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Glass ceramic-glomerocryst micro powder-ceramic composite brick and production method thereof

A technology of polycrystalline micropowder and glass-ceramics, which is applied in the field of building materials, can solve the problems of monotonous textures, patterns, and color varieties, and achieve the effects of improving the adaptability of blank glaze, wear-resistant and dirt-resistant properties, and low radioactivity

Active Publication Date: 2015-04-22
佛山市三水宏源陶瓷企业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Glass-ceramic composite bricks have developed from the original pure-color varieties to high-simulation granite natural stone varieties. The texture, pattern and color varieties are still relatively monotonous. There is still a certain distance to achieve the verisimilitude of imitating natural stone for printing screen dots

Method used

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  • Glass ceramic-glomerocryst micro powder-ceramic composite brick and production method thereof
  • Glass ceramic-glomerocryst micro powder-ceramic composite brick and production method thereof
  • Glass ceramic-glomerocryst micro powder-ceramic composite brick and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] Configure the ceramic matrix, polycrystalline micropowder and glass-ceramic frit in the following parts by weight

[0023] Ceramic substrate: silicon oxide SiO 2 67 parts, aluminum oxide Al 2 o 3 20 parts, iron oxide Fe 2 o 3 0.7 parts, a mixture of sodium oxide and potassium oxide 10.9 parts, titanium oxide TiO 2 0.3 parts, 0.1 parts of calcium oxide CaO, 1 part of magnesium oxide MgO;

[0024] Polycrystalline micropowder: silicon oxide SiO 2 68.7 parts, aluminum oxide Al 2 o 3 17.7 parts, iron oxide Fe 2 o 3 0.5 parts, sodium oxide and potassium oxide mixture 11.5 parts, titanium oxide TiO 2 03 parts, calcium oxide CaO 0.3 parts, magnesium oxide MgO 1 part.

[0025] Glass-ceramic frit: silicon oxide SiO 2 60 parts, aluminum oxide Al 2 o 3 20 parts, iron oxide Fe 2 o 3 0.1 part, mixture of sodium oxide and potassium oxide R 2 O(Na 2 O+K 2 O) 4 parts, titanium oxide TiO 2 0.1 parts, calcium oxide CaO 4.2 parts, magnesium oxide MgO 3.6 par...

Embodiment 2

[0031] Different from Example 1, the ceramic matrix, polycrystalline micropowder and glass-ceramic frit are configured in the following parts by weight

[0032] Ceramic substrate: silicon oxide SiO 2 67.5 parts, aluminum oxide Al 2 o 3 19 parts, iron oxide Fe 2 o 3 0.6 parts, sodium oxide and potassium oxide mixture 10.1 parts, titanium oxide TiO 2 0.8 parts, calcium oxide CaO 0.6 parts, magnesium oxide MgO 1.5 parts;

[0033] Polycrystalline micropowder; silicon oxide SiO 2 70 parts, aluminum oxide Al 2 o 3 17 parts, iron oxide Fe 2 o 3 0.1 part, 12 parts of sodium oxide and potassium oxide mixture, titanium oxide TiO 2 0.1 part, calcium oxide CaO 0.1 part, magnesium oxide MgO 0.7 part.

[0034] Glass-ceramic frit: silicon oxide SiO 2 50 parts, aluminum oxide Al 2 o 3 15 parts, iron oxide Fe 2 o 3 0.3 parts, mixture of sodium oxide and potassium oxide R 2 O(Na 2 O+K 2 O) 3 parts, titanium oxide TiO 2 0.3 parts, calcium oxide CaO 10 parts, magne...

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Abstract

The invention discloses a glass ceramic-glomerocryst micro powder-ceramic composite brick which comprises a glass ceramic surface layer and a ceramic matrix layer. A glomerocryst micro powder layer is also arranged between the glass ceramic surface layer and the ceramic matrix layer. With the adoption of a decorative process of adding the glomerocryst micro powder layer between a green brick and the glass ceramic surface layer and the problem of screen screentoning of an in-glaze decoration brick face can be solved; by the regulation of the proportioning of the glomerocryst micro powder layer, the performance of the glomerocryst micro powder layer can be stable and beneficial for improving the glaze fit as a transition layer between the green brick and glass ceramic; by the transformation of cloth system equipment of a press, the thickness of the glomerocryst micro powder layer can be controlled, so that the glomerocryst micro powder layer becomes a carrier capable of perfectly showing design patterns; and the product is the glass ceramic-ceramic composite brick of which the physicochemical properties of acid and alkali resistance, low radioactivity, low water adsorption, high strength, wear resistance, stain resistance and the like are superior to those of stones and the decorative effect can be comparable to that of the stones.

Description

technical field [0001] The invention relates to the field of building materials, in particular to a glass-ceramic-polycrystalline micropowder-ceramic composite brick and a production method thereof. Background technique [0002] Microceramic glass-ceramic composite brick is a building decoration facing material composed of glass-ceramic and ceramic matrix. It has been started for more than ten years. High physical and chemical properties; and decorative styles with fine texture and rich colors make the market prospect continue to be optimistic. According to incomplete statistics, the current domestic market demand for glass-ceramic composite bricks is more than 13 million square meters, and it is increasing year by year, indicating that this product has a relatively broad market. [0003] Chinese patent CN200710199034.8 discloses a glass-ceramic-ceramic composite plate and its production method. The glass-ceramic-ceramic composite board is composed of a glass-ceramic surfa...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B18/00E04F13/077C03C10/14C04B35/14
Inventor 梁桐伟
Owner 佛山市三水宏源陶瓷企业有限公司