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首页> 外文期刊>Acta Metallurgica et Materialia >THE INFLUENCE OF ALLOYING MODIFICATIONS ON MECHANICAL PROPERTIES, PHASE STABILITY, AND FAULT ENERGIES IN CUBIC TITANIUM TRIALUMINIDE-BASED ALLOYS
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THE INFLUENCE OF ALLOYING MODIFICATIONS ON MECHANICAL PROPERTIES, PHASE STABILITY, AND FAULT ENERGIES IN CUBIC TITANIUM TRIALUMINIDE-BASED ALLOYS

机译:合金变质对基于立方三氧化钛钛合金的力学性能,相稳定性和断裂能的影响

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摘要

The cubic titanium trialuminide alloys studied previously show limited ductility and toughness, which can be related to the difficulties of dislocation emission, multiplication and mobility and to the excessively high energies of faults associated with the dislocations. The present study examines several new alloys chosen in an attempt to reduce these fault energies and thereby improve the mechanical properties. The region of single phase L1_2 material is unfortunately so limited that only minor changes in composition are possible before second phases form and precipitation hardening occurs. Over the range of compositions of the L1_2 phase evaluated there are generally only small changes in fault energies. These changes, as well as the changes in dislocation configurations seen, may be rationalized in terms of the instability of the matrix towards the particular second phase forming.
机译:先前研究的立方三元铝钛合金显示出有限的延展性和韧性,这可能与位错发射,扩散和迁移的困难以及与位错相关的断层能量过高有关。本研究检查了几种试图减少这些故障能量从而改善机械性能的新合金。不幸的是,单相L1_2材料的区域受到限制,以致在第二相形成和沉淀硬化发生之前,成分的微小变化是可能的。在所评估的L1_2相的组成范围内,故障能量通常只有很小的变化。这些变化以及所观察到的位错构型的变化可以根据基质对特定第二相形成的不稳定性来合理化。

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