CN101475364A - Antistatic powder for antistatic ceramic tile - Google Patents

Antistatic powder for antistatic ceramic tile Download PDF

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Publication number
CN101475364A
CN101475364A CNA200910014123XA CN200910014123A CN101475364A CN 101475364 A CN101475364 A CN 101475364A CN A200910014123X A CNA200910014123X A CN A200910014123XA CN 200910014123 A CN200910014123 A CN 200910014123A CN 101475364 A CN101475364 A CN 101475364A
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antistatic
powder
ceramic tile
glaze
static
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CN101475364B (en
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邱贻忠
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Shandong Electric Shield Polytron Technologies Inc
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Shandong Valentino Ceramic Co Ltd
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Abstract

The invention relates to antistatic powder for an antistatic ceramic brick, is used for producing the antistatic ceramic brick, and belongs to the technical field of architectural ceramics. The antistatic powder comprises the following components in mass percentage: 60 to 80 percent of tin oxide, 10 to 39 percent of zinc oxide and 0.2 to 10 percent of antimony oxide. The antistatic powder can be conveniently used for producing the antistatic ceramic brick to eliminate the static electricity, promote the human health, and protect a high precision apparatus.

Description

Antistatic powder for antistatic ceramic tile
Technical field
The present invention relates to a kind of antistatic powder for antistatic ceramic tile, be used to produce anti-static ceramic tile, belong to the architectural pottery technical field.
Background technology
In daily life, especially in northern exsiccant winter, indoor have " " everywhere, touches door handle and can be shocked by electricity, and touches water pipe and can be shocked by electricity, and goes home to hold a baby in one's arms and also can be shocked by electricity, even unblank to touch keyhole, also can be shocked by electricity.Discover that these electric shock phenomenons bring very big harm can for people's body ﹠ mind, influence the physiological equilibrium of personal human body, cause all illness subtlely, quicken human senescence.
Electrostatic phenomenon is very general in production, processing and the use of information industry, weaving industry, petrochemical complex, plastics and rubber industry, paint industry etc.Gathering of static electric charge may cause very big harm, and the hertzian wave that produces during as static discharge may disturb the work of precision electronic device, even cause the flase operation of automotive electronics; Pharmaceutically draw dirt, drawing bacterium; Cause the electricity accident of quivering on the medical operating; Cause fire, blast on mine, the petrochemical complex; Cause that on electronic industry unicircuit destroys; In weaving, cause fibril aggregation or the like.In the material of construction of anti-electrostatic, what research at present and application were maximum is polymkeric substance Antistatic Paint and earth material, and these materials add conducting material such as metal and carbon black in polymkeric substance makes, as epoxy and trichlorine cyanogen ammonia Antistatic Paint, floor etc.Though this class material improved to some extent at anti-aging, anti-soil, aspect such as wear-resisting in recent years, be difficult to solve problem such as weather resistance and fire resistance be not good enough.Though the anti-electrostatic terrazzo that occurs has better solved fire safety problem in the recent period, its powder amount index is still higher, has limited it in clean room and machine room application in engineering.
Summary of the invention
The object of the present invention is to provide a kind of antistatic powder for antistatic ceramic tile, can make anti-static ceramic tile easily,, promote health, the use of protection highly sophisticated device to eliminate static.
Antistatic powder for antistatic ceramic tile of the present invention, its batching quality percentage composition is: stannic oxide 60~80%, zinc oxide 10~39% and weisspiessglanz 0.2~10%.
Wherein:
Stannic oxide purity is: SnO 2Content 〉=98%;
Zinc oxide purity is: ZnO content 〉=99%;
Weisspiessglanz purity is: Sb 2O 3Content 〉=98%.
Batching is put into equipment such as high aluminium ball grinding machine and mixed and get final product, generally need to mix 3~6 hours, cross 120 mesh sieves.
