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Effect of statistically stored dislocations in tungsten on the irradiation induced nano-hardening analyzed by different methods

机译:统计储存在钨中对不同方法分析的抗辐射诱导的纳米硬化的影响

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摘要

Tungsten self-ion irradiation was performed at 800 degrees C up to 0.01-1 dpa on two different W grades with essentially different dislocation density. Nanoindentation was applied to characterize the radiation hardening in two W grades with different microstructure. Different methods to analyze the indentation curves were applied to extract the bulk equivalent radiation hardening. It was shown that depending on the applied method, different outcomes may occur. The most satisfactory procedure was established and a consistent set of parameters was found. The bulk equivalent radiation hardening was found to saturate above 0.1 dpa. The characteristic distance between irradiation induced defects acting as dislocation pinning points was found to decrease up to 0.1 dpa, and then saturate/increase with irradiation dose. No essential difference in radiation hardening was observed between the studied W grades with essentially different initial dislocation density. (C) 2020 SCK CEN, Belgian Nuclear Research Centre. Published by Elsevier B.V. All rights reserved.
机译:在800℃至0.01-1 dpa的温度下,对位错密度基本不同的两种不同的钨品位进行钨自离子辐照。采用纳米压痕法对两种不同微观结构的W级材料的辐射硬化进行了表征。采用不同的方法分析压痕曲线,提取体积当量辐射硬化。结果表明,根据应用的方法,可能会出现不同的结果。建立了最令人满意的程序,并找到了一组一致的参数。发现体积当量辐射硬化饱和值高于0.1 dpa。发现作为位错钉扎点的辐照诱导缺陷之间的特征距离减小至0.1 dpa,然后随着辐照剂量饱和/增加。在初始位错密度基本不同的W级之间,未观察到辐射硬化的本质差异。(C) 2020年SCK CEN,比利时核研究中心。由爱思唯尔B.V.出版。版权所有。

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