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Microlite thick polished glaze, preparation method thereof and using method of microlite thick polished glaze in ceramic tiles

A technology of thick polished glaze and microcrystalline stone, which is applied in the field of ceramic tile products, can solve the problems of complex preparation and use process and increase project cost, and achieve the effects of bright color, improved production efficiency and improved wear resistance

Pending Publication Date: 2018-12-25
FOSHAN TAOYING NEW MATERIAL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, the color strength, transparency and antifouling effect of the existing microcrystalline stone materials need to be improved, and the preparation and use processes are relatively complicated, which increases the engineering cost

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] A microcrystalline thick glaze, comprising the following raw materials: 20g of potassium feldspar, 20g of albite, 5g of zinc oxide, 1g of calcined talc, 1g of dolomite, 1g of wollastonite, 5g of kaolin, 1g of quartz, 1g of corundum and 1g of frit .

[0030] A preparation method of microcrystalline thick polished glaze, comprising the steps of:

[0031] Step 1, preparation, prepare materials and ingredients according to the formula;

[0032] Step 2, stirring, put the raw materials into the mixer in the order of albite and potassium feldspar, kaolin, zinc oxide, frit, wollastonite and dolomite, calcined talc, corundum and quartz, and mix them. It is explained that the feeding of raw materials is step-by-step feeding, first pour part of the raw materials into the mixer and then pour all the rest;

[0033] Step 3, sampling, taking a small amount of mixed material for testing, and continuing to stir and mix unqualified ones;

[0034] Step 4, firing, putting the qualified ...

Embodiment 2

[0045] A thick glazed microcrystalline stone, comprising the following raw materials: 22g of potassium feldspar, 22g of albite, 6g of zinc oxide, 3g of calcined talc, 2g of dolomite, 2g of wollastonite, 6g of kaolin, 3g of quartz, 2g of corundum and 3g of frit .

[0046] A preparation method of microcrystalline thick polished glaze, comprising the steps of:

[0047] Step 1, preparation, prepare materials and ingredients according to the formula;

[0048] Step 2, stirring, put the raw materials into the mixer in the order of albite and potassium feldspar, kaolin, zinc oxide, frit, wollastonite and dolomite, calcined talc, corundum and quartz, and mix them. It is explained that the feeding of raw materials is step-by-step feeding, first pour part of the raw materials into the mixer and then pour all the rest;

[0049] Step 3, sampling, taking a small amount of mixed material for testing, and continuing to stir and mix unqualified ones;

[0050] Step 4, firing, putting the qua...

Embodiment 3

[0061] A thick glazed microcrystalline stone, comprising the following raw materials: 25g of potassium feldspar, 25g of albite feldspar, 8g of zinc oxide, 6g of calcined talc, 3g of dolomite, 3g of wollastonite, 8g of kaolin, 6g of quartz, 3g of corundum and 6g of frit .

[0062] A preparation method of microcrystalline thick polished glaze, comprising the steps of:

[0063] Step 1, preparation, prepare materials and ingredients according to the formula;

[0064] Step 2, stirring, put the raw materials into the mixer in the order of albite and potassium feldspar, kaolin, zinc oxide, frit, wollastonite and dolomite, calcined talc, corundum and quartz, and mix them. It is explained that the feeding of raw materials is step-by-step feeding, first pour part of the raw materials into the mixer and then pour all the rest;

[0065] Step 3, sampling, taking a small amount of mixed material for testing, and continuing to stir and mix unqualified ones;

[0066] Step 4, firing, putting ...

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PUM

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Abstract

The invention discloses microlite thick polished glaze. The microlite thick polished glaze comprises the following raw materials: potassium feldspar, albite, zinc oxide, calcined talcum, dolomite, wollastonite, kaolin, quartz, corundum and frit. The preparation method comprises the following steps: step one, preparation: preparing materials and blending the materials according to a formula; step two, stirring: placing the raw materials in a stirrer sequentially and stirring and mixing; step three, sampling; step four, firing; step five, water quenching; and step sox, packing. In addition, theinvention further discloses a using method of the microlite thick polished glaze in ceramic tiles. The using method comprises the following steps: test matching, overglaze application, ink jetting, glaze distribution, fixing and firing. The microlite thick polished glaze has the characteristics of clear texture of the surface through blending, bright color and good antifouling effect. The hardnesscan meet the five-class requirement of brick products, and meanwhile, the wear resistance degree is greatly increased.

Description

technical field [0001] The invention relates to a ceramic tile product, in particular to a microcrystalline thick polished glaze, a preparation method thereof and a method for using it in ceramic tiles. Background technique [0002] Microcrystalline stone is a new type of decorative building material, and the composite microcrystalline stone is called a glass-ceramic composite plate. Microcrystalline stone is called microcrystalline glass-ceramic composite board in the industry, and it is a high-tech product in the field of architectural ceramics. [0003] Microcrystalline stone is crystal clear, graceful and luxurious, naturally grown and varied stone-like texture, brightly colored layers, uncanny appearance decoration effect, as well as non-polluting, easy to clean, and excellent internal physical and chemical properties. In addition, it has Stronger weather resistance and weather resistance than stone, it is favored by high-end building materials markets at home and abro...

Claims

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Application Information

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IPC IPC(8): C03C8/14C04B41/89
CPCC03C8/14C04B41/52C04B41/89
Inventor 全春辉
Owner FOSHAN TAOYING NEW MATERIAL CO LTD
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