Ceramic floor tile and preparation method thereof

A technology of floor tiles and ceramics, which is applied in the field of ceramic floor tiles and its preparation, can solve the problems of high manufacturing cost, poor wear resistance, and low stability, and achieve the effects of long service life, good wear resistance, and good stability

Inactive Publication Date: 2017-01-04
关宝强
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] At present, the existing ceramic floor tiles have poor wear resist

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] A ceramic floor tile made from the following materials: glass beads, hydroxyethylmethylcellulose, fly ash, bentonite, ferrochrome slag, Bayer process red mud, phosphogypsum, clay, mineralizers, alumina particles , quartz, titanium oxide, silicon oxide, yttrium oxide, potassium albite feldspar, zirconium silicate, barium carbonate, barium metaborate, barium sulfate, pyrophyllite, tetraethylene glycol dimethyl ether and methyl vinyl dichlorosilane , the raw material is composed of the following proportions by weight: 30 parts of glass microspheres, 12 parts of hydroxyethyl methylcellulose, 8 parts of fly ash, 6 parts of bentonite, 1 part of ferrochrome slag, 5 parts of Bayer process red mud 7 parts of phosphogypsum, 4 parts of clay, 15 parts of mineralizer, 7 parts of alumina particles, 3 parts of quartz, 5 parts of titanium oxide, 2 parts of silicon oxide, 1 part of yttrium oxide, 4 parts of potassium albite feldspar, silicon 3 parts of zirconium acid, 12 parts of barium...

Embodiment 2

[0034]A ceramic floor tile made from the following materials: glass beads, hydroxyethylmethylcellulose, fly ash, bentonite, ferrochrome slag, Bayer process red mud, phosphogypsum, clay, mineralizers, alumina particles , quartz, titanium oxide, silicon oxide, yttrium oxide, potassium albite feldspar, zirconium silicate, barium carbonate, barium metaborate, barium sulfate, pyrophyllite, tetraethylene glycol dimethyl ether and methyl vinyl dichlorosilane , the raw material is composed of the following proportions by weight: 32.5 parts of glass microspheres, 13.5 parts of hydroxyethyl methylcellulose, 9 parts of fly ash, 8 parts of bentonite, 2 parts of ferrochrome slag, 6.5 parts of Bayer process red mud 8 parts of phosphogypsum, 5.5 parts of clay, 17.5 parts of mineralizer, 8 parts of alumina particles, 4 parts of quartz, 7 parts of titanium oxide, 3 parts of silicon oxide, 1.5 parts of yttrium oxide, 4.5 parts of potassium albite feldspar, silicon 3.5 parts of zirconium acid, 1...

Embodiment 3

[0043] A ceramic floor tile made from the following materials: glass beads, hydroxyethylmethylcellulose, fly ash, bentonite, ferrochrome slag, Bayer process red mud, phosphogypsum, clay, mineralizers, alumina particles , quartz, titanium oxide, silicon oxide, yttrium oxide, potassium albite feldspar, zirconium silicate, barium carbonate, barium metaborate, barium sulfate, pyrophyllite, tetraethylene glycol dimethyl ether and methyl vinyl dichlorosilane , the raw material is composed of the following proportions by weight: 35 parts of glass microspheres, 15 parts of hydroxyethyl methylcellulose, 10 parts of fly ash, 10 parts of bentonite, 3 parts of ferrochrome slag, 8 parts of Bayer process red mud 9 parts of phosphogypsum, 7 parts of clay, 20 parts of mineralizer, 9 parts of alumina particles, 5 parts of quartz, 9 parts of titanium oxide, 4 parts of silicon oxide, 2 parts of yttrium oxide, 5 parts of potassium sodium feldspar, silicon 4 parts of zirconium acid, 14 parts of ba...

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Abstract

The invention discloses a ceramic floor tile which is prepared from glass microballoon, hydroxyethyl methyl cellulose, fly ash, bentonite, ferrochromium slag, Bayer-process red mud, phosphogypsum, clay, a mineralizer, aluminum oxide particles, quartz, titanium oxide, silicon oxide, yttrium oxide, kalialbite, zirconium silicate, barium carbonate, barium metaborate, barium sulfate, pyrophyllite, tetraglycol dimethyl ether and methylvinyldichlorosilane. The ceramic floor tile has the advantages of high structural strength, favorable wear-resistant effect, low manufacturing cost and long service life.

Description

technical field [0001] The invention relates to a ceramic floor tile and a preparation method thereof. Background technique [0002] Ceramic bricks are plate or block ceramic products produced from clay and other inorganic non-metallic raw materials through molding and sintering processes, and are used to decorate and protect the walls and floors of buildings and structures. It is usually shaped by dry pressing, extrusion or other molding methods at room temperature, then dried and fired at a certain temperature. [0003] Ceramic tiles can be divided into five categories according to the water absorption rate, namely porcelain tiles, stoneware tiles, fine stoneware bricks, stoneware tiles, and ceramic tiles. Those with a water absorption rate greater than 10% are called ceramic tiles, which are generally called interior wall tiles on the market. They are widely used in the wall decoration of residential buildings, hotels, restaurants, public places and other buildings. They...

Claims

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Application Information

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IPC IPC(8): C04B33/132C04B33/135C04B33/16C04B33/13C04B33/138
CPCC04B33/1305C04B33/131C04B33/132C04B33/1322C04B33/1352C04B33/138C04B33/16C04B2235/3217C04B2235/3225C04B2235/3232C04B2235/3427C04B2235/3472C04B2235/36C04B2235/44C04B2235/442C04B2235/448C04B2235/483C04B2235/96Y02P40/60
Inventor 关宝强
Owner 关宝强
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