The same with additive, can directly add ceramic body batching, glaze batching to or/and use in the stamp glaze and get final product.In base substrate batching, can account for 10~25% of weight, i.e. 10~25% powder for antistatic, 75~90%; In the glaze batching, can account for 35~55%; In stamp glaze batching, can account for 40~60%.
The anti-static ceramic tile that obtains, not only antistatic performance is stable, and has the advantage that other antistatic materials such as attractive and durable, fire prevention, corrosion resistant, anti-aging, resistance to compression are difficult to all have concurrently, is a kind of novel antistatic material.By laying anti-static ceramic tile, static can be drawn and let out in the earth, change the normal current potential of body surface, make between human body and the earth and form equi-potential, avoided the electric shock phenomenon, eliminated the discomfort that electric shock is brought, promote healthy.Eliminate static, also satisfied the Working environment requirement and must not have the electrostatic requirement, the use of protection highly sophisticated device; Eliminate static, also help environment protection, meet ecological requirement.
After the batching, utilize common floor tile production technique to get final product.General technological process is as follows:
Body preparation:
Each is prepared burden grinds into mud into barreling, and powdered granule is made in oven dry then, through pressing machine compression moulding, after the oven dry work in-process---base substrate.
Glaze preparation and glazing:
Each is prepared burden grinds into glaze slip into barreling, dries after glazing on the base substrate.
In the time of need applying printing glaze, equally prepare printing glaze, apply printing glaze with the glaze preparation.Printing glaze adds corresponding toner according to the requirement difference of pattern, requires operation to get final product according to routine.
Product burns till: firing period 50~90 minutes, 1050~1260 ℃ of firing temperatures get product after burning till.
Through laying evidence, with the anti-static ceramic tile that powder for antistatic of the present invention is made, not only attractive and durable, fire prevention, corrosion resistant, anti-aging, resistance to compression, and also after testing, surface resistivity and volume resistance are: 1 * 10 6~1 * 10 9Ω, conformance with standard≤1 * 10 9The requirement of Ω can be eliminated static, promotes health protection live and work environment, the use of protection highly sophisticated device.
Embodiment
The invention will be further described below in conjunction with embodiment.
(continued on next page)
Testing raw materials used chemical quality percentage composition sees the following form
SiO 2 Al 2O 3 Fe 2O 3 TiO 2 CaO MgO K 2O Na 2O Burn and lose
Potassium felspar sand 65.33 19.66 0.02 0.06 0.04 10.80 3.32 0.68
Albite 72.33 15.38 0.07 0.69 0.13 2.01 8.77 0.38
Calcite 56.03 18.00 25.50
Burn talcum 64.30 34.06
Calcined earth 56.40 42.80
Kaolin 52.50 38.23 8.40
Feldspar 70.01 16.43 0.37 0.52 0.35 2.77 8.10 0.39
Clay 71.42 14.91 0.70 0.06 1.77 3.18 1.22 0.55 6.19
Flint clay 44.69 39.27 0.50 0.08 0.17 0.38 13.96
Talcum 59.56 1.51 0.38 0.11 0.40 32.37 0.02 0.05 5.59
Quartzy 99.20 0.09 0.70
The composition deficiency of raw material in the table, surplus is conventional dirt, ore deposit, ground raw material is kept away carrying secretly of unavoidable dirt, thinks pure also not pure.
Other raw material is a technical pure chemical industry raw material.
The quality percentage composition of frit is: R 2O (K 2O and Na 2O's and) 4.07%, CaO8.2%, BaO1.5%, ZnO6.2%, PbO 0.47%, Al 2O 38.7%, B 2O 32.67%, SiO 267.38% and ZrO 20.81%.
The making of embodiment 1, anti-electrostatic ceramic brick.
The quality percentage composition of conducting powder is: the weisspiessglanz of stannic oxide 70%, zinc oxide 15% and surplus.
1.1 blank preparation:
1.1.1 the powder for antistatic of 11% anti-static ceramic tile, 89% conventional ceramic adobe body raw material (pressing siccative weight calculates)
Add an amount of water in the suction pit again and mix 1.1.2 be placed on, and old 13 hours.
1.1.3 mud is crossed 80 order vibratory screening apparatuss, by spray-drying tower powder process.
1.1.4 compression moulding.
1.2 glaze preparation:
1.2.1 the powder for antistatic of 45% anti-static ceramic tile, the common glaze of 55% weight is put into ball mill and is ground.
1.2.2 the glaze slip fineness is ground to tails over 0.5%/100ml, use 325 sub-sieves.
1.2.3 cross 120 order vibratory screening apparatuss, it is stand-by to put into jar.
1.3 the preparation of printing glaze
1.3.1 according to taking by weighing tinctorial pattern without pattern
1.3.2 weight proportion: common printed powder 41%, the powder for antistatic 59% of anti-static ceramic tile.
