Effects of Proton Irradiation on Microstructure and Mechanical Properties of Nanocrystalline Cu-10at%Ta Alloy

Priyam V. Patki, Yaqiao Wu, J. Wharry
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Abstract

Duplex nanocrystalline Cu-10at%Ta is attractive for extreme environments because of its grain size stability at high homologous temperatures, owing to dispersed Ta nanoclusters. This study is an initial investigation into the microstructural and mechanical stability of Cu-10at%Ta under irradiation. Proton irradiation is carried out to 1 displacement per atom (dpa) at 500°C. The Cu-10at%Ta exhibits grain size stability throughout irradiation and resistance to the formation of irradiation-induced defects. However, Ta nanoclusters undergo ballistic dissolution. Nanoindentation reveals there is no significant irradiation hardening, consistent with the relatively irradiation-stable microstructure. Ballistic dissolution of Ta nanoclusters is discussed in the context of Orowan strengthening.
质子辐照对纳米晶Cu-10at%Ta合金组织和力学性能的影响
由于分散的Ta纳米团簇,Cu-10at%Ta双相纳米晶在高温下具有稳定的晶粒尺寸,因此在极端环境中具有吸引力。本研究是对Cu-10at%Ta在辐照下的显微组织和力学稳定性的初步研究。在500°C下,以每原子1位移(dpa)的速度进行质子辐照。Cu-10at%Ta在整个辐照过程中表现出晶粒尺寸的稳定性和抗辐照缺陷的形成。然而,Ta纳米团簇经历弹道溶解。纳米压痕显示没有明显的辐照硬化,符合相对辐照稳定的微观结构。在Orowan强化的背景下讨论了Ta纳米团簇的弹道溶解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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