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Pore Architectures and Mechanical Properties of Porous α-SiAlON Ceramics Fabricated via Unidirectional Freeze Casting Based on Camphene-Templating

机译:基于坎彭模铸的单向冻结铸造多孔α-SiAlON陶瓷的孔结构和力学性能

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摘要

Porous α-SiAlON ceramics were fabricated using the camphene-based unidirectional freeze casting method, in which a gradient porous structure was formed as a result of the decreased solidification velocity in the freezing direction. Microstructure, porosity and pore size distribution of different parts of as-prepared samples were examined and compared, and correlated with their mechanical properties. For a given solid loading, the overall pore size and porosity of the top part were greater than those of the bottom part. Interestingly, despite its higher porosity, the flexural strength and fracture toughness of the top part were both higher than those of the bottom part, suggesting that apart from porosity, pore morphology and size affected mechanical properties of as-prepared porous α-SiAlON ceramics.
机译:多孔α-SiAlON陶瓷是使用基于hen烯的单向冷冻浇铸法制造的,其中,由于凝固方向凝固速度的降低,形成了梯度多孔结构。检查并比较了所制备样品不同部分的微观结构,孔隙率和孔径分布,并与它们的力学性能相关。对于给定的固体负载,顶部的总孔径和孔隙率大于底部的总孔径和孔隙率。有趣的是,尽管其孔隙率较高,但其顶部的抗弯强度和断裂韧性均高于底部,这表明除了孔隙率以外,孔的形貌和尺寸也会影响所制备的多孔α-SiAlON陶瓷的力学性能。

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