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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Atomistic simulation study of clustering and evolution of irradiation-induced defects in zirconium
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Atomistic simulation study of clustering and evolution of irradiation-induced defects in zirconium

机译:锆辐射诱导缺陷聚类和演化的原子仿真研究

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Zirconium (Zr) alloys have been widely used as structural materials for in-core components in watercooled nuclear reactors. During normal operation, these materials are exposed to a neutron flux in the core of the reactor, resulting in material degradation such as irradiation-induced anisotropic growth, thus affecting their performance in the long-term. Experimental and theoretical studies have shown that irradiation-induced defects in zirconium lead to the formation of defect clusters and loops. The anisotropy in the migration of defects has been suggested to play an important role in irradiation growth in pure Zr and its alloys. However, the mechanisms that govern the microstructural evolution that lead to the observed anisotropic growth of Zr is still unclear. In the present work, we perform a molecular dynamics simulation study of irradiation-induced lattice defects in Zr to investigate the formation of clusters and loops. Irradiation-induced damage is modeled by constrained stochastic formation of vacancies and self-interstitial atoms in bulk Zr. Using this approach, the formation and evolution of defect clusters and loops were determined. The dynamic properties of lattice defect structures were investigated through the evaluation of their migration and diffusivity. We found that the diffusivity of vacancy and interstitial clusters is anisotropic and slow, while the diffusivity of large loops is relatively high and confined to the CaD plane. Crown Copyright (C) 2020 Published by Elsevier B.V. All rights reserved.
机译:锆(Zr)合金已广泛用作水冷核反应堆中核心成分的结构材料。在正常操作期间,这些材料暴露于反应器的核心中的中子通量,导致材料降解如辐照诱导的各向异性生长,从而长期影响它们的性能。实验和理论研究表明,锆中的辐射诱导的缺陷导致形成缺陷簇和环。已经提出缺陷迁移的各向异性在纯ZR及其合金中发挥着辐照生长的重要作用。然而,治理导致Zr观察到各向异性生长的微观结构演化的机制仍然尚不清楚。在本作本作中,我们进行Zr中辐照诱导的晶格缺陷的分子动力学模拟研究,以研究簇和环的形成。通过约束抗体的损伤模型损伤,在批量ZR中受到限制的随机形成空缺和自隙原子。使用这种方法,确定了缺陷簇和环的形成和演化。通过评估它们的迁移和扩散性来研究格子缺陷结构的动态性质。我们发现空位和间隙簇的扩散性是各向异性和慢的,而大环的扩散率相对较高并且限制在CAD平面上。皇家版权(c)2020由elestvier b.v发布。保留所有权利。

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