Water-based anti-static bright glaze, and production method and production device thereof

A production device and anti-static technology, which is applied in the field of ceramic glazes, can solve problems such as large manpower and material resources, high production costs, and long production cycles, and achieve the effects of preventing static electricity, avoiding safety accidents, and reducing labor intensity

Pending Publication Date: 2021-07-27
安徽沃尔德新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Aiming at the deficiencies of the prior art, the object of the present invention is to provide a water-based antistatic bright glaze and its production method and device, which solves the problem that the glaze in the prior art is easy to fade after being colored for a long time, and at the same time, due to static electricity in actual production, It is easy to cause safety accidents, and the production cycle is long, the production cost is high, and the later maintenance consumes a lot of manpower and material resources.

Method used

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  • Water-based anti-static bright glaze, and production method and production device thereof
  • Water-based anti-static bright glaze, and production method and production device thereof
  • Water-based anti-static bright glaze, and production method and production device thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0063] S1, smash

[0064] Select high-quality raw materials, 18 kg of albite feldspar, 13 kg of potassium feldspar, 6 kg of tin oxide, 10 kg of antimony oxide, 9 kg of zinc oxide, 1 kg of methyl cellulose, 34 kg of quartz, 5 kg of purple wood knot, aluminum oxide 22 kilograms, 30 kilograms of limestone, 17 kilograms of talc, 13 kilograms of kaolin, 6 kilograms of barium carbonate, and put the raw materials in the crushing tank for crushing;

[0065] S2, screening

[0066] The raw material particles formed after crushing are screened through a vibrating screen to remove large particles of impurities, and the mesh diameter of the screen is controlled to be 0.5mm;

[0067] S3, one grinding

[0068] Grinding the sieved raw material particles into powder;

[0069] S4, dissolve

[0070] Pour the sieved raw material powders into clear water to form a solution;

[0071] S5, heating and stirring

[0072] Place the above solution in a stirring tank, heat while stirring until the w...

Embodiment 2

[0080] S1, smash

[0081] Select high-quality raw materials, 23 kg of albite feldspar, 18 kg of potassium feldspar, 15 kg of tin oxide, 15 kg of antimony oxide, 13 kg of zinc oxide, 4 kg of methyl cellulose, 43 kg of quartz, 10 kg of purple wood knot, aluminum oxide 26 kg, 38 kg of limestone, 23 kg of talc, 15 kg of kaolin, 8 kg of barium carbonate, and put the raw materials in a crushing tank for crushing;

[0082] S2, screening

[0083] The raw material particles formed after crushing are screened through a vibrating screen to remove large particles of impurities, and the mesh diameter of the screen is controlled to be 0.4mm;

[0084] S3, one grinding

[0085] Grinding the sieved raw material particles into powder;

[0086] S4, dissolve

[0087] Pour the sieved raw material powders into clear water to form a solution;

[0088] S5, heating and stirring

[0089] Place the above solution in a stirring tank, heat while stirring until the water evaporates completely, and co...

Embodiment 3

[0097] S1, smash

[0098] Select high-quality raw materials, 20 kg of albite feldspar, 15 kg of potassium feldspar, 7 kg of tin oxide, 13 kg of antimony oxide, 11 kg of zinc oxide, 2 kg of methyl cellulose, 40 kg of quartz, 8 kg of purple wood knot, aluminum oxide 24 kg, 35 kg of limestone, 20 kg of talc, 14 kg of kaolin, 7 kg of barium carbonate, and put the raw materials in a crushing tank for crushing;

[0099] S2, screening

[0100] The raw material particles formed after crushing are screened through a vibrating screen to remove large particles of impurities, and the mesh diameter of the screen is controlled to be 0.5mm;

[0101] S3, one grinding

[0102] Grinding the sieved raw material particles into powder;

[0103] S4, dissolve

[0104] Pour the sieved raw material powders into clear water to form a solution;

[0105] S5, heating and stirring

[0106] Put the above solution in a stirring tank, heat while stirring until the water evaporates completely, and contro...

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PUM

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Abstract

The invention discloses a water-based anti-static bright glaze, and a production method and a production device thereof. The glaze comprises albite, potassium feldspar, tin oxide, antimony oxide, zinc oxide, methyl cellulose, quartz, knar clay, aluminum oxide, limestone, talc, kaolin and barium carbonate. The production method comprises the following steps: S1, crushing; S2, screening; S3, carrying out primary grinding; S4, dissolving; S5, heating and stirring; S6, pressing; S7, performing drying; and S8, carrying out secondary grinding. The production device comprises a supporting module, a storage module and a stirring module. According to the invention, static electricity can be effectively prevented, safety accidents caused by electrostatic interaction are fundamentally avoided, and compared with the traditional glaze on the market, the color retention period is longer, the unit production cost is lower, and the practicability and market competitiveness are stronger; and by adopting an assembled structure, the glaze can be heated while being stirred, manual participation is not needed in the whole process, the labor intensity of production personnel is reduced, and the production efficiency is improved.

Description

technical field [0001] The invention belongs to the field of ceramic glazes, and in particular relates to a water-based antistatic bright glaze and a production method and device thereof. Background technique [0002] With the continuous development of science and technology, the application of ceramic glazes is becoming more and more extensive. The building and sanitary ceramics industry attaches great importance to the adoption of advanced glaze technology, and a large number of highly professional ceramic glaze, ceramic frit and color material companies have emerged in China. The glazes used in building and sanitary ceramic products are becoming more and more diverse. The types and uses of glaze products used by most ceramic enterprises can be roughly classified as follows: 1. Lead glaze and lead-free glaze; 2. Raw glaze and frit glaze ;3. Glaze for primary firing or secondary firing; 4. Glaze for ceramic tiles, tableware, sanitary ceramics and electric porcelain; ; 7. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B41/86C03C8/00
CPCC04B41/5022C04B41/86C03C8/00
Inventor 金继典孙剑光
Owner 安徽沃尔德新材料有限公司
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