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Liquid Phase Sintering of SiC-Ceramics

机译:SiC陶瓷的液相烧结

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摘要

In view of considerable attention in the development of liquid phase sintered SiC, a comprehensive study of the data on processing, structure and properties seems highly relevant. This article provides a detailed and critical overview of liquid phase sintered silicon carbide ceramics with primary emphasis of grain-boundary/secondary phase evolution, their structure, distribution on the final properties of the sintered materials. The roles of individual additives in developing boundary microstructures will be identified and demonstrated to be critical in optimizing the mechanical properties, including fracture toughness, flexural strength and creep resistance. Numerous methods of structure-properties modification, like in-situ-toughening, β→α-SiC phase transformation, volume of liquid phase, partial/full crystallization of grain-boundary and/or secondary phases are conclusively discussed. Apart from conventional pressureless sintering of SiC, enhanced spark plasma sintering with different oxide and non-oxide sintering additives are also discussed in terms of phase evolution, microstructure and their structure mechanical properties are correlated.
机译:鉴于液相烧结SiC的发展引起了极大的关注,对加工,结构和性能数据的全面研究似乎非常重要。本文提供了液相烧结碳化硅陶瓷的详细而严格的概述,重点是晶界/次级相的演变,其结构,对烧结材料最终性能的分布。将确定各种添加剂在形成边界微结构中的作用,并证明它们对优化机械性能(包括断裂韧性,抗弯强度和抗蠕变性)至关重要。最后讨论了许多改变结构性能的方法,例如原位增韧,β→α-SiC相转变,液相体积,晶界和/或次级相的部分/完全结晶。除了传统的无压烧结SiC之外,还讨论了用不同氧化物和非氧化物烧结添加剂增强火花等离子烧结的相演变,微观结构及其结构力学性能之间的关系。

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