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Glass glaze and manufacturing technology thereof

A technology of glass glaze and content, which is applied in the field of glass glaze with relief effect and its manufacturing process, which can solve the problems that the appearance appreciation has not been substantially improved, glass products are easy to break, and the processing process is complicated, etc., to improve the appearance Ornamental, guarantee the appearance of ornamental, improve the effect of sintering efficiency

Inactive Publication Date: 2008-05-07
冯庆铭
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the processing procedure of this method is more complicated, the number of sintering is more, and because of the need for secondary sintering, the glass product is easy to break, and the success rate is not high.
Therefore, the appearance and appreciation of glass products have not been able to obtain an essential leap.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] The glass glaze of the present invention is mainly composed of the following components: quartz powder, boric acid, lead red and expansion stabilizer, each composition is calculated as follows by weight percentage: quartz powder 10%, boric acid 16%, lead lead 60%, expansion stabilizer 11% , in which the porcelain powder in the expansion stabilizer is calculated as 8% by total weight percentage, the aluminum oxide is calculated as 1% by total weight percentage, and the zirconium dioxide is calculated as 2% by total weight percentage. In addition, other additives are added into the glass glaze, and its composition is as follows: sodium carbonate and zinc oxide, and each composition is calculated as follows by weight percentage: 2% of sodium carbonate and 1% of zinc oxide. The manufacturing process of glass glaze is as follows:

[0039] (a) Place the above formula materials in the agitator according to the weight percentage, and fully mix;

[0040] (b) Place the mixture i...

Embodiment 2

[0045] The glass glaze of the present invention is mainly composed of the following components: quartz powder, boric acid, lead red and expansion stabilizer, each composition is calculated as follows by weight percentage: quartz powder 16%, boric acid 20%, lead lead 48%, expansion stabilizer 14% , wherein in the expansion stabilizer, the porcelain powder is calculated as 11% by total weight percentage, the aluminum oxide is calculated as 1% by total weight percentage, and the zirconium dioxide is calculated as 2% by total weight percentage. In addition, other additives are added in the glass glaze, and its composition and percentage by weight are as follows: sodium carbonate 2%. The manufacturing process of glass glaze is as follows:

[0046] (a) Place the above formula materials in the agitator according to the weight percentage, and fully mix;

[0047] (b) Place the mixture in a furnace and melt the mixture into a viscous shape at 1000°C;

[0048] (c) cooling the molten mi...

Embodiment 3

[0052] The glass glaze of the present invention is mainly composed of the following components: quartz powder, boric acid, red lead and expansion stabilizer, each composition is calculated as follows by weight percentage: 12% of quartz powder, 12% of boric acid, 63% of lead red, 12% of expansion stabilizer , in which the porcelain powder in the expansion stabilizer is calculated as 9% by total weight percentage, the aluminum oxide is calculated as 1% by total weight percentage, and the zirconium dioxide is calculated as 2% by total weight percentage. In addition, other additives are added in the glass glaze, and its composition and percentage by weight are as follows: 1% sodium carbonate. The manufacturing process of glass glaze is as follows:

[0053] (a) Place the above formula materials in the agitator according to the weight percentage, and fully mix;

[0054] (b) Place the mixture in a furnace and melt the mixture into a viscous shape at 1100°C;

[0055] (c) cooling the...

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PUM

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Abstract

The invention relates to glass glaze and the manufacturing process thereof. The invention is characterized in that the ingredient of the glass glaze mainly comprises by weight percentage: quartz powder is 5 to 18 percent, boric acid is 9 to 23 percent, red lead is 40 to 65 percent, and expansion stabilizing agent is 8 to 17 percent. The manufacturing process is realized by that: (a) the materials are mixed fully according to the weight percentage; (b) the mixture is fused to be thick and sticky at the temperature of 1000 to 1200 DEG C; (c) the fused mixture is cooled to be the glass base glaze block with original color; (d) the glaze block is crashed into powder to be fully mixed with paint to form colored glaze. The glass glaze and the manufacturing process thereof of the invention provide the glass glaze which keeps the designs and characters on the surface of a glass product having embossing effect and high ornamental value.

Description

technical field [0001] The invention relates to a glass glaze and a manufacturing process thereof, in particular to a glass glaze with a relief effect and a manufacturing process thereof. Background technique [0002] At present, glass products are favored by consumers because of their advantages such as high transparency, smooth appearance, high processability and recyclability. However, with the development of the economy, people have higher and higher requirements for the ornamental appearance of glass products. In existing glass products, elements with ornamental value such as patterns, characters and colors are usually added, and the processing methods mainly include sandblasting, corrosion, artistic engraving, color decoration and diffusion coloring. The processing methods include colored glaze, printing, decals, shifting, tracing, spraying, ice and baking. At present, the method of adding patterns, characters and colors on the glass is generally printing and drawing...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C03C8/02
Inventor 冯庆铭
Owner 冯庆铭
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