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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Interaction of candidate plasma facing materials with tokamak plasma in COMPASS
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Interaction of candidate plasma facing materials with tokamak plasma in COMPASS

机译:候选等离子体面向托卡马克等离子在指南针中的相互作用

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摘要

The interaction of tokamak plasma with several materials considered for the plasma facing components of future fusion devices was studied in a small-size COMPASS tokamak. These included mainly tungsten as the prime candidate and chromium steel as an alternative whose suitability was to be assessed. For the experiments, thin coatings of tungsten, P92 steel and nickel on graphite substrates were prepared by arc-discharge sputtering. The samples were exposed to hydrogen and deuterium plasma discharges in the COMPASS tokamak in two modes: a) short exposure (several discharges) on a manipulator in the proximity of the separatrix, close to the central column, and b) long exposure (several months) at the central column, aligned with the other graphite tiles. During the discharges, standard plasma diagnostics were used and a local emission of spectral lines in the visible near ultraviolet regions, corresponding to the material erosion, was monitored. Before and after the plasma exposures, the sample surfaces were observed using scanning electron microscopy, the coatings thickness was measured using Rutherford backscattering spectroscopy, and the concentration profiles of hydrogen and deuterium were measured by elastic recoil detection analysis.
机译:在小型指南针托卡马克中研究了托卡马克等离子体与考虑用于未来融合装置的等离子体组件的若干材料的相互作用。这些主要包括钨作为素候选和铬钢作为替代方案,其适合评估。对于实验,通过电弧放电溅射制备钨,P92钢和石墨衬底上镍的薄涂层。将样品暴露于氢气和氘等离子体中的两种模式:a)在分离器附近的机械手上的短曝光(几个放电),靠近中心柱,B)长曝光(几个月)在中心列,与其他石墨瓷砖对齐。在放电期间,使用标准等离子体诊断,并监测与材料侵蚀相对应的紫外区域附近的可见光线的局部发射。在等离子体曝光之前和之后,使用扫描电子显微镜观察样品表面,使用Rutherford反向散射光谱测量涂层厚度,通过弹性反冲检测分析测量氢气和氘的浓度谱。

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