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Preparation and thermal shock resistance of corundum-mullite composite ceramics from andalusite

机译:Andalusite刚玉莫来石复合陶瓷的制备及热抗冲击性

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摘要

Corundum-mullite composite ceramics have high hardness, small plastic deformation and other excellent performances at high temperature. Corundum-mullite composite ceramics were fabricated from andalusite and alpha-Al2O3 by in-situ synthesis technology. Effects of mullite/corundum ratio and sintering temperatures on the water absorption, apparent porosity, bulk density, bending strength, thermal shock resistance, phase composition and microstructure of the sample were investigated. Results indicated that the in-situ synthesized mullite from andalusite combined with corundum satisfactorily, which significantly improved the thermal shock resistance as no crack formed after 30 cycles of thermal shock (1100 degrees C-room temperature, air cooling). Formula A4 (andalusite: 37.31 wt%, alpha-Al2O3: 62.69 wt%, TiO2 in addition: 1 wt%, mullite: corundum=6:4 in wt%) achieved the optimum properties when sintering at 1650 degrees C, which were listed as follows: water absorption of 0.15%, apparent porosity of 0.42%, and bulk density of 3.21 g.cm(-3), bending strength of 117.32 MPa. The phase composition of the sintered samples before and after thermal shock tests were mullite and corundum constantly. The fracture modes of the crystals were transgranular and intergranular fractures, which could endow the samples with high thermal shock resistance.
机译:刚玉 - 莫来石体复合陶瓷具有高硬度,小的塑性变形和在高温下的其他优异性能。通过原位合成技术从Andalusite和Alpha-Al2O3制造刚玉 - 莫来石复合陶瓷。研究了莫来石/刚玉比和烧结温度对样品的吸水,表观孔隙率,堆积密度,弯曲强度,耐热抗冲击性,相组成和微观结构的影响。结果表明,原位合成的莫勒斯与甘露狼结合令人满意的刚玉,这显着改善了在热冲击30次循环后形成的裂缝(1100摄氏度,空气冷却)未形成的裂缝。式A4(Andalusite:37.31wt%,alpha-Al2O3:62.69wt%,TiO 2如下:吸水率为0.15%,表观孔隙率为0.42%,堆积密度为3.21g /厘米(-3),弯曲强度为117.32MPa。热冲击试验前后烧结样品的相组成是莫来石和刚玉不断。晶体的骨折模式是跨晶和骨间骨折,其可以赋予具有高耐热抗震性的样品。

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