1.3.3 take by weighing the stamp emulsifiable paste 60% of purchase, the 1.3.1 of remaining 40% weight and 1.3.2 are all put into mixing tank stirred 25 minutes, cross 250 order vibration screens, put into container, stand-by.
1.4 the preparation of anti-electrostatic ceramic brick
1.4.1, dry by 265 ℃ of pyritous dry kilns with the base substrate after the moulding.
1.4.2 1.2 glaze that prepare are sprayed on billet surface.
1.4.3 1.3 printing glazes that prepare are imprinted on the glaze that is sprayed with antistatic performance.
1.4.4 go into klining, firing temperature is 1080 ℃, firing time is 50 minutes, detects through electrical property, and surface resistivity is 2 * 10 7Ω, volume resistance are 4 * 10 7Ω.
The making of embodiment 2, anti-electrostatic fine stoneware tile.
The quality percentage composition of conducting powder is: the weisspiessglanz of stannic oxide 75%, zinc oxide 20% and surplus.
2.1 blank preparation:
2.1.1 the powder for antistatic of 15% anti-static ceramic tile, 85% ceramic fine stoneware tile blank raw material (pressing siccative weight calculates)
Add an amount of water in the suction pit again and mix 2.1.2 be placed on, and old 14 hours.
2.1.3 mud is crossed 80 order vibratory screening apparatuss, by spray-drying tower powder process.
2.1.4 compression moulding.
2.2 glaze preparation:
2.2.1 the powder for antistatic of 50% anti-static ceramic tile, the common glaze of 50% weight is put into ball mill and is ground.
2.2.2 the glaze slip fineness is ground to tails over 0.7%/100ml, use 325 sub-sieves.
2.2.3 cross 120 order vibratory screening apparatuss, it is stand-by to put into jar.
2.3 the preparation of printing glaze
2.3.1 according to taking by weighing tinctorial pattern without pattern
2.3.2 weight proportion: common printed powder 50%, the powder for antistatic 50% of anti-static ceramic tile.
2.3.3 take by weighing the stamp emulsifiable paste 60% of purchase, the 1.3.1 of 40% residuals weight and 1.3.2 are all put into mixing tank stirred 25 minutes, cross 250 order vibration screens, put into container, stand-by.
2.4 the preparation of anti-electrostatic fine stoneware tile
2.4.1, dry by 275 ℃ of pyritous dry kilns with the base substrate after the moulding.
2.4.2 1.2 glaze that prepare are sprayed on billet surface.
2.4.3 1.3 printing glazes that prepare are imprinted on the glaze that is sprayed with antistatic performance.
2.4.4 go into klining, firing temperature is 1190 ℃, firing time is 55 minutes, detects through electrical property, and surface resistivity is 3 * 10 8Ω, volume resistance are 6 * 10 7Ω.
The making of embodiment 3, anti-electrostatic porcelain brick.
The quality percentage composition of conducting powder is: the weisspiessglanz of stannic oxide 62%, zinc oxide 16% and surplus.
3.1 blank preparation:
3.1.1 the powder for antistatic of 15% anti-static ceramic tile, 85% porcelain brick blank raw material (pressing siccative weight calculates)
Add an amount of water in the suction pit again and mix 3.1.2 be placed on, and old 13 hours.
3.1.3 mud is crossed 80 order vibratory screening apparatuss, by spray-drying tower powder process.
3.1.4 compression moulding.
3.2 glaze preparation:
3.2.1 the powder for antistatic of 53% anti-static ceramic tile, the common glaze of 47% weight is put into ball mill and is ground.
3.2.2 the glaze slip fineness is ground to tails over 0.7%/100ml, use 325 sub-sieves.
3.2.3 cross 120 order vibratory screening apparatuss, it is stand-by to put into jar.
3.3 the preparation of printing glaze
3.3.1 according to taking by weighing tinctorial pattern without pattern
3.3.2 weight proportion: common printed powder 50%, the powder for antistatic 50% of anti-static ceramic tile.
3.3.3 claim to go the stamp emulsifiable paste 60% bought, the 1.3.1 of 40% residuals weight and 1.3.2 all to be put into batch mixing lack and stirred 25 minutes, mistake 250 order vibration screens are put into container, and are stand-by.
3.4 the preparation of anti-electrostatic porcelain brick
3.4.1, dry by 275 ℃ of pyritous dry kilns with the base substrate after the moulding.
3.4.2 1.2 glaze that prepare are sprayed on billet surface.
3.4.3 1.3 printing glazes that prepare are imprinted on the glaze that is sprayed with antistatic performance.
3.4.4 go into klining, firing temperature is 1210 ℃, firing time is 60 minutes, detects through electrical property, and surface resistivity is 1 * 10 7Ω, volume resistance are 2 * 10 8Ω.
(continued on next page)
Other comprises base substrate and glaze layer with the anti-static ceramic tile that powder for antistatic of the present invention is made, and its ingredients by weight composition sees the following form:
Figure A200910014123D00081
Other carries out according to conventional preparation technology.

