullerene; 1 part of sodium tripolyphosphate; 1 part of steel fiber;

[0047] The glaze weight part consists of:

[0048] 15 parts of feldspar, 10 parts of kaolin, 8 parts of quartz, 10 parts of burnt talc, 13 parts of limestone, 0.5 parts of iron oxide, 3 parts of diboron pentoxide, 8 parts of alumina, 5 parts of diatomaceous earth, 6 parts of magnesia, 5 parts of zirconium silicate, 1 part of titanium oxide, 1 part of zinc oxide, 1 part of terbium oxide, 1 part of samarium oxide, 1 part of lutetium oxide, and 1 part of copper nanoparticles; the size of the copper nanoparticles is 10 nm;

[0049] The fullerene-enhanced ceramic tiles are prepared by the following preparation method:

[0050] (1) After mixing the green body raw materials in propor...

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Abstract

The invention discloses a fullerene reinforced ceramic tile. The fullerene reinforced ceramic tile with good mechanical properties is obtained by applying a glaze on the surface of a green body in a glaze spraying or sprinkling manner, wherein potassium feldspar, albite, clay, attapulgite, alumina, water, fullerene, sodium tripolyphosphate and tempered fiber serve as raw materials of the green body, feldspar, kaoline, quartz, burnt talcum, limestone, iron oxide, diboron pentoxide, alumina, kieselguhr, magnesite, zirconium silicate, titanium oxide, zinc oxide, terbium oxide, samarium oxide, lutecia and metal nano particles serve as raw materials of the glaze, and a glazed surface of the ceramic tile is attractive and elegant.

Description

[0001] technical field [0002] The invention belongs to the field of refractory ceramic bricks, in particular to a fullerene-reinforced ceramic brick. Background technique [0003] With the rapid development of my country's building ceramics industry, my country's demand for building ceramic materials is also increasing, especially in the field of fullerene-enhanced ceramic tiles. In this field, too, more and more attention is paid to the impact of new materials on fullerene-reinforced ceramic tiles. And by introducing new materials, the external appearance, internal physical and chemical properties, and health and environmental protection of fullerene-enhanced ceramic tiles can be improved. [0004] In the field of materials, fullerenes and nanomaterials have broad application prospects due to their excellent mechanical, electrical and chemical properties. The application of fullerenes to the field of ceramics is now the focus of scientists' research. The introduction of...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B33/13C04B41/86
Inventor 崔德柱
Owner 朱玉华
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