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体心立方钨中[100]对称倾斜晶界空位偏聚的能量学

Energetics of vacancy segregation to [100] symmetric tilt grain boundaries in bcc tungsten.

作者信息

Chen Nanjun, Niu Liang-Liang, Zhang Ying, Shu Xiaolin, Zhou Hong-Bo, Jin Shuo, Ran Guang, Lu Guang-Hong, Gao Fei

机构信息

College of Energy, Xiamen University, Xiamen City, Fujian Province, 361102, China.

Department of Nuclear Engineering and Radiological Science, University of Michigan, Ann Arbor, MI 48109 USA.

出版信息

Sci Rep. 2016 Nov 22;6:36955. doi: 10.1038/srep36955.

Abstract

The harsh irradiation environment poses serious threat to the structural integrity of leading candidate for plasma-facing materials, tungsten (W), in future nuclear fusion reactors. It is thus essential to understand the radiation-induced segregation of native defects and impurities to defect sinks, such as grain boundaries (GBs), by quantifying the segregation energetics. In this work, molecular statics simulations of a range of equilibrium and metastable [100] symmetric tilt GBs are carried out to explore the energetics of vacancy segregation. We show that the low-angle GBs have larger absorption length scales over their high-angle counterparts. Vacancy sites that are energetically unfavorable for segregation are found in all GBs. The magnitudes of minimum segregation energies for the equilibrium GBs vary from -2.61 eV to -0.76 eV depending on the GB character, while those for the metastable GB states tend to be much lower. The significance of vacancy delocalization in decreasing the vacancy segregation energies and facilitating GB migration has been discussed. Metrics such as GB energy and local stress are used to interpret the simulation results, and correlations between them have been established. This study contributes to the possible application of polycrystalline W under irradiation in advanced nuclear fusion reactors.

摘要

在未来的核聚变反应堆中,恶劣的辐照环境对面向等离子体材料的主要候选材料钨(W)的结构完整性构成了严重威胁。因此,通过量化偏聚能来了解原生缺陷和杂质向诸如晶界(GBs)等缺陷阱的辐射诱导偏聚至关重要。在这项工作中,我们对一系列平衡和亚稳态的[100]对称倾斜晶界进行了分子静力学模拟,以探索空位偏聚的能量学。我们表明,低角度晶界比高角度晶界具有更大的吸收长度尺度。在所有晶界中都发现了空位在能量上不利于偏聚的位置。平衡晶界的最小偏聚能大小根据晶界特性在-2.61 eV至-0.76 eV之间变化,而亚稳态晶界状态的最小偏聚能往往要低得多。讨论了空位离域在降低空位偏聚能和促进晶界迁移方面的重要性。使用诸如晶界能量和局部应力等指标来解释模拟结果,并建立了它们之间的相关性。这项研究有助于多晶钨在先进核聚变反应堆辐照下的可能应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db1d/5118800/c9fc8c0362d6/srep36955-f1.jpg

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