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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >In situ TEM and multiscale study of dislocation loop formation in the vicinity of a grain boundary
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In situ TEM and multiscale study of dislocation loop formation in the vicinity of a grain boundary

机译:在晶界附近的原位TEM和多尺度研究

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Preferential formation of dislocation loops near a grain boundary (GB) in pure magnesium was observed under in-situ TEM 200 KV electron irradiation at 300 K. These loops are vacancy in nature. A rate-theory-based model is presented to explain this observation. Specifically, the model considered an irradiated domain surrounded by GBs and free surfaces. Molecular dynamics (MD) and finite difference methods (FDM) were combined to calibrate and solve the model. The distribution of loops with respect to the GB can be divided into three regions: 1) a defect free zone adjacent to the GB, 2) a region with vacancy loops in the distance range of 10-200 nm from the GB, and 3) a region free of extended defects far away from the GB. The characteristics of the three zones, and the vacancy nature of the loops can be explained by the relative sink strength of the GB to interstitial-type and vacancy-type defects. (C) 2019 Elsevier B.V. All rights reserved.
机译:在300k的原位TEM 200 kV电子照射下观察到纯镁的晶界(GB)附近的脱位环的优先形成。这些环是自然界的空位。 提出了一种基于速率理论的模型来解释这一观察。 具体地,模型被认为是由GBS和自由表面包围的辐照结构域。 分子动力学(MD)和有限差分方法(FDM)组合以校准并解决模型。 相对于GB的环路的分布可以分为三个区域:1)与GB,2)距离GB的距离范围的空隙环的区域,3)和3)。 一个没有延伸缺陷远离GB的地区。 通过GB与间质型和空位型缺陷的相对沉降强度来解释环的特点,以及环的空位性质。 (c)2019 Elsevier B.v.保留所有权利。

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