Antibacterial and antistatic low-temperature antique glaze and preparation method thereof

An anti-static and antibacterial technology, applied in the field of ceramics, can solve the problem of less antique ceramics

Inactive Publication Date: 2016-12-21
佛山市高明区诚睿基科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Along with the rapid development of economy and people's raising to living standard, pottery has become the pottery that places such as people's family, office, shopping malls are used for decoration, but the ceramic glaze surface of existing technology, though smoothness is high, color is rich, but There are

Method used

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  • Antibacterial and antistatic low-temperature antique glaze and preparation method thereof

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Experimental program
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Effect test

Embodiment 1

[0034] An antibacterial and antistatic low-temperature antique glaze and a preparation method thereof, the preparation method comprising the following steps:

[0035] Step A, prepare antibacterial and antistatic low-temperature frit: 10% quartz, 10% feldspar, 19% borax, 12% carbonate, 35% boric acid, 3% spodumene, 4% fluoride salt, 1.5% kaolin Mix and grind evenly; then add 0.5% antibacterial compound and 5% conductive filler, and grind evenly to obtain a mixture; spread the mixture into a refractory sagger, and perform high-temperature melting at 1250~1320°C to obtain molten slurry material; the slurry is quenched and cooled by water, and broken into granules to obtain an antibacterial and antistatic low-temperature frit; wherein, the feldspar is obtained by mixing potassium feldspar and albite feldspar at a weight ratio of 4:1; the carbon The acid salt is obtained by mixing potassium carbonate, sodium carbonate, barium carbonate, lithium carbonate and calcium carbonate in a ...

Embodiment 2

[0048] An antibacterial and antistatic low-temperature antique glaze and a preparation method thereof, the preparation method comprising the following steps:

[0049] Step A, prepare antibacterial and antistatic low-temperature frit: 15% quartz, 8% feldspar, 25% borax, 8% carbonate, 29% boric acid, 5% spodumene, 3% fluoride salt, 3% kaolin Mix and grind evenly; then add 1% antibacterial compound and 3% conductive filler, and grind evenly to obtain a mixture; spread the mixture into a refractory sagger, and perform high-temperature melting at 1250~1320°C to obtain molten slurry material; the slurry is quenched and cooled by water, and broken into granules to obtain an antibacterial and antistatic low-temperature frit; wherein, the feldspar is obtained by mixing potassium feldspar and albite feldspar at a weight ratio of 4:1; the carbon The acid salt is obtained by mixing potassium carbonate, sodium carbonate, barium carbonate, lithium carbonate and calcium carbonate in a weight...

Embodiment 3

[0062] An antibacterial and antistatic low-temperature antique glaze and a preparation method thereof, the preparation method comprising the following steps:

[0063] Step A, prepare antibacterial and antistatic low-temperature frit: mix 18% quartz, 12% feldspar, 21% borax, 5% carbonate, 27% boric acid, 8% spodumene, 1% fluoride salt, 5% kaolin Mix and grind evenly; then add 2% antibacterial compound and 1% conductive filler, and grind evenly to obtain a mixture; spread the mixture into a refractory sagger, and perform high-temperature melting at 1250~1320°C to obtain molten slurry material; the slurry is quenched and cooled by water, and broken into granules to obtain an antibacterial and antistatic low-temperature frit; wherein, the feldspar is obtained by mixing potassium feldspar and albite feldspar at a weight ratio of 4:1; the carbon The acid salt is obtained by mixing potassium carbonate, sodium carbonate, barium carbonate, lithium carbonate and calcium carbonate in a w...

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Abstract

The invention discloses an antibacterial and antistatic low-temperature antique glaze and a preparation method thereof. The preparation method comprises the following steps of step A, preparing an antibacterial and antistatic low-temperature clinker; step B, preparing glaze slip: mixing the low-temperature clinker with a coloring agent, potassium feldspar, quartz, calcite, talcum, calcium phosphate, an electric conduction filler and an antibacterial compound to obtain mixed powder, adding sodium tripolyphosphate and carboxymethyl cellulose to the mixed powder, performing uniform mixing, performing fine grinding, and then adding water so as to obtain the glaze slip; and step C, uniformly applying the glaze slip on a blank body, then in a reducing atmosphere furnace, performing heat preservation, and then performing natural cooling to room temperature so as to obtain the antibacterial and antistatic low-temperature antique glaze. Compared with a conventional antique glaze, the antique glaze prepared by the preparation method disclosed by the invention is scientific in ingredients, reasonable in preparation, pure in color generation, and stable in properties, and besides has lasting antibacterial characteristics, stain-resistant self-cleaning functions and antistatic characteristics, and the application range of the antique glaze is further widened.

Description

technical field [0001] The invention relates to the technical field of ceramics, in particular to an antibacterial and antistatic low-temperature antique glaze and a preparation method thereof. Background technique [0002] Bacteria and mold, as pathogenic bacteria, are very harmful to humans, animals and plants, affecting people's health and even life-threatening, and bringing significant economic losses. Therefore, the research on antibacterial materials and their products has attracted people's attention day by day, and the demand for antibacterial products will constitute a huge market. [0003] Static electricity is an objective natural phenomenon, which can be produced in many ways, such as contact and friction. Static electricity may cause fatal harm to some sensitive instruments and places. For example, the electromagnetic effect (electromagnetic interference or electromagnetic compatibility) generated by static electricity during discharge will interfere with the ...

Claims

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Application Information

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IPC IPC(8): C03C8/14C03C8/06C03C1/00
CPCC03C8/14C03C1/00C03C8/06C03C2204/02
Inventor 黎淑娟
Owner 佛山市高明区诚睿基科技有限公司
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