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Plasma-sprayed beryllium for ITER

机译:素材喷洒的铍

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Plasma-spray technology is under investigation as a method for producing high thermal conductivity beryllium coatings for use in magnetic fusion applications. Recent investigations have focused on optimizing the plasma-spray process for depositing beryllium coatings on damaged beryllium surfaces. Of particular interest has been optimizing the processing parameters to maximize the through-thickness thermal conductivity of the beryllium coatings. Experimental results will be reported on the use of secondary H/sub 2/ gas additions to improve the melting of the beryllium powder and negative transferred-arc cleaning to prepare beryllium surfaces prior to depositing beryllium. Information will also be presented on thermal fatigue tests which were performed on beryllium coated ISX-B beryllium limiter tiles using 10 sec cycle times with 60 sec cooldowns and an International Thermonuclear Experimental Reactor (ITER) relevant divertor heat flux slightly in excess of 