Study of the Erosion of Copper by Hot Plasma

R. S. Monzamodeth, B. Campillo
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Abstract

An exhaustive study of the erosion process of a copper cathode exposed to a hot plasma column of 2kJ of energy (T≈0.5-2.0keV) and high electron density (n≈1019-1022cm3) was made, as well as, the radiation field of charged and neutral particles. The characterization of the cumulative damage generated by the plasma/cathode interaction was made by the use of metallographic techniques, scanning electron microscopy (SEM) and by the analysis of mechanical properties. Damage accumulation produced by the impacts of deuterium plasma discharge created in the copper electrode a deep cavity similar to a crater, modifying the morphology of the surface and below it. The microhardness Vickers test was carried out making indentations from the final part of the cavity to cover 1 cm with indentations every 200 μm. Different areas of hardening were observed, the profile suggests a hardening/recovery front and simultaneous recrystallization in the sample, phenomenon associated with the heating/cooling cycles to which the copper cathode is subjected. Images were captured by SEM at different distances from the center of the surface. The region that showed involvement at the macro level corresponds to 2/3 of the radius of the sample from the center to the outside. These phenomena studied are important to understand the nature of the plasma/wall interaction in any fusion device.
热等离子体对铜的腐蚀研究
研究了铜阴极在2kJ能量(T≈0.5 ~ 2.0 kev)和高电子密度(n≈1019 ~ 1022cm3)的热等离子体柱下的腐蚀过程,以及带电粒子和中性粒子的辐射场。利用金相技术、扫描电子显微镜(SEM)和力学性能分析对等离子体/阴极相互作用产生的累积损伤进行了表征。氘等离子体放电的冲击产生的损伤积累在铜电极中形成了一个类似陨石坑的深腔,改变了表面及其下方的形态。进行显微硬度维氏测试,从空腔最终部分开始,每隔200 μm压痕覆盖1 cm。观察到不同的硬化区域,该剖面表明样品中存在硬化/恢复前沿和同时发生的再结晶,这一现象与铜阴极所经受的加热/冷却循环有关。扫描电镜在离表面中心不同距离处拍摄图像。在宏观层面显示受影响的区域对应于样品从中心到外部半径的2/3。这些现象的研究对于理解任何聚变装置中等离子体/壁相互作用的性质都是重要的。
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