Wear-resistant antiskid glaze and preparation method thereof as well as preparation method of wear-resistant antiskid tile

An anti-slip, brick body technology, applied in the field of wear-resistant anti-slip glaze and its preparation, and the preparation of wear-resistant anti-slip bricks, can solve the hidden dangers of safety, the safety friction coefficient of polished tiles, glazed tiles and polished crystal tiles is not up to To the requirements and other issues, to achieve a good effect and a wide range of applications

Active Publication Date: 2014-02-12
GUANGDONG SANSHUI TANDH GLAZE CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to provide a wear-resistant anti-slip glaze and its preparation method and a preparation method of wear-resistant anti-slip tiles, aiming ...

Method used

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  • Wear-resistant antiskid glaze and preparation method thereof as well as preparation method of wear-resistant antiskid tile
  • Wear-resistant antiskid glaze and preparation method thereof as well as preparation method of wear-resistant antiskid tile
  • Wear-resistant antiskid glaze and preparation method thereof as well as preparation method of wear-resistant antiskid tile

Examples

Experimental program
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Effect test

preparation example Construction

[0094] A preparation method of the wear-resistant anti-slip glaze as described above, specifically comprising the following steps:

[0095] Step A00: Prepare frit glaze powder: prepare the raw materials according to the composition required by the frit and their weight percentages and mix them evenly before melting. The melting temperature is 1500°C~1600°C, and the melting time is 1.5~8 hours, then rapidly quenched to room temperature to become fritted glaze powder;

[0096] Step B00: Prepare printing glaze powder: wet-grind the fritted glaze powder with a ball mill until it can pass through a standard sieve with a mesh size of 200 or more to form a slurry, dry the slurry and then powder it to obtain a printing glaze powder;

[0097] Step C00: Al with corundum structure 2 o 3 Raw materials are washed and dried;

[0098] Step D00: Mixed packaging: mix the prepared printing glaze powder with Al with corundum structure 2 o 3 The raw materials are evenly mixed according to th...

Embodiment 1

[0108] Example 1: Applied to small floor tile series

[0109] The ingredients and weight percentages of the frit glaze powder in the wear-resistant anti-slip glaze of the small floor tile series are: Na2O: 1.0%, K 2 O: 5.0%, MgO: 2.0%, CaO: 8.0%, ZnO: 9.5%, BaO: 10.0%, Al 2 o 3 : 10.0%, SiO 2 : 54.5%.

[0110] The oxide components and weight percentages included in the above-mentioned frit glaze powder can be provided by the following raw materials according to the ratio. The specific raw material formula and weight percentages are: barium carbonate: 11.5%, potassium feldspar: 34.0%, potassium carbonate: 1.5% , silica sand: 19.1%, limestone: 5.0%, dolomite: 8.4%, kaolin: 7.7%, zinc oxide powder: 8.4%, wollastonite: 4.4%.

[0111] Prepare the above-mentioned raw materials according to the formula composition required in the oxide components included in the frit glaze powder and mix them evenly before melting. The melting temperature is 1560°C, hold the temperature for 2 hou...

Embodiment 2

[0113] Example 2: Application in antique brick series

[0114] The composition and weight percentage of the frit glaze powder in the antique brick series wear-resistant anti-skid glaze are: Na 2 O: 1.5%, K 2 O: 6.0%, MgO: 2.4%, CaO: 3.5%, ZnO: 4.4%, BaO: 22.4%, Al 2 o 3 : 10.5%, SiO 2 : 49.3%.

[0115] The oxide components and weight percentages included in the above-mentioned frit glaze powder can be provided by the following raw materials according to the ratio. The specific raw material formula and weight percentages are: barium carbonate: 24.9%, potassium feldspar: 30.0%, potassium carbonate: 3.2% , silica sand: 17.2%, sodium carbonate: 0.8%, dolomite: 9.8%, kaolin: 10.3%, zinc oxide powder: 3.8%.

[0116] Prepare the above-mentioned raw materials according to the formula composition required in the oxide components included in the frit glaze powder and mix them evenly before melting. The melting temperature is 1560°C, hold the temperature for 2 hours, and pour it int...

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Abstract

The invention discloses a wear-resistant antiskid glaze and a preparation method thereof as well as a preparation method of a wear-resistant antiskid tile. The wear-resistant antiskid glaze comprises fused block glaze powder and Al2O3 with a corundum structure, and specifically comprises the following components in percentage by weight: 25-40% of SiO2, 40-60% of Al2O3, 1-5% of K2O+Na2O, 1-10% of CaO, 1-5% of MgO, 1-15% of BaO and 1-10% of ZnO. The wear-resistant antiskid glaze disclosed by the invention is simple to operate and the effect of the original decorative patterns is not influenced; by adopting the glaze produced by the preparation method to form a glaze layer on the surface of a ceramic tile body, after high-temperature firing, the tile has a good antifouling wear-resistant antiskid effect and a wide application range; wear-resistant antifouling antiskid glazes with different bases can be selected according to the firing temperature (1100-1230 DEG C) of ceramic tiles, and are matched with an original artwork design to produce wear-resistant antifouling antiskid tiles meeting requirements.

Description

technical field [0001] The invention relates to a wear-resistant anti-slip ceramic tile glaze, in particular to a wear-resistant anti-slip glaze, a preparation method thereof, and a preparation method of an wear-resistant anti-slip tile. Background technique [0002] Due to the continuous improvement of architectural decoration grades, currently popular polished tiles, glazed tiles and polished crystal tiles are widely used on the ground of public buildings (hotels, office buildings, stations, stores, apartments...), while beautifying the vision, they ignore The safety hazard of slipping and falling on the ground has been solved. Especially when the ground is wet, it is easy to slip and fall. [0003] At present, the maximum friction coefficient of polished tiles can only reach 0.4, and the minimum friction coefficient is only 0.2. However, the minimum friction coefficient required by domestic and foreign safety standards must reach 0.5 to be considered safe. The safety co...

Claims

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Application Information

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IPC IPC(8): C04B41/86
Inventor 蔡瑞年施家钰李家铎郑元耀
Owner GUANGDONG SANSHUI TANDH GLAZE CO LTD
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