Claims (4)

1, a kind of antistatic powder for antistatic ceramic tile is characterized in that its batching quality percentage composition is: stannic oxide 60~80%, zinc oxide 10~39% and weisspiessglanz 0.2~10%.
2, antistatic powder for antistatic ceramic tile according to claim 1 is characterized in that stannic oxide purity is: SnO 2Content 〉=98%.
3, antistatic powder for antistatic ceramic tile according to claim 1 is characterized in that zinc oxide purity is: ZnO content 〉=99%.
4, antistatic powder for antistatic ceramic tile according to claim 1 is characterized in that weisspiessglanz purity is: Sb 2O 3Content 〉=98%.
CN200910014123XA 2009-02-02 2009-02-02 Antistatic powder for antistatic ceramic tile Active CN101475364B (en)

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Application Number Priority Date Filing Date Title
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Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102030519A (en) * 2010-11-30 2011-04-27 广东特地陶瓷有限公司 Anti-static ceramic brick and production method thereof
CN101708988B (en) * 2009-11-24 2011-09-14 袁国梁 Compound conductive powder for anti-static ceramic tile
CN102219525A (en) * 2011-05-10 2011-10-19 广东东鹏陶瓷股份有限公司 Anti-static ceramic tile and manufacturing method thereof
CN102418407A (en) * 2011-10-11 2012-04-18 信益陶瓷(中国)有限公司 Anti-static ceramic tile
CN102543247A (en) * 2012-01-14 2012-07-04 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心 Composite conductive powder
CN102568639A (en) * 2012-01-14 2012-07-11 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心 Light-colored composite conductive powder
CN102561656A (en) * 2012-02-15 2012-07-11 山东电盾科技有限公司 Anti-static ceramic-wood composite floor
CN104860658A (en) * 2015-05-04 2015-08-26 安徽省亚欧陶瓷有限责任公司 Anti-static ceramic tile and production method thereof
CN105174815A (en) * 2015-08-21 2015-12-23 武汉大江豪新材料有限公司 Microlite environment-friendly base material and multifunctional plate
CN105837169A (en) * 2016-04-25 2016-08-10 山东电盾科技有限公司 Anti-static antimicrobial ceramic tile prepared from coal ash and preparation method of anti-static antimicrobial ceramic tile
CN105924136A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic ceramic tile prepared from fly ash and preparation method thereof
CN105924133A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic ceramic tile and production method thereof
CN105924132A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic electromagnetic shielding ceramic brick and preparation method thereof
CN106045478A (en) * 2016-05-31 2016-10-26 淄博成畅建筑陶瓷有限公司 Anti-static ink-jet polished tile and preparing method thereof
CN106116569A (en) * 2016-06-28 2016-11-16 郭舒洋 A kind of preparation method of green antistatic zirconia ceramics
CN108640651A (en) * 2018-07-05 2018-10-12 常州五荣化工有限公司 A kind of anti-static ceramic tile and preparation method thereof
CN110804331A (en) * 2019-11-20 2020-02-18 佛山市东鹏陶瓷有限公司 Antistatic agent, preparation method thereof, and preparation methods of paint and ceramic tile using antistatic agent

