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A kind of 3D glaze and preparation method thereof

A 3D and glaze technology, applied in the field of 3D glaze and its preparation, can solve the problems of not being able to highlight the decoration style and personality, and the lack of layering in the decoration space, so as to achieve the effect of improving the decoration grade, improving the decoration grade and enriching the decoration space

Inactive Publication Date: 2016-04-13
福建省晋江万利瓷业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Most of the traditional building ceramic products use printing to process the surface of the product. The printing method generally adopts screen printing and rubber roller printing technology. In recent years, inkjet printing technology has been introduced into the ceramic industry, which has made a qualitative leap in the decorative effect of ceramic products. It greatly enriches the surface effects of ceramic products and improves the simulation of surface effects. However, these printing effects are limited to the surface of ceramic products and change in 2-dimensional space, resulting in no sense of hierarchy in the decoration space, and cannot highlight the decoration style and personality

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0054] A 3D glaze, characterized in that the chemical composition of the 3D glaze includes the following components in terms of weight percentage: 60% silicon dioxide, 26% aluminum oxide, 0.15% iron oxide, 0.05% titanium oxide, calcium oxide 4.2%, magnesium oxide 2.1%, sodium oxide 3%, potassium oxide 3.5%, zirconium oxide 2%, lithium oxide 3%, loss on ignition 1.8-3.6%. The raw material ratio of the 3D glaze is calculated in parts by weight, including the following raw materials: 12 parts of kaolin, 45 parts of quartz powder, 12 parts of lithium china stone powder, 12 parts of burnt talc, 4 parts of calcium carbonate, 20 parts of potassium feldspar powder, 3 parts of zirconium silicate, 2.5 parts of alumina, 3 parts of corundum, 0.3 parts of sodium carboxymethyl cellulose, 0.8 parts of industrial tripolyphosphoric acid.

Embodiment 2

[0056] A kind of preparation method of 3D glaze, glaze preparation technological process

[0057] Glaze batching→glaze weighing→glaze slurry grinding→glaze slurry sieving→glaze slurry aging→glaze slurry iron removal→glaze slurry sieving→finished glaze, the method includes the following steps:

[0058] a) Selection of raw materials: According to the raw materials required for the above-mentioned 3D glaze, the raw materials contain the elements present in the 3D glaze;

[0059] b) Weighing and batching: carry out weighing and batching according to the calculated formula;

[0060] c) Ball milling: Send the prepared raw materials into the ball mill, wherein the ball milling medium is water, and the ball milling takes 6 to 8 hours. The mass ratio of material: ball: water is 1:1:0.6;

[0061] d) Testing: Check the flow rate, specific gravity and fineness of the glaze slurry. After the three indicators are all qualified, the slurry can be released. If it is unqualified, it needs to ...

Embodiment 3

[0067] A kind of green body compatible with the 3D glaze of Example 1, according to the weight fraction, consists of 15 parts of Zhangzhou white clay, 8 parts of Xiadai white clay, 8 parts of Zhangpu clay 1#, 8 parts of washed kaolin, 10 parts of washed sand, It consists of 2 parts of Longshan albite 4#, 3 parts of Changtai kaolin, 12 parts of Longhai feldspar 1#, 11 parts of Daping Shimi, 12 parts of Longshan albite 2#, 4 parts of bentonite, and 5 parts of Zhangzhou lime soil.

[0068] The concrete steps of preparation are:

[0069] a) Selection of raw materials: According to the raw materials required for the above-mentioned 3D glaze-adapted body, the raw materials contain the elements present in the 3D glaze-adapted body.

[0070] b) Batching, weigh the ingredients according to the recipe requirements (the deviation range of single material is 30kg / time).

[0071] c) Ball milling, materials: balls: water = 1:1:0.8 ratio for canned ball milling, ball milling time 10-12 hour...

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PUM

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Abstract

The invention relates to the field of ceramic decoration materials, and especially relates to a 3D glaze material and a preparation method thereof. The 3D glaze material is characterized in that the chemical composition of the 3D glaze material is as the follows, by weight: 53-68% of silicon oxide, 18-26% of aluminum oxide, 0.1-0.2% of iron oxide, 0.05-0.2% of titanium oxide, 2.3-7.2% of calcium oxide, 2.1-3.6% of magnesium oxide, 2-4% of sodium oxide, 3-5% of potassium oxide, 1-4% of zirconium oxide, 2-4% of lithium oxide, and 1.8-3.6% of ignition loss.

Description

technical field [0001] The invention relates to the field of ceramic decoration materials, in particular to a 3D glaze and a preparation method thereof. Background technique [0002] Most of the traditional building ceramic products use printing to process the surface of the product. The printing method generally adopts screen printing and rubber roller printing technology. In recent years, inkjet printing technology has been introduced into the ceramic industry, which has made a qualitative leap in the decorative effect of ceramic products. It greatly enriches the surface effect of ceramic products and improves the simulation of surface effects. However, these printing effects are limited to the surface of ceramic products and change in 2-dimensional space, resulting in no sense of hierarchy in the decoration space, and cannot highlight the decoration style and personality. With the improvement of people's living standards, people have put forward higher requirements for th...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B41/86
Inventor 吴瑞彪
Owner 福建省晋江万利瓷业有限公司