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Special Issue: Radiation Damage in Materials—Helium Effects

机译:特刊:材料的辐射损伤-氦效应

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摘要

Despite its scarcity in terrestrial life, helium effects on microstructure evolution and thermo-mechanical properties can have a significant impact on the operation and lifetime of applications, including: advanced structural steels in fast fission reactors, plasma facing and structural materials in fusion devices, spallation neutron target designs, energetic alpha emissions in actinides, helium precipitation in tritium-containing materials, and nuclear waste materials. The small size of a helium atom combined with its near insolubility in almost every solid makes the helium–solid interaction extremely complex over multiple length and time scales. This , “Radiation Damage in Materials—Helium Effects”, contains review articles and full-length papers on new irradiation material research activities and novel material ideas using experimental and/or modeling approaches. These studies elucidate the interactions of helium with various extreme environments and tailored nanostructures, as well as their impact on microstructural evolution and material properties.
机译:尽管氦气在地球生命中十分匮乏,但它对微观结构演变和热机械性能的影响可能会对应用的运行和寿命产生重大影响,包括:快速裂变反应堆中的高级结构钢,聚变装置中的等离子面和结构材料,散裂中子目标设计,act系元素中的高能α发射,含tri材料中的氦气沉淀以及核废料。氦原子的尺寸很小,几乎在每个固体中都具有不溶性,这使得氦-固体相互作用在多个长度和时间尺度上极为复杂。这篇“材料中的辐射损伤-氦效应”包含有关使用实验和/或建模方法进行的新辐射材料研究活动和新颖材料思想的评论文章和全长论文。这些研究阐明了氦气与各种极端环境和量身定制的纳米结构的相互作用,以及它们对微观结构演变和材料特性的影响。

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