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ATE113266T1 (en) * 1991-08-23 1994-11-15 Coopcostruttori Societa Cooper PROCESS FOR THE MANUFACTURE OF ANTISTATIC CERAMIC TILES WITH LOW WATER ABSORPTION CAPACITY.
ES2143402B1 (en) * 1998-03-05 2001-01-01 Colorobbia Espana Sa FRITA DOPANTE SUITABLE FOR THE MANUFACTURE OF DRIVING CERAMIC Enamels.

Cited By (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101708988B (en) * 2009-11-24 2011-09-14 袁国梁 Compound conductive powder for anti-static ceramic tile
CN102030519B (en) * 2010-11-30 2013-02-13 广东特地陶瓷有限公司 Anti-static ceramic brick and production method thereof
CN102030519A (en) * 2010-11-30 2011-04-27 广东特地陶瓷有限公司 Anti-static ceramic brick and production method thereof
CN102219525A (en) * 2011-05-10 2011-10-19 广东东鹏陶瓷股份有限公司 Anti-static ceramic tile and manufacturing method thereof
CN102219525B (en) * 2011-05-10 2013-09-11 广东东鹏陶瓷股份有限公司 Anti-static ceramic tile and manufacturing method thereof
CN102418407A (en) * 2011-10-11 2012-04-18 信益陶瓷(中国)有限公司 Anti-static ceramic tile
CN102543247B (en) * 2012-01-14 2015-12-09 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心 A kind of composite conductive powder
CN102543247A (en) * 2012-01-14 2012-07-04 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心 Composite conductive powder
CN102568639A (en) * 2012-01-14 2012-07-11 佛山市中国科学院上海硅酸盐研究所陶瓷研发中心 Light-colored composite conductive powder
CN102561656A (en) * 2012-02-15 2012-07-11 山东电盾科技有限公司 Anti-static ceramic-wood composite floor
CN102561656B (en) * 2012-02-15 2014-01-08 山东电盾科技有限公司 Anti-static ceramic-wood composite floor
CN104860658A (en) * 2015-05-04 2015-08-26 安徽省亚欧陶瓷有限责任公司 Anti-static ceramic tile and production method thereof
CN105174815A (en) * 2015-08-21 2015-12-23 武汉大江豪新材料有限公司 Microlite environment-friendly base material and multifunctional plate
CN105174815B (en) * 2015-08-21 2017-05-24 武汉大江豪新材料有限公司 Microlite environment-friendly base material and multifunctional plate
CN105837169A (en) * 2016-04-25 2016-08-10 山东电盾科技有限公司 Anti-static antimicrobial ceramic tile prepared from coal ash and preparation method of anti-static antimicrobial ceramic tile
CN105924136A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic ceramic tile prepared from fly ash and preparation method thereof
CN105924133A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic ceramic tile and production method thereof
CN105924132A (en) * 2016-04-25 2016-09-07 山东电盾科技有限公司 Antistatic electromagnetic shielding ceramic brick and preparation method thereof
CN106045478A (en) * 2016-05-31 2016-10-26 淄博成畅建筑陶瓷有限公司 Anti-static ink-jet polished tile and preparing method thereof
CN106045478B (en) * 2016-05-31 2019-03-22 淄博成畅建筑陶瓷有限公司 Antistatic ink-jet polished bricks and preparation method thereof
CN106116569A (en) * 2016-06-28 2016-11-16 郭舒洋 A kind of preparation method of green antistatic zirconia ceramics
CN108640651A (en) * 2018-07-05 2018-10-12 常州五荣化工有限公司 A kind of anti-static ceramic tile and preparation method thereof
CN110804331A (en) * 2019-11-20 2020-02-18 佛山市东鹏陶瓷有限公司 Antistatic agent, preparation method thereof, and preparation methods of paint and ceramic tile using antistatic agent

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