CN1587189A - Process for preparing high strength corundum refractory material by low temperature sintering - Google Patents

Process for preparing high strength corundum refractory material by low temperature sintering Download PDF

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Publication number
CN1587189A
CN1587189A CN 200410060515 CN200410060515A CN1587189A CN 1587189 A CN1587189 A CN 1587189A CN 200410060515 CN200410060515 CN 200410060515 CN 200410060515 A CN200410060515 A CN 200410060515A CN 1587189 A CN1587189 A CN 1587189A
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corundum
high strength
temperature sintering
strength refractory
preparation
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CN1303036C (en
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杨道媛
关少康
贾晓林
封鉴秋
张海军
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Zhengzhou University
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Zhengzhou University
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Abstract

The present invention provides low temperature sintering process of preparing high strength refractory corundum material. On the basis of multiple stage grain compounding, silica fume of small granularity, high activity and low cost is added as sintering assistant; and after mixing and forming, high strength refractory corundum material is prepared through sintering at relatively low temperature. The said process can prepare high strength refractory corundum material product in low power consumption and low production cost. The high strength refractory corundum material may be used in high temperature furnace and kiln in various industry and in ceramic product.

Description

Low-temperature sintering high strength refractory corundum material preparation method
Affiliated field:
The invention belongs to pottery, refractory materials preparing technical field, being specifically related to a kind of is the preparation method of the low-temperature sintering high strength refractory corundum material of main raw material by fused white corundum aggregate and powder.
Background technology:
Corundum refractory has excellent mechanical property, and it is high temperature resistant, corrosion-resistant, wear-resistant, be develop the earliest, the present bigger a kind of high grade refractory of turnout, be mainly used in field high temperature kiln key position liners such as iron and steel, chemical industry, pottery, machinery, yet the sintering temperature height of corundum based refractory materials, usually more than 1600 ℃, production cost is high, has influenced the widespread use of this material to a certain extent.
In order to reduce the firing temperature of corundum refractory, the method that adopts mainly contains usually:
(1) adds boric acid or B 2O 3Method: after 1550 ℃ of calcinings, make Na 2O generates Sodium Tetraborate and volatilizees, and adds B 2O 3To SiO 2Content aluminum oxide refining effect high and that weave construction is perfect is very effective, but because aluminum oxide forms the coarse-grain structure, therefore density, mechanical property and the dielectric properties of special refractories is all decreased;
(2) MgCl 2Not only can remove the Na in the aluminum oxide 2O, it still burns till the desired crystal formation of corundum ceramic goods and transforms conditioning agent, and does not need to adopt the auxiliary process measure.This method be widely used in produce chemical pure, under vacuum fine and close extraordinary corundum ceramic goods, the corundum grog of Sheng Chaning in this way can the production chemical ingredients, mechanical property and the extra high corundum products of density, sintering temperature is 1500-1620 ℃.Add appropriate MgO and also can promote the sintering of corundum based refractory materials, and improve the intensity of burning till the back material.
(3) if add TiO 2Or MnCO 3Though the corundum refractory calcining temperature can be reduced to 1600 ℃, these two kinds of additives can both make the crystal grain growth grow up, and significantly reduce the physical strength of material, make material painted simultaneously.
(4) add Cr 2O 3Or ZrO 21600 ℃ of corundum based refractory materials burn till after, have excellent high-temperature intensity and thermal shock resistance.
According to putting down in writing in the CSTAD, the heavy oil pressurized-gasification furnace corundum products project of Refractory Material Factory, Xinxiang City's evaluation in 1993 is characterized in adding an amount of alumina powder in batching, and adopts phosphate binders, burns till at 1550-1610 ℃.The high-purity corundum brick of Luoyang Institute of Refractories Research's evaluation in 1992, be characterized in adopting showing under two kinds of high temperature that different electric smelting and the alundums that burn till contraction are main raw material, and add part active oxidation aluminium powder, multiple stage material compounding, two-sided extrusion forming, high temperature are burnt till and are made.
Application number is 00123761.6 patent, a kind of high-purity low silicon and low iron corundum products is disclosed, being characterized in removing in batching fused corundom, sintered alumina fine powder and wedding agent adds into micro-calcareous material as sintering aid, improved the sintering situation of brick, make brick burn till the good sintering of realization under the temperature low, the high-purity corundum brick cold crushing strength of making is about 110MPa.
Application number is 99123977.6 patent, adds the kaolin fine powder relatively largely in matrix, thereby prepares corundum-mullite product.
Application number is the patent of 88104671.X, be characterized in sintered sheet corundum crystalline particle moulding in prefabricated model of all having cleavage surface by numerous, then through 1500 ℃ of sintering, make and assemble mutually between the particle and combine, its combination makes that the cleavage surface of these accumulative plate crystal granules is parallel to each other substantially, thereby prepares high flexural strength sintered alumina article.
