Preparation method and application of snowflake-shaped crystallized ceramic glaze

A ceramic glaze and snowflake-shaped technology, which is applied in the field of preparation of snowflake-shaped devitrification ceramic glaze, can solve the problems of pollution, insufficient innovation, explosive environment, etc., and achieve the effect of simple firing equipment, low firing cost and low raw material price

Active Publication Date: 2021-10-19
XUCHANG UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

With the rapid development of society, people's pursuit of new ceramic glazes is becoming more and more urgent. At present, the innovation of ceramic glazes on the market is insufficient, and most of them use reducing atmospheres in the firing process, which has problems of explosion and environmental pollution.

Method used

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  • Preparation method and application of snowflake-shaped crystallized ceramic glaze
  • Preparation method and application of snowflake-shaped crystallized ceramic glaze
  • Preparation method and application of snowflake-shaped crystallized ceramic glaze

Examples

Experimental program
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Effect test

Embodiment 1

[0039] A preparation method and application of a snowflake-like devitrified ceramic glaze, comprising the following steps:

[0040] Step 1, egg shell calcined powder, barium carbonate, quartz, dredged bottom mud dry powder, nano-alumina powder are according to each mass ratio (egg shell calcined powder: barium carbonate: quartz: dredged bottom mud dry powder: nano-alumina powder=( 30: 25: 35: 3.0: 7) were weighed and prepared as JS glaze; among them, egg shell calcined powder was obtained by mechanically crushing egg shells and calcining at high temperature at 650°C for 1.5 h; dredging The dried sediment powder is obtained by passing the dredged sediment through a 200-mesh sieve and fully drying it in a blast drying oven. The drying temperature is 220 °C and the drying time is 5 h; the particle size of the nano-alumina powder is 100 nanometers .

[0041] Step 2. Mix JS glaze, water, and agate balls in a mass ratio of 1.0:1.6:1.6, and then use a planetary ball mill for ball mi...

Embodiment 2

[0047] A preparation method and application of a snowflake-like devitrified ceramic glaze, comprising the following steps:

[0048]Step 1, egg shell calcined powder, barium carbonate, quartz, dredged bottom mud dry powder, nano-alumina powder are according to each mass ratio (egg shell calcined powder: barium carbonate: quartz: dredged bottom mud dry powder: nano-alumina powder=( 40: 20: 30: 3.0: 7)) were weighed and prepared as JS glaze; among them, calcined egg shell powder was obtained by mechanically crushing egg shells and calcining at high temperature at a calcining temperature of 500°C and a holding time of 3 h; The dry powder of the dredged sediment is obtained by passing the dredged sediment through a 200-mesh sieve and fully drying it in a blast drying oven. The drying temperature is 180 °C and the drying time is 8 h; the particle size of the nano-alumina powder is 10 Nano.

[0049] Step 2. Mix JS glaze, water, and agate balls in a mass ratio of 1.0:1.6:1.6, and the...

Embodiment 3

[0055] A preparation method and application of a snowflake-like devitrified ceramic glaze, comprising the following steps:

[0056] Step 1, egg shell calcined powder, barium carbonate, quartz, dredged bottom mud dry powder, nano-alumina powder are according to each mass ratio (egg shell calcined powder: barium carbonate: quartz: dredged bottom mud dry powder: nano-alumina powder=( 35: 23: 35: 1.5: 5.5) were weighed and prepared as JS glaze; among them, egg shell calcined powder was obtained by mechanically crushing egg shells and calcining at high temperature at 600 °C for 2 h; dredging The dry sediment powder is obtained by passing the dredged sediment through a 200-mesh sieve and fully drying it in a blast drying oven. The drying temperature is 200 °C and the drying time is 7 h; the particle size of the nano-alumina powder is 40 nanometers .

[0057] Step 2. Mix JS glaze, water, and agate balls in a mass ratio of 1.0:1.6:1.6, and then use a planetary ball mill for ball mill...

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Abstract

The invention discloses a preparation method and application of snowflake-shaped crystallized ceramic glaze. Specifically, egg shell calcined powder, barium carbonate, quartz, dredged sediment dry powder and nanometer aluminum oxide powder are made into glaze according to a certain proportion, the proportion of the glaze, water and grinding balls is further regulated and controlled, the glaze is made into glaze slip after planetary ball milling and sieving treatment, and the snowflake-shaped crystallized ceramic glaze is made into glaze slurry. The glaze slurry is applied to the surface of a biscuit firing ceramic biscuit by adopting a glaze dipping method, the glazed biscuit is dried and then placed in a muffle furnace to be fired, and a ceramic glaze product with snowflake-shaped crystalization is obtained.

Description

technical field [0001] The invention relates to the technical field of ceramic glaze preparation, in particular to a preparation method and application of a snowflake crystallization ceramic glaze. Background technique [0002] Since the Shang Dynasty, pottery began to have glaze, which has a history of thousands of years. Ceramic glaze is a vitreous layer attached to the surface of the ceramic body. Ceramic glaze has the functions of airtight and watertight. Ceramic glazes of different colors and textures also increase the beauty of ceramic utensils, and ceramic glazes can prevent utensils from being polluted and easily cleaning. With the rapid development of society, people's pursuit of new ceramic glazes is becoming more and more urgent. At present, the ceramic glazes on the market are not innovative enough and most of them use a reducing atmosphere in the firing process, which has problems of explosion and environmental pollution. Contents of the invention [0003] I...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B41/86C04B33/13C04B33/16C04B33/24C03C8/00
CPCC04B41/86C04B41/5022C04B41/009C04B33/131C04B33/16C04B33/24C03C8/00C04B2235/3463C04B2235/6562C04B2235/963C04B41/4539C04B41/0072Y02P40/60
Inventor 朱聪旭张寒露乔现禹郑直王保岚宋家桐李知声法文君冯铭华
Owner XUCHANG UNIV
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