A kind of self-enhancing ceramic cold glaze and preparation method thereof

A technology for ceramics and raw materials, applied in the field of self-enhancing ceramic cold glaze and its preparation, can solve the problems of complicated process and increased cost of raw materials, and achieve the effects of simple process, environmental protection, and improvement of the mechanical properties of the glaze layer.

Active Publication Date: 2018-06-08
四会市石易金陶瓷原料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the addition of reinforcing materials can improve the mechanical properties of geopolymers to varying degrees, the addition of reinforcing materials will lead to an increase in the cost of raw materials and complicate the process.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A kind of self-reinforcing ceramic cold glaze, its preparation method comprises the steps:

[0029] (1) In parts by weight, prepare 0.1 parts of aluminum tripolyphosphate, 1 part of 250-mesh metakaolin, 1 part of 8000-mesh silicon dioxide, 1 part of 4000-mesh zinc oxide, and liquid water glass (modulus 3.1-3.4) 1 part, 0.5 part of sodium hydroxide, 1 part of water;

[0030] (2) blending and stirring the raw materials prepared in step (1) for 1 hour to form a mixed slurry;

[0031] (3) Brushing or spraying the mixed slurry onto the ceramic body, placing it in a curing box at 40° C. for 5 days to dry, that is, forming a ceramic cold glaze on the surface of the ceramic body.

[0032] Compressive strength test:

[0033] The cold glaze on the surface of the ceramic body prepared in this example combines well with the porcelain body after glazing. The glazed surface of the porcelain piece is smooth, the color is white and gray and clear, and the surface has no defects. The ...

Embodiment 2

[0035] A kind of self-reinforcing ceramic cold glaze, its preparation method comprises the steps:

[0036] (1) In parts by weight, prepare 2 parts of sodium tripolyphosphate, 4 parts of 8000 mesh metakaolin, 8 parts of 2000 mesh silicon dioxide, 8 parts of 5000 mesh zinc oxide, liquid-1 water glass (3.5-3.7) 3 parts, 2 parts potassium hydroxide, 10 parts water;

[0037] (2) blending and stirring the raw materials prepared in step (1) for 2 hours to form a mixed slurry;

[0038] (3) Brush or spray the mixed slurry onto the ceramic body, place it at room temperature for 4 days to dry, that is, form a ceramic cold glaze on the surface of the ceramic body.

[0039] Compressive strength test:

[0040] The cold glaze on the surface of the ceramic body prepared in this example combines well with the porcelain body after glazing. The glazed surface of the porcelain piece is smooth, the color is white and gray and clear, and the surface has no defects. The compressive strength of the...

Embodiment 3

[0042] A kind of self-reinforcing ceramic cold glaze, its preparation method comprises the steps:

[0043] (1) In parts by weight, prepare 1 part of raw material aluminum dihydrogen phosphate, 3 parts of 2000 mesh metakaolin, 4 parts of 8000 mesh silicon dioxide, 4 parts of 5000 mesh zinc oxide, liquid-3 water glass (2.6-2.9) 2 parts, 1 part sodium carbonate, 5 parts water;

[0044] (2) blending and stirring the raw materials prepared in step (1) for 1.5 hours to form a mixed slurry;

[0045] (3) Brush or spray the mixed slurry onto the ceramic body, and place it in a curing box at 40° C. for 2 days to form a ceramic cold glaze on the surface of the ceramic body.

[0046] Compressive strength test:

[0047] The cold glaze on the surface of the ceramic body prepared in this embodiment combines well with the porcelain body after glazing. The glazed surface of the porcelain piece is smooth, the color is white and gray and clear, and the surface has no defects. The compressive s...

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Abstract

The invention provides a self-enhanced ceramic cold glaze and a preparation method thereof. The cold glaze is prepared by the following steps: preparing the following raw materials: phosphate / polyphosphates, meta-kaolin, silicon dioxide, zinc oxide, sodium silicate, an alkaline compound, and water, mixing raw materials according to a certain ratio, evenly stirring the mixture by a mechanical stirrer to form slurry, evenly painting the slurry on a blank, which needs to be decorated, and drying the blank at a room temperature or low temperature (40 to 100 DEG C). The glaze, which is obtained by the provided formula and preparation method, can be used to repair the glaze of blanks made of various porcelains. The glaze and the blank interface are well combined together. The glaze has excellent mechanical properties, the compressive strength can reach 150 MPa or more, the surface of the glaze is smooth, the color is white-grey and transparent, no defect exist on the surface, and the market needs can be met. Compared with the conventional glaze production technology, the provided preparation method has the advantages of simple technology, energy saving, environment-friendliness, low cost, and easy operation.

Description

technical field [0001] The invention relates to a self-reinforced ceramic cold glaze and a preparation method thereof, belonging to the field of inorganic non-metallic gelling materials. Background technique [0002] "Glaze" is a glossy glass-like thin layer covering the surface of the ceramic body. Its function is not only decorative, but also can improve the physical and chemical properties of the body surface, increase the hardness of the product, and increase its thermal stability. Based on the role of glaze on ceramic products, the importance of glaze in the ceramic industry is constantly being highlighted and enhanced, which directly affects the quality and cost of ceramic products. [0003] The traditional glaze technology needs to be fired at high temperature (~1350°C) and the firing period is long (14-16 hours). Although the glaze layer prepared by this method has strong mechanical properties and high gloss, the technical The harsh conditions and high energy consum...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B41/86
CPCC04B41/5077C04B41/86C04B2201/50C04B41/5049C04B41/5015C04B41/5035C04B41/455
Inventor 杜飞鹏谢岁岁张芳李晶晶胡双峰张云飞
Owner 四会市石易金陶瓷原料有限公司
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