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Method for preparing high-borosilicate anti-explosion glass cover

A glass cover and high borosilicate technology, applied in the field of non-metallic materials, can solve the problems of not meeting the quality and safety requirements of explosion-proof glass, achieve the effect of improving tempering effect, broad development and application prospects, and meeting safety requirements

Active Publication Date: 2019-08-13
绥中明晖工业技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the processing of explosion-proof glass cover has always been the quality bottleneck of China's explosion-proof industry. The determination of raw material ratio, the solution of glass forming problems, and the control of melting temperature have not been solved, and cannot meet the quality and safety requirements of explosion-proof glass.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] A method for preparing a high borosilicate explosion-proof glass cover, comprising:

[0042] Raw material formula composition: by mass percentage from SiO 2 : 71.8%, B 2 o 3 : 15.0%, Na 2 O: 6.9%, Al 2 o 3 : 3.0%, Li 2 O: 0.03%, K 2 O: 0.4%, BaO: 0.3%, ZnO: 0.28%, Fe 2 o 3 : 0.02%; the balance is impurities.

[0043] The preparation steps of high borosilicate explosion-proof glass cover are as follows:

[0044] Step 1: Batching, dispensing high borosilicate glass raw materials according to the ingredients of the raw material formula;

[0045] Step 2: Melting, the prepared raw materials are put into the electric melting furnace and heated at high temperature to form a uniform glass liquid without bubbles; the melting process includes five stages, namely, silicate formation, glass formation, clarification, homogeneous melting and cooling;

[0046] ① The silicate formation stage refers to the fact that each component of the batch undergoes a series of physical ...

Embodiment 2

[0063] The method for preparing a high borosilicate explosion-proof glass cover is characterized in that it comprises:

[0064] Raw material formula composition: by mass percentage from SiO 2 : 69.5%, B 2 o 3 : 12.5%, Na 2 O: 5.5%, Al 2 o 3 : 1.5%, Li 2 O: 0.01%, K 2 O: 0.1%, BaO: 0.1%, ZnO: 0.01%, Fe 2 o 3 : 0.01%; the balance is impurities.

[0065] The preparation steps of high borosilicate explosion-proof glass cover are as follows:

[0066] Step 1: Batching, dispensing high borosilicate glass raw materials according to the ingredients of the raw material formula;

[0067] Step 2: Melting, the prepared raw materials are put into the electric melting furnace and heated at high temperature to form a uniform glass liquid without bubbles; the melting process includes five stages, namely, silicate formation, glass formation, clarification, homogeneous melting and cooling;

[0068] ① The silicate formation stage refers to the fact that each component of the batch und...

Embodiment 3

[0085] The method for preparing a high borosilicate explosion-proof glass cover is characterized in that it comprises:

[0086] Raw material formula composition: by mass percentage from SiO 2 : 69.5%, B 2 o 3 : 12.5.0%, Na 2 O: 5.5%, Al 2 o 3 : 1.5%, Li 2 O: 0.01%, K 2 O: 01%, BaO: 0.1%, ZnO: 0.01%, Fe 2 o 3 : 0.01%; the balance is impurities.

[0087] The preparation steps of high borosilicate explosion-proof glass cover are as follows:

[0088] Step 1: Batching, dispensing high borosilicate glass raw materials according to the ingredients of the raw material formula;

[0089] Step 2: Melting, the prepared raw materials are put into the electric melting furnace and heated at high temperature to form a uniform glass liquid without bubbles; the melting process includes five stages, namely, silicate formation, glass formation, clarification, homogeneous melting and cooling;

[0090] ① The silicate formation stage refers to the fact that each component of the batch un...

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PUM

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Abstract

The invention discloses a method for preparing a high-borosilicate anti-explosion glass cover. The high-borosilicate anti-explosion glass cover is prepared from, by mass, 69.5%-73.5% of SiO2, 12.5%-17.5% of B2O3, 5.5%-9.5% of Na2O, 1.5%-4.5% of Al2O3, 0.01%-0.05% of Li2O, 0.1%-0.6% of K2O, 0.1%-0.6% of BaO, 0.1%-0.5% of ZnO and 0%-0.03% of Fe2O3 in cooperation with high-borosilicate glass raw materials. An electric melting furnace with the highest use temperature of 1800 DEG C is used as founding equipment of the high-borosilicate anti-explosion glass cover, the glass raw materials are converted into glass clear liquid, and the founding process of glass is completed through the processes of silicate forming, clarification, homogenizing and cooling; the finished glass is formed through a forming process and toughening treatment in combination with planeness treatment. The method has the advantages of being capable of meeting the quality requirement and safety requirement of explosion-proof glass and has wide development and application prospects.

Description

technical field [0001] The invention relates to the technical field of non-metallic materials, in particular to a method for preparing a high borosilicate explosion-proof glass cover. Background technique [0002] At present, the processing of explosion-proof glass cover has always been the quality bottleneck of China's explosion-proof industry. The determination of raw material ratio, the solution of glass forming problems, and the control of melting temperature have not been solved, and cannot meet the quality and safety requirements of explosion-proof glass. [0003] Therefore, how to provide a method for preparing a high borosilicate explosion-proof glass cover that can meet quality requirements and safety requirements is an urgent problem to be solved by those skilled in the art. Contents of the invention [0004] In view of this, the present invention provides a method for preparing a high borosilicate explosion-proof glass cover, which has the advantage of being abl...

Claims

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Application Information

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IPC IPC(8): C03C3/093C03B27/04C03B5/02C03B5/225
CPCC03B5/02C03B5/225C03B27/04C03C3/093
Inventor 耿军景丽张东升孙雨井厚田郝志强吕云鹏白哲
Owner 绥中明晖工业技术有限公司
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