Environment-friendly energy-saving glass ceramic and preparation method thereof

A glass ceramic, environmental protection and energy saving technology, applied in the field of glass ceramics, can solve problems such as large space and environmental pollution, and achieve the effects of alleviating pollution, reducing production costs, and good corrosion resistance

Active Publication Date: 2016-08-10
平邑经济开发区投资发展有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The stacking of cinders not only takes up a l

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0015] Example 1, an environmentally friendly and energy-saving glass ceramic, made of the following raw materials by weight (kg): cullet 20, shell powder 6, cinder 5, cerium silica powder 2, ceramsite powder 4, strontium oxide 2, calcium phosphate 1, Coke powder 3, graphene 6, mica powder 7, ammonium polyacrylate 1, silver oxide 3, zinc oxide 4, saltpeter powder 2, sodium fluorosilicate 1, gypsum fiber 3.

[0016] An environment-friendly and energy-saving glass ceramic preparation method, including the following steps:

[0017] (1) Weigh each raw material by weight;

[0018] (2) The weighed raw materials are ball milled with an agate ball milling tank, the ball milling medium is absolute ethanol, and then dried and sieved;

[0019] (3) Put the ball-milled raw materials into the inversion mixer, mix for 7 hours, and then melt the uniformly mixed raw materials at a high temperature of 1450°C for 3 hours;

[0020] (4) Quickly pour the uniformly molten glass liquid in step (3) into a meta...

Example Embodiment

[0022] Example 2, an environmentally friendly and energy-saving glass ceramic made of the following weight (kg) raw materials: cullet 22, shell powder 7, cinder 6, cerium silica powder 3, ceramsite powder 5, strontium oxide 3, calcium phosphate 2, Coke powder 4, graphene 7, mica powder 8, ammonium polyacrylate 2, silver oxide 4, zinc oxide 5, saltpeter powder 3, sodium fluorosilicate 2, gypsum fiber 4.

[0023] An environment-friendly and energy-saving glass ceramic preparation method includes the following steps:

[0024] (1) Weigh each raw material by weight;

[0025] (2) The weighed raw materials are ball milled with an agate ball milling tank, the ball milling medium is absolute ethanol, and then dried and sieved;

[0026] (3) Put the ball-milled raw materials into the inversion mixer, mix for 8 hours, and then melt the uniformly mixed raw materials at a high temperature of 1480°C for 3.5 hours;

[0027] (4) Quickly pour the uniformly molten glass liquid in step (3) into a 500°C pr...

Example Embodiment

[0029] Example 3, an environmentally friendly and energy-saving glass ceramic made of the following weight (kg) raw materials: cullet 25, shell powder 8, cinder 7, cerium silica powder 4, ceramsite powder 6, strontium oxide 4, calcium phosphate 3. Coke powder 5, graphene 8, mica powder 9, ammonium polyacrylate 3, silver oxide 5, zinc oxide 6, saltpeter powder 4, sodium fluorosilicate 3, gypsum fiber 5.

[0030] An environment-friendly and energy-saving glass ceramic preparation method includes the following steps:

[0031] (1) Weigh each raw material by weight;

[0032] (2) The weighed raw materials are ball milled with an agate ball milling tank, the ball milling medium is absolute ethanol, and then dried and sieved;

[0033] (3) Put the ball-milled raw materials into the inversion mixer, mix for 9 hours, and then melt the uniformly mixed raw materials at a high temperature of 1510°C for 4 hours;

[0034] (4) Quickly pour the uniformly molten glass liquid in step (3) into a 520°C preh...

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Abstract

The invention discloses an environment-friendly energy-saving glass ceramic and a preparation method thereof and relates to the technical field of glass ceramic. The glass ceramic is mainly composed of: broken glass, shell powder, coal slag, cerite powder, ceramsite powder, strontium oxide, calcium phosphate, coke powder, graphene, mica powder, ammonium polyacrylate, silver oxide, zinc oxide, saltpeter, sodium fluosilicate and gypsum fibers. The glass ceramic has excellent corrosion resistance, anti-heat-impact property, wear resistance and anti-heat-aging property. The glass ceramic is mainly prepared from the broken glass, the shell powder, the coal slag, so that environment pollution due to the solid wastes is greatly alleviated and production cost of the glass ceramic is reduced. The graphene and the like raw materials increase mechanical performance and prolong service life of the glass ceramic.

Description

technical field [0001] The invention relates to the technical field of glass ceramics, in particular to an environment-friendly and energy-saving glass ceramic and a preparation method thereof. Background technique [0002] Glass-ceramic, also known as glass-ceramic, is a composite material that combines crystal phase and glass obtained through high-temperature melting, molding and heat treatment in the traditional manufacturing method of glass-ceramic. Glass ceramics have high mechanical strength, adjustable thermal expansion, thermal shock resistance, chemical corrosion resistance, low dielectric loss and other superior properties. In the field of biomedicine, bioceramics are often used in the manufacture of dental materials, artificial bone joints and bone cement fillers. However, the existing glass-ceramics are expensive to produce and have unsatisfactory strength. [0003] Coal slag, a kind of industrial solid waste, is the waste slag discharged from thermal power pla...

Claims

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Application Information

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IPC IPC(8): C03C10/00
CPCC03C10/0063
Inventor 陈淳
Owner 平邑经济开发区投资发展有限公司
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