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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >In-situ TEM investigation of nano-scale helium bubble evolution in tantalum-doped tungsten at 800 degrees C
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In-situ TEM investigation of nano-scale helium bubble evolution in tantalum-doped tungsten at 800 degrees C

机译:在800摄氏度钽掺杂钨中纳米级氦气泡沫进化的原位TEM调查

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The aim of this work is to probe the helium-induced defect production and accumulation in 40 keV He+ irradiated polycrystalline W and its alternative alloy W-5wt.%Ta using transmission electron microscopy (TEM) combined with in-situ helium irradiation at 800 degrees C. A maximum damage level of 1 dpa with a maximum He-to-dpa ratio of 5.5 at%/dpa has been reached in this work for both materials, which corresponds to an ion fluence of 7.33 x 10(16) He+/cm(2). The presence of radiation-induced dislocation loops was not observed at this temperature. The low density of the incipient bubbles in W has been already detected at 0.004 dpa, which corresponds to a fluence of 3.3 x 10(14)He(+)/cm(2). The experiments conducted at 800 degrees C have shown that the addition of 5wt.% of tantalum into tungsten may diminish the binding of He ions with vacancies into complexes, which serve as the core of the bubble, thus hindering helium bubble formation below 0.02 dpa and their further growth and population at higher damage levels. By exceeding the damage dose >= 0.3 dpa, a progressive transition from a spherical to a faceted shape of the bubbles has been observed in W but not in the W-5Ta alloy. At 1 dpa, >80% of the bubbles in W were of the faceted type with the facet planes of {110}. Crown Copyright (C) 2021 Published by Elsevier B.V. All rights reserved.
机译:本工作的目的是探索40 keV氦离子辐照多晶W及其替代合金W-5wt%中氦诱导的缺陷产生和积累Ta使用透射电子显微镜(TEM)结合800℃下的原位氦辐照。这两种材料的最大损伤水平为1 dpa,最大He/dpa比为5.5 at%/dpa,对应于7.33 x 10(16)He+/cm(2)的离子注量。在此温度下未观察到辐射诱导位错环的存在。在0.004 dpa时,已经检测到W中初始气泡的低密度,相当于3.3 x 10(14)He(+)/cm(2)的通量。在800℃下进行的实验表明,添加5wt.%将钽转化为钨可能会减少氦离子与空位结合成络合物,而络合物是气泡的核心,从而阻碍0.02 dpa以下氦气泡的形成,以及它们在更高损伤水平下的进一步增长和数量。通过超过损伤剂量>=0.3 dpa,在W中观察到气泡从球形逐渐过渡到多面形状,但在W-5Ta合金中未观察到。在1dpa时,W中>80%的气泡为{110}的小平面类型。皇冠版权(C)2021由爱思唯尔B.V.出版保留所有权利。

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