The problem that the method for putting down in writing in the above-mentioned document for preparing corundum refractory exists is, firing temperature is higher, and energy consumption is big, and the cost height has influenced the production of corundum refractory and being extensive use of in hot industry thereof to a certain extent.
Summary of the invention:
The purpose of this invention is to provide a kind of silicon ash that utilizes cheapness as sintering aid, prepare the method for high strength refractory corundum material at a lower temperature,, cut down the consumption of energy and preparation cost, be beneficial to industry manufacturing to reduce firing temperature.
Principle of the present invention is to add the proper amount of silicon ash in the corundum raw material, utilizes the short nodulizing of the higher silicon ash of sintering activity under the high temperature, makes the corundum material Fast Sintering, thereby obtains low sintering high-strength corundum material.If silicon ash add-on very little, in temperature of the present invention, material does not reach good sintering state, and intensity is lower.If but silicon ash add-on is excessive, the interior mullite synthesizing of material is mutually too much in the sintering process, and volumetric expansion is bigger, influences the performance of product.Therefore, the add-on of silicon ash should be suitable.
Realize that the object of the invention technical scheme is:
The preparation method of low-temperature sintering high strength refractory corundum material comprises that mainly raw material mixes, adds wedding agent, mixing, shaping and drying, technological process such as burns till, and is characterized in that:
A. with electric smelting or alundum raw material crushing or be ground into 3-1mm, 1-0.088mm, the particle of three kinds of granularities below the 0.088mm;
B. make sintering aid with silicon ash or monox nanometer powder, mix in the corundum in granules material below massfraction 1-9% (adding) ratio and the 0.088mm, as the matrix material;
C. the corundum in granules material with 3-1mm, 1-0.088mm mixes;
D. add wedding agent in the c compound, after mixing, add the matrix material that b obtains, remix is even, makes pug
E. the pug that d is made is put into pressing machine, is pressed into base substrate under 70-200MPa pressure, and drying was burnt till 2-8 hour under 1300-1550 ℃ of temperature then, and cooling is come out of the stove, and promptly makes product.
Among the above-mentioned preparation method, 3-1mm, 1-0.088mm, the following three kinds of different corundum raw material ratio of mixture of 0.088mm are 40-50%: 10-20%: 30-40%, are preferably 45: 15: 40; The add-on of wedding agent is the 3-15% of corundum raw material.
Among the above-mentioned preparation method, used corundum raw material is a kind of in fused white corundum, plate diamond spar, brown corundum, grey corundum, bauxite corundum, the alundum; Wedding agent is one or more in lignosulfite, polyvinyl alcohol, dextrin, the xylogen.
With the corundum material that the inventive method makes, thing phase composite: corundum 〉=98%, physical and chemical performance: Al 2O 3〉=90%, volume density 2.8-3.2g/cm 3, apparent porosity≤25%, strength at normal temperature 〉=20MPa, cold crushing strength 〉=80MPa.
Compared with prior art, the invention has the advantages that:
1, adopts the silicon ash as sintering aid, reduced the firing temperature of material, reduced preparation cost.
2, Zhi Bei strength of materials height, the work-ing life that helps improving material.
3, silicon ash source is abundant, cheap, and short nodulizing is obvious.
Embodiment
Embodiment 1:
The employed main raw material of present embodiment is:
(1) fused white corundum: chemical ingredients (massfraction) is Al 2O 3〉=98%, granularity is following three kinds of 3-1mm, 1-0.088mm, 0.088mm;
(2) silicon ash: select SiO for use 2〉=91%.
Raw material of the present invention and silicon ash proportioning are as shown in the table:
Raw material fused white corundum silicon ash
Granularity 3-1mm 1-0.088mm<0.088mm 0.1 μ m
Proportioning (weight fraction %) 45 15 40 4
Take by weighing various fused white corundum raw materials in ratio shown in the last table, wherein adding the silicon ash is 4%.Earlier the following fused white corundum particulate material of 0.088mm and silicon ash are mixed the matrix material; Again with 3-1mm, the Preblend of 1-0.088mm particulate, and add 3% polyvinyl alcohol wedding agent and put into mixer and mix, add the matrix material at last and in mixer, mix 5 minutes to evenly promptly making pug; Pug is put into pressing machine go out 25 * 25 * 125mm base substrate at the 80MPa forming under the pressure; Base substrate was 110 ℃ of dryings 4 hours; 1350 ℃ * 6h burns till in electric furnace then, and cooling is come out of the stove, and makes corundum material.
The corundum material performance that makes is as follows: Al 2O 3〉=90%, volume density 2.9g/cm 3, apparent porosity 25%, strength at normal temperature 33.4MPa, cold crushing strength 105MPa.
Embodiment 2:
The employing fused brown corundum is a particulate material, and proportioning raw materials and preparation technology go out 25 * 25 * 125mm base substrate with embodiment 1 at the 120MPa forming under the pressure; Base substrate was 110 ℃ of dryings 4 hours; In electric furnace, burn till 1550 ℃ * 6h.The corundum material performance that makes is as follows: principal crystalline phase is the corundum phase, Al 2O 3〉=90%, volume density 3.0g/cm 3, apparent porosity 23%, strength at normal temperature 35MPa, the material mineral facies consist of more purified corundum phase.
Embodiment 3:
Add 9% silicon ash in batching, wedding agent adopts lignosulfite, and other raw materials and proportioning and preparation technology go out 25 * 25 * 125mm base substrate with embodiment 1 at the 120MPa forming under the pressure; Base substrate was 110 ℃ of dryings 4 hours; In electric furnace, burn till 1350 ℃ * 6h.The corundum material performance that makes is as follows: principal crystalline phase is the corundum phase, Al 2O 3〉=90%, volume density 3.1g/cm 3, apparent porosity 19%, strength at normal temperature 45MPa, the material mineral facies consist of corundum mutually with the trace mullite mutually.

