Crashing-resistant glass cup and preparing method thereof

A glass, anti-fall technology, applied in the field of glass, can solve problems such as easy to break

Inactive Publication Date: 2016-12-21
安徽金生金世电子科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the glass used in the daily field has the

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] In parts by weight, 12 parts of white arsenic, 15 parts of silicon carbide, 15 parts of sodium hypochlorite, 10 parts of sodium fatty acid, 25 parts of zinc naphthenate, 11 parts of polyvinyl acetate, 15 parts of silicon dioxide, 10 parts of sodium carbonate and Stir and mix 200 parts of talcum powder to make a powder; then heat the powder at a temperature of 1610°C for 105 minutes to make a glass melt; then use a pressing method to mechanically shape it; finally anneal at a temperature drop rate of 5°C / min for 82 minutes. Anti-shatter glass A1.

Embodiment 2

[0020] In parts by weight, 25 parts of white arsenic, 30 parts of silicon carbide, 25 parts of potassium permanganate, 14 parts of calcium chloride, 38 parts of sodium petroleum sulfonate, 20 parts of polyvinyl alcohol, 25 parts of silicon dioxide, 24 parts Stir and mix sodium carbonate and 200 parts of talcum powder to make a powder; then heat the powder at a temperature of 1710°C for 130 minutes to make a glass melt; then use a pressing method to mechanically form; finally anneal at a temperature drop rate of 15°C / min 100 minutes to make anti-shatter glass A2.

Embodiment 3

[0022] In parts by weight, 17 parts of white arsenic, 20 parts of silicon carbide, 20 parts of ozone, 12 parts of sodium chloride, 32 parts of barium petroleum sulfonate, 15 parts of perchlorethylene, 20 parts of silicon dioxide, 17 parts of sodium carbonate and Stir and mix 200 parts of talcum powder to make a powder; then heat the powder at a temperature of 1655°C for 120 minutes to make a glass melt; then use a pressing method to mechanically shape it; finally anneal at a temperature drop rate of 10°C / min for 90 minutes Anti-shatter glass A3.

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PUM

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Abstract

The invention discloses a crashing-resistant glass cup and a preparing method thereof. The preparing method includes the steps that white arsenic, silicon carbide, decolorizing agent, grinding agent, corrosion inhibitor, adhesive, silica, sodium carbonate and talcum powder are stirred and mixed to prepare a powder material; the powder material is heated to prepare into glass molten lava; the glass molten lava is mechanically formed; annealing is carried out, and the crashing-resistant glass cup is prepared; relative to 200 by weight parts of the talcum powder, the crashing-resistant glass cup is prepared from 10-25 by weight parts of the white arsenic, 10-30 by weight parts of the silicon carbide, 10-30 by weight parts of the decolorizing agent, 10-15 by weight parts of the grinding agent, 25-40 by weight parts of the corrosion inhibitor, 10-20 by weight parts of the adhesive, 10-30 by weight parts of the silicon dioxide and 10-25 by weight parts of the sodium carbonate. The crashing-resistant glass cup prepared with the method has the excellent mechanical performance.

Description

technical field [0001] The invention relates to glass, in particular to a break-proof glass cup and a preparation method thereof. Background technique [0002] Glass is made of talcum powder, soda ash, feldspar and limestone. After mixing, high-temperature melting and homogenization, glass is processed into shape, and then annealed to obtain silicate non-metallic materials. The glass forms a continuous network structure during melting, and gradually increases in viscosity during cooling and hardens to form it. The main component of ordinary glass is silicate double salt, which is an amorphous solid with irregular structure. There are also colored glass that is mixed with certain metal oxides or salts to show color, and tempered glass made by physical or chemical methods. Glass is widely used in construction, daily use, medical treatment, chemistry, electronics, instrumentation, nuclear engineering and other fields due to its excellent properties such as good perspective, l...

Claims

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Application Information

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IPC IPC(8): C03C6/06
CPCC03C1/00
Inventor 倪伟
Owner 安徽金生金世电子科技有限公司
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