层状结构
材料科学
多孔性
陶瓷
复合材料
制作
铸造
垂直的
流延
多孔介质
泥浆
定向凝固
微观结构
几何学
医学
替代医学
病理
数学
作者
Yufei Tang,Miao Qian,Sha Qiu,Kang Zhao,Long Hu
标识
DOI:10.1016/j.jeurceramsoc.2014.05.040
摘要
A novel freeze-casting method is used to fabricate aligned lamellar porous alumina with a centrosymmetric structure from aqueous alumina slurries. Two cold fronts oriented perpendicularly to each other, originating from the bottom and side of the cylindrical copper mold, induce the growth of ice crystals in specific directions along the radius of the cylindrical mold. Lamellar channels of porous alumina are arranged centrosymmetrically along the radial axis. The pore distribution of the currently prepared porous ceramics is more regular when compared with that of porous ceramics prepared by conventional freeze casting. This affords porous ceramics with improved mechanical properties and stability. The current method addresses the issue of partial failure as induced by the randomly distributed channels in lamellar porous ceramics.
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