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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigation on the influence factors for preparing mullite-whisker-structured porous ceramic
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Investigation on the influence factors for preparing mullite-whisker-structured porous ceramic

机译:制备莫来石晶须多孔陶瓷的影响因素研究

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Low-density mullite-whiskers-structured porous ceramic can be obtained through ammonium hexa-fluoroaluminate (AHA) or corn flour adopted as pore-forming agents. The AHA was also used as silicon etchant and source of aluminum. The formation mechanism of sillimanite whiskers and their transformation into mullite whiskers were investigated. The effects of amount and granularity of corn flour doping in the porous ceramic on the bulk density and whisker growth were also investigated. The experimental results demonstrated that sillimanite whiskers were formed by a gas phase reaction via two solid phase processes and mullite whiskers occurred. The mullite transformation starts at 1250 degrees C, completes at 1450 degrees C. Pores from burning out of corn flour will promote the growth of gas-derived sillimanite whiskers with the bulk density reduction of the porous ceramic as well as the heat conductivity coefficient. The optimal amount and granularity of corn flour is 50 wt% and 120-160 mesh, respectively. Meanwhile, the prepared mullite-whisker-structured porous ceramic showed low thermal conductivity at the temperature higher than 1250 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:低密度的莫来石晶须结构的多孔陶瓷可通过将六氟铝酸铵(AHA)或玉米粉用作成孔剂来获得。 AHA还用作硅蚀刻剂和铝的来源。研究了硅线石晶须的形成机理及其向莫来石晶须的转变。还研究了多孔陶瓷中掺入玉米粉的数量和粒度对堆积密度和晶须生长的影响。实验结果表明,通过两个固相过程通过气相反应形成了硅线石晶须,并发生了莫来石晶须。莫来石相变始于1250摄氏度,完成于1450摄氏度。从玉米粉中燃烧出来的毛孔将促进气体衍生的硅线石晶须的生长,同时降低多孔陶瓷的体积密度和导热系数。玉米粉的最佳量和粒度分别为50重量%和120-160目。同时,所制备的莫来石晶须结构的多孔陶瓷在高于1250摄氏度的温度下显示出低导热率。(C)2015 Elsevier B.V.保留所有权利。

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