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Tungsten coatings repair: An approach to increase the lifetime of plasma facing components

机译:钨涂层修复:增加等离子表面组件寿命的方法

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摘要

The lifetime of tungsten coatings used for Plasma Facing Components (PFCs) in fusion devices is mainly limited by two degradation mechanisms occurring during the operation of the tokamak: erosion resulting from exposure to long plasma discharges (long term) and local damages caused by transient events (runaway electrons,..). An alternative solution to the current replacement of damaged PFCs would be to repair their surface by stripping the damaged tungsten coating and depositing a new one. In this paper, the process of removing tungsten was investigated on CuCrZr samples coated with a 15 mu m layer of W using four techniques: plasma etching, sandblasting, chemical attack and laser ablation. For each technique, etching properties were assessed by means of microscopic observations, topographical surface analyses and chemical analysis. The results presented here also highlight the issues related with controlling the etching depth and size of the treated surface.
机译:聚变设备中用于等离子体面对部件(PFC)的钨涂层的寿命主要受托卡马克运行期间发生的两种降解机制的限制:长期暴露于等离子体放电(长期)导致的腐蚀以及瞬态事件引起的局部损坏(失控的电子,..)。当前替换损坏的PFC的替代解决方案是通过剥离损坏的钨涂层并沉积新的涂层来修复其表面。在本文中,采用四种技术对等离子蚀刻,喷砂,化学侵蚀和激光烧蚀等技术研究了在15Cr的W涂层的CuCrZr样品上的去除钨的过程。对于每种技术,都通过显微镜观察,表面形貌分析和化学分析来评估蚀刻性能。此处呈现的结果还突出显示了与控制蚀刻深度和被处理表面尺寸有关的问题。

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