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Effect of alumina fiber content on pore structure and properties of porous ceramics
Authors:Ying Lang  Lin Zhao  Xin Dai  Chang-An Wang
Affiliation:1. National Engineer Research Center for Domestic & Building Ceramics, Jingdezhen Ceramic Institute, Jingdezhen, Jiangxi, China;2. State Key Lab of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, China
Abstract:Porous Al2O3 ceramics with different contents of alumina fibers were prepared by gel-casting process. The effects of Al2O3 fiber content on pore size distribution, porosity, compressive strength, and load-displacement behavior of the ceramic materials were investigated. Initial results showed that with the increase of Al2O3 fiber content, the pore size and porosity of the material is increased, and the compressive strength is decreased. However, upon increasing the fiber content from 50 wt% to 67 wt%, the performance of the samples changed greatly. The compressive strength of the material increased, while the porosity remained unchanged, the pore size increased greatly, and the shape of the load displacement curve changed. It showed that when the fiber content increased from 50 wt% to 67 wt%, the loading body in the fiber-reinforced porous ceramics changed from particles to fibers.
Keywords:compressive strength  fiber  pore size distribution  porous ceramics
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