Microcrystalline jade decorative material based on graphene and preparation method thereof

A technology for microcrystalline jade and decorative materials, applied in glass pressing, glass manufacturing equipment, manufacturing tools, etc., can solve the problems of underutilization, high cost, limited improvement of mechanical properties of graphite powder, etc., to reduce defects and achieve excellent results. , the effect of improving the nucleation effect

Active Publication Date: 2018-01-12
GUANGXI XUTENG INDUSTRIAL GROUP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the solid waste is not fully utilized, the cost is high, and the mechanical properties of ...

Method used

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  • Microcrystalline jade decorative material based on graphene and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] A graphene-based microcrystalline jade decorative material is made of the following components by weight percentage:

[0037] 50 parts of stone tailings, 50 parts of silicon dioxide, 10 parts of graphene, 2 parts of silicon carbide whiskers, 5 parts of lithium feldspar, 5 parts of albite feldspar, 10 parts of alumina, 10 parts of high-temperature co-solvent, 20 parts of calcium carbonate 2 parts of zinc oxide, 2 parts of barium carbonate, 2 parts of boron oxide, 5 parts of zirconia, 5 parts of sodium carbonate, 4 parts of titanium dioxide, 5 parts of yttrium trioxide, 3 parts of antimony trioxide, 2 parts of debonding agent , 2 parts of stabilizer, 2 parts of inorganic pigment.

[0038] Wherein, the stone tailings are granite tailings; the high-temperature flux is calcined talc; and the stabilizer is yttrium oxide.

[0039] A preparation method of graphene-based microcrystalline jade decorative material, comprising the following steps:

[0040] S1. Raw material prepar...

Embodiment 2

[0045] A graphene-based microcrystalline jade decorative material is made of the following components by weight percentage:

[0046] 60 parts of stone tailings, 30 parts of silicon dioxide, 5 parts of graphene, 3 parts of silicon carbide whiskers, 8 parts of lithium feldspar, 4 parts of albite, 10 parts of high-temperature co-solvent, 20 parts of calcium carbonate, 2 parts of zinc oxide 5 parts of zirconia, 2 parts of barium carbonate, 3 parts of boron oxide, 5 parts of sodium carbonate, 6 parts of titanium dioxide, 4 parts of yttrium trioxide, 2 parts of antimony trioxide, 3 parts of debonding agent, 2 parts of stabilizer .

[0047] Wherein, the stone tailings are quartz tailings and diabase tailings. The high temperature flux is calcined talc and fluorite; the stabilizer is yttrium oxide and cerium oxide.

[0048] The preparation method is the same as in Example 1.

Embodiment 3

[0050] A graphene-based microcrystalline jade decorative material is made of the following components by weight percentage:

[0051] 40 parts of stone tailings, 60 parts of silicon dioxide, 8 parts of graphene, 3 parts of silicon carbide whiskers, 2 parts of lithium feldspar, 2 parts of albite feldspar, 10 parts of aluminum hydroxide, 10 parts of high-temperature co-solvent, calcium carbonate 30 parts, 3 parts of zirconia, 5 parts of boron oxide, 3 parts of sodium carbonate, 5 parts of titanium dioxide, 5 parts of yttrium trioxide, 3 parts of antimony trioxide, 3 parts of debonding agent, 3 parts of stabilizer, inorganic pigment 2 servings.

[0052] Wherein, the stone tailings are feldspar tailings. The high temperature flux is calcined talc and raw talc; the stabilizer is cerium oxide.

[0053] The preparation method is the same as in Example 1.

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Abstract

The invention provides a microcrystalline jade decorative material based on graphene. The material is prepared from the following components in parts by weight: 20-70 parts of stone tailings, 20-75 parts of silicon dioxide, 1-15 parts of graphene, 1-5 parts of silicon carbide whiskers, 1-10 parts of lithium feldspar, 1-10 parts of sodium feldspar, 0-20 parts of aluminum oxide or aluminum hydroxide, 1-15 parts of high-temperature cosolvent, 10-40 parts of calcium carbonate, 0-5 parts of zinc oxide, 0-10 parts of barium carbonate, 1-10 parts of boron oxide, 1-10 parts of sodium carbonate, 1-8 parts of titanium dioxide, 1-8 parts of yttria, 0-5 parts of antimonous oxide, 0.05-5 parts of dispergator, 0.05-5 parts of stabilizer and 0-5 parts of inorganic pigment. The crystalline jade produced by a sintered molding method has surface and section without pore, has a transparent or translucent jade state, and has natural jade glossy and waxy texture.

Description

technical field [0001] The invention relates to the technical field of preparation of new architectural decoration materials, in particular to a graphene-based microcrystalline jade decoration material and a preparation method thereof. Background technique [0002] With the steady and sustainable development of my country's national economy and the improvement of people's living standards, the demand for high-grade building materials is increasing, especially the demand for alternative products of non-radiation high-grade stone is more urgent. The texture of stone is fine and hard, and the color is warm and soft. It has been loved by people since ancient times. However, natural stone resources are limited and cannot meet the growing needs of people. The mining process has caused great damage to the environment. [0003] Microcrystalline jade is a new type of green and environmentally friendly high-grade building decoration material made of natural inorganic raw materials and...

Claims

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Application Information

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IPC IPC(8): C03C10/00C03C6/02C03B11/00C03B32/02
Inventor 黄聿新黄昭烨
Owner GUANGXI XUTENG INDUSTRIAL GROUP CO LTD
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