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Alloying effects on the fracture toughness of Nb-based silicides and Laves phases

机译:合金化对Nb基硅化物和Laves相的断裂韧性的影响

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摘要

Nb-based in situ composites are characterized by a large volume fraction of silicides and Laves phase particles in an Nb solid solution matrix. The intermetallic hard particles can adversely affect the fracture resistance of the composites. Recent work has shown that certain alloy additions can improve the fracture resistance of Nb-based silicides, Laves phases and the Nb solid solution. In this paper, the effects of alloy additions on the fracture toughness of Nb-based silicides and Laves phases are summarized. Theoretical calculations have been performed to determine the influence of alloy additions on the bond order, unstable stacking energy, and the Peierls-Nabarro energy for selected slip systems in the intermetallics. The theoretical results will be used in conjunction with experimental data to elucidate the possible roles of alloy additions in the slip process and the fracture resistance in Nb-based silicides and Laves phases and to compare the observed behaviors against those in Ti-based silicides and Laves phases.
机译:基于Nb的原位复合材料的特征在于Nb固溶体基质中存在大量的硅化物和Laves相颗粒。金属间硬质颗粒会不利地影响复合材料的抗断裂性。最近的工作表明,某些合金添加剂可以改善Nb基硅化物,Laves相和Nb固溶体的抗断裂性。本文总结了合金添加对Nb基硅化物和Laves相断裂韧性的影响。已经进行了理论计算,以确定金属间化合物中所选滑移系统的合金添加量对键合顺序,不稳定的堆积能和Peierls-Nabarro能的影响。理论结果将与实验数据结合使用,以阐明合金在滑移过程中的可能作用以及Nb基硅化物和Laves相的抗断裂性,并将观察到的行为与Ti基硅化物和Laves的行为进行比较阶段。

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