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Mechanical properties for irradiated face-centred cubic nanocrystalline metals

机译:辐照面心立方纳米晶金属的机械性能

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摘要

In this paper, a self-consistent plasticity theory is proposed to model the mechanical behaviours of irradiated face-centred cubic nanocrystalline metals. At the grain level, a tensorial crystal model with both irradiation and grain size effects is applied for the grain interior (GI), whereas both grain boundary (GB) sliding with irradiation effect and GB diffusion are considered in modelling the behaviours of GBs. The elastic-viscoplastic self-consistent method with considering grain size distribution is developed to transit the microscopic behaviour of individual grains to the macroscopic properties of nanocrystals (NCs). The proposed theory is applied to model the mechanical properties of irradiated NC copper, and the feasibility and efficiency have been validated by comparing with experimental data. Numerical results show that: (i) irradiation-induced defects can lead to irradiation hardening in the GIs, but the hardening effect decreases with the grain size due to the increasing absorption of defects by GBs. Meanwhile, the absorbed defects would make the GBs softer than the unirradiated case. (ii) There exists a critical grain size for irradiated NC metals, which separates the grain size into the irradiation hardening dominant region (above the critical size) and irradiation softening dominant region (below the critical size). (iii) The distribution of grain size has a significant influence on the mechanical behaviours of both irradiated and unirradiated NCs. The proposed model can offer a valid theoretical foundation to study the irradiation effect on NC materials.
机译:在本文中,提出了一种自洽塑性理论,以模拟辐照面心立方纳米晶金属的力学行为。在晶粒水平上,将具有辐照和晶粒尺寸效应的张量晶体模型应用于晶粒内部(GI),而在辐照GBs的行为中考虑了具有辐照效应和GB扩散的晶界(GB)滑动。发展了一种考虑晶粒尺寸分布的弹粘塑性自洽方法,以将单个晶粒的微观行为转变为纳米晶体(NCs)的宏观性能。将该理论应用于辐照NC铜的力学性能建模,并与实验数据进行比较,验证了可行性和有效性。数值结果表明:(i)辐照引起的缺陷会导致GI中的辐照硬化,但由于GBs对缺陷的吸收增加,硬化效果随晶粒尺寸而降低。同时,吸收的缺陷将使GBs比未辐照的情况更柔软。 (ii)对于被辐照的NC金属,存在一个临界晶粒尺寸,它将晶粒尺寸分为辐照硬化主导区域(高于临界尺寸)和辐照软化主导区域(低于临界尺寸)。 (iii)晶粒尺寸的分布对辐照和未辐照的NC的机械性能都有重要影响。该模型可以为研究数控材料的辐照效果提供有效的理论基础。

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