Claims (6)

1, a kind of preparation method of low-temperature sintering high strength refractory corundum material comprises that mainly raw material mixes, adds wedding agent, moulding, drying, technological process such as burns till, and is characterized in that:
A. with electric smelting or alundum raw material crushing or be ground into 3-1mm, 1-0.088mm, the particle of three kinds of granularities below the 0.088mm;
B. make sintering aid with silicon ash or monox nanometer powder, mix in massfraction 1-9% ratio and the corundum in granules material below the 0.088mm, as the matrix material;
C. the corundum in granules material with 3-1mm, 1-0.088mm mixes;
D. in the compound of c, add wedding agent and mix, add the matrix material of b again, mix, make pug;
E. the pug that d is made is put into pressing machine, is pressed into base substrate under 70-200MPa pressure, and drying was burnt till 2-8 hour under 1300-1550 ℃ of temperature then, and cooling is come out of the stove, and promptly makes product.
2, according to the preparation method of the described low-temperature sintering high strength refractory corundum material of claim 1, it is characterized in that: the ratio of mixture of 3-1mm, 1-0.088mm, the following three kinds of different corundum raw materials of 0.088mm is 40-50%: 10-20%: 30-40%.
3, the ratio of mixture of 3-1mm, 1-0.088mm, the following three kinds of different corundum raw materials of 0.088mm is preferably 45%: 15%: 40%.
4, according to the preparation method of the described low-temperature sintering high strength refractory corundum material of claim 1, it is characterized in that: the add-on of wedding agent is the 3-15% of corundum raw material.
5, according to the preparation method of the described low-temperature sintering high strength refractory corundum material of claim 1, it is characterized in that: said corundum raw material is a kind of in fused white corundum, plate diamond spar, brown corundum, grey corundum, bauxite corundum, the alundum.
6, according to the preparation method of the described low-temperature sintering high strength refractory corundum material of claim 1, it is characterized in that: said wedding agent is one or more in lignosulfite, polyvinyl alcohol, dextrin, the xylogen.
CNB2004100605157A 2004-09-15 2004-09-15 Process for preparing high strength corundum refractory material by low temperature sintering Expired - Fee Related CN1303036C (en)

