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Antiskidding wear-resistant glaze and preparation method thereof

A technology of anti-slip and wear-resistant particles, which is applied in the field of ceramic glazes, can solve the problems of low friction coefficient on the surface of ceramic products, affect the safe use of products, and insufficient surface hardness, etc., to improve coherence and clarity, low gloss, high gloss degree of effect

Active Publication Date: 2017-11-28
GUANGDONG KITO CERAMICS GROUP CO LTD +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The current ceramic products (such as ceramic tiles, etc.) have insufficient surface hardness, are not wear-resistant, and are easy to scratch, which affects the appearance of the product; the friction coefficient of the surface of ceramic products is low, not slippery, easy to fall, thus affecting the safety of the product use

Method used

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preparation example Construction

[0042] In a second aspect, the present invention provides a method for preparing an anti-skid and wear-resistant glaze, comprising the following steps: (a) uniformly mixing a formula amount containing elements Si, Al, Fe, Ti, Na, K, Mg and Ca The silicate material is melted, then water-quenched and pulverized to obtain anti-slip and wear-resistant particles; (b) uniformly mixing the anti-slip and wear-resistant particles, printing paste and sodium tripolyphosphate in the formulated amount to obtain the anti-slip and wear-resistant glaze.

[0043] The preparation method of the anti-slip and wear-resistant glaze is simple and controllable, and the obtained anti-slip and wear-resistant particles have higher hardness. Therefore, the obtained anti-slip and wear-resistant glaze has better anti-slip and wear resistance, and at the same time has higher transparency And lower gloss, dispensing on the surface of ceramic products has the excellent effect of anti-skid and wear resistance a...

Embodiment 1

[0053] An anti-slip and wear-resistant glaze, which is mainly prepared from the following raw materials in parts by mass: 90 parts of anti-slip and wear-resistant particles, 90 parts of printing paste and 0.2 parts of sodium tripolyphosphate;

[0054] Among them, the anti-slip and wear-resistant particles are mainly composed of the following components by mass: SiO 2 60 parts, Al 2 o 3 20 parts, Fe 2 o 3 0.01 parts, TiO 2 0.1 parts, Na 2 O 1 part, K 2 1 part of O, 0.01 part of MgO, 0.1 part of CaO and 0.1 part of loss on ignition; the printing paste mainly consists of the following components by mass: 5 parts of sodium carboxymethylcellulose, 40 parts of ethylene glycol and 40 parts of water;

[0055] The particle gradation of the anti-slip and wear-resistant particles is: 35% of 80-120 mesh, 45% of 120-180 mesh, and the rest are below 200 mesh; the specific gravity of the anti-slip and wear-resistant glaze is 1.1g / cm 3 , with a flow rate of 120 seconds.

Embodiment 2

[0057] An anti-slip and wear-resistant glaze, which is mainly prepared from the following raw materials in parts by mass: 110 parts of anti-slip and wear-resistant particles, 110 parts of printing paste and 0.4 parts of sodium tripolyphosphate;

[0058] Among them, the anti-slip and wear-resistant particles are mainly composed of the following components by mass: SiO 2 70 parts, Al 2 o 3 30 parts, Fe 2 o 3 1 part, TiO 2 2 parts, Na 2 O 5 parts, K 210 parts of O, 1 part of MgO, 5 parts of CaO and 2 parts of loss on ignition; the printing paste mainly consists of the following components by mass: 8 parts of sodium carboxymethylcellulose, 60 parts of ethylene glycol and 60 parts of water;

[0059] The particle gradation of the anti-slip and wear-resistant particles is: 35% of 80-120 mesh, 45% of 120-180 mesh, and the rest are below 200 mesh; the specific gravity of the anti-slip and wear-resistant glaze is 1.1g / cm 3 , with a flow rate of 120 seconds.

[0060] The conte...

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Abstract

The invention relates to the field of ceramic glaze and particularly provides antiskidding wear-resistant glaze and a preparation method thereof. The antiskidding wear-resistant glaze is mainly prepared from the following raw materials in parts by mass: 90-110 parts of antiskidding wear-resistant particles, 90-110 parts of printing paste and 0.2-0.4 part of sodium tripolyphosphate, wherein the antiskidding wear-resistant particles are mainly prepared from the following ingredients in parts by mass: 60-70 parts of SiO2, 20-30 parts of Al2O3, 0.01-1 part of Fe2O3, 0.1-2 parts of TiO2, 1-5 parts of Na2O, 1-10 parts of K2O, 0.01-1 part of MgO, 0.1-5 parts of CaO and 0.1-2 parts of ignition loss. Through the reasonable matching of all the raw materials and all the ingredients of the antiskidding wear-resistant particles, the antiskidding wear-resistant glaze has a good antiskidding effect and a good wear-resisting effect.

Description

technical field [0001] The invention relates to the field of ceramic glazes, in particular to an anti-slip and wear-resistant glaze and a preparation method thereof. Background technique [0002] With the rapid development of science and technology, people's lives are changing with each passing day. At the same time, an era of pursuing fashion and showing individuality has been created, and the field of building decoration materials is no exception. With its superior performance and decorative effect, ceramic tiles are favored by more and more consumers, and are widely used in people's daily life. Ceramic antique brick is a kind of building decoration material that has become popular in recent years. It has many advantages such as the magnificence of polished brick and the rich and colorful patterns of porcelain tiles, modern or retro charm, and personalization, and is very popular in the market. Consumer favorite. [0003] With the continuous improvement of people's livin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C03C8/20C03C8/02C04B41/86
CPCC03C8/02C03C8/20C04B41/5022C04B41/86C04B41/4535
Inventor 戴永刚喻劲军钟礼丰李德英
Owner GUANGDONG KITO CERAMICS GROUP CO LTD
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