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Permeability and high temperature strength of porous mullite-alumina ceramics for hot gas filtration

机译:用于热气过滤的多孔莫来石-氧化铝陶瓷的渗透性和高温强度

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摘要

The gas permeability and mechanical properties of mullite-alumina ceramics for potential use as filters in hot gas separation environments are examined. The mullite-alumina ceramics with different levels of induced porosity and pores sizes were fabricated by slip casting and characterised in terms of microstructure and strength properties at ambient and elevated temperatures. Permeability to nitrogen gas flow of the porous structures at ambient temperature was investigated over a range of flow velocities to quantify and assess the permeability. The strength at high temperatures is equivalent to ambient data signifying no discernible degradation. Nitrogen gas permeability tests reveal dramatic reductions in the pressure drop–gas velocity curves with increasing porosity. It is shown that the gas permeability increases with the level of porosity and pore size, with maximum Darcian permeability constant of k = 2.5×10−14 m2 for a porosity of 71%.
机译:研究了在热气分离环境中潜在用作过滤器的莫来石-氧化铝陶瓷的透气性和机械性能。通过滑模铸造制备了具有不同水平的诱导孔隙率和孔径的莫来石-氧化铝陶瓷,并根据环境和高温下的微观结构和强度特性进行了表征。在一定的流速范围内研究了多孔结构在室温下对氮气流的渗透性,以量化和评估渗透率。高温下的强度等于环境数据,表明没有明显的退化。氮气渗透性测试表明,随着孔隙度的增加,压降-气体速度曲线显着降低。结果表明,气体渗透率随孔隙度和孔隙大小的增加而增加,最大达西渗透率常数为k = 2.5×10−14 m2 ,孔隙率为71%。

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  • 来源
    《Journal of Materials Science》 |2006年第2期|423-430|共8页
  • 作者单位

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

    Materials and Engineering Science Australian Nuclear Science and Technology OrganisationYear-in-Industry student from the Department of Production Engineering University of Bremen;

    Materials and Engineering Science Australian Nuclear Science and Technology Organisation;

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  • 正文语种 eng
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