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100436369C (en) * 2005-03-29 2008-11-26 郑州大学 Method for preparing corundum bricks composite with Nano alpha-Al2O3
CN105084914A (en) * 2015-07-09 2015-11-25 长兴泓矿炉料有限公司 Fireproof material filler and preparation method therefor
CN105152668A (en) * 2015-10-13 2015-12-16 攀钢集团攀枝花钢铁研究院有限公司 Chromium-free brick for RH inner lining and preparation method of chromium-free brick
CN106220203A (en) * 2016-08-06 2016-12-14 山东铭特陶瓷材料有限公司 Wear-resistant ceramic load bearing board and preparation method thereof
CN106242597A (en) * 2016-08-06 2016-12-21 山东铭特陶瓷材料有限公司 Wear-resistant ceramic pillar brick and preparation method thereof
CN106588098A (en) * 2017-01-09 2017-04-26 武汉科技大学 Dispersion corundum-spinel air brick and preparation method thereof
CN106946589A (en) * 2017-03-24 2017-07-14 山东磐石刚玉有限公司 The technique and the technique device therefor of Brown Alundum plating zirconium oxide
CN113149618A (en) * 2021-05-08 2021-07-23 湖南聚福精密陶瓷有限责任公司 Ceramic burning bearing plate and processing technology thereof
WO2022144013A1 (en) * 2020-12-31 2022-07-07 郑州轻工业大学 Corundum-based micro-nano-porous heat insulating refractory material and preparation method therefor
CN115477533A (en) * 2022-10-17 2022-12-16 中冶赛迪工程技术股份有限公司 Nano ZrO 2 Toughened high-alumina refractory brick and preparation method and application thereof

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Publication number Priority date Publication date Assignee Title
JPS57123860A (en) * 1981-01-22 1982-08-02 Shinagawa Refractories Co Alumina carbon refractories
JP2556418B2 (en) * 1992-07-14 1996-11-20 大光炉材株式会社 Irregular refractory material
JPH11171657A (en) * 1997-12-12 1999-06-29 Hazuru Dolomite Kogyo Kk Castable refractory
CN1208285C (en) * 2001-04-27 2005-06-29 项新惠 Refractory for cupola furnace
CN1209320C (en) * 2001-07-24 2005-07-06 杨晓芳 High-strength wear-resistant cast material of compact electrically molten corundum

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100436369C (en) * 2005-03-29 2008-11-26 郑州大学 Method for preparing corundum bricks composite with Nano alpha-Al2O3
CN105084914A (en) * 2015-07-09 2015-11-25 长兴泓矿炉料有限公司 Fireproof material filler and preparation method therefor
CN105152668A (en) * 2015-10-13 2015-12-16 攀钢集团攀枝花钢铁研究院有限公司 Chromium-free brick for RH inner lining and preparation method of chromium-free brick
CN106220203A (en) * 2016-08-06 2016-12-14 山东铭特陶瓷材料有限公司 Wear-resistant ceramic load bearing board and preparation method thereof
CN106242597A (en) * 2016-08-06 2016-12-21 山东铭特陶瓷材料有限公司 Wear-resistant ceramic pillar brick and preparation method thereof
CN106220203B (en) * 2016-08-06 2019-03-26 山东铭特陶瓷材料有限公司 The preparation method of wear-resistant ceramic load bearing board
CN106242597B (en) * 2016-08-06 2019-03-26 山东铭特陶瓷材料有限公司 The preparation method of wear-resistant ceramic pillar brick
CN106588098B (en) * 2017-01-09 2019-06-25 武汉科技大学 A kind of diffusion-type corundum-spinel air brick and preparation method thereof
CN106588098A (en) * 2017-01-09 2017-04-26 武汉科技大学 Dispersion corundum-spinel air brick and preparation method thereof
CN106946589A (en) * 2017-03-24 2017-07-14 山东磐石刚玉有限公司 The technique and the technique device therefor of Brown Alundum plating zirconium oxide
CN106946589B (en) * 2017-03-24 2019-06-21 山东磐石刚玉有限公司 The technique and the technique device therefor of Brown Alundum plating zirconium oxide
WO2022144013A1 (en) * 2020-12-31 2022-07-07 郑州轻工业大学 Corundum-based micro-nano-porous heat insulating refractory material and preparation method therefor
CN113149618A (en) * 2021-05-08 2021-07-23 湖南聚福精密陶瓷有限责任公司 Ceramic burning bearing plate and processing technology thereof
CN115477533A (en) * 2022-10-17 2022-12-16 中冶赛迪工程技术股份有限公司 Nano ZrO 2 Toughened high-alumina refractory brick and preparation method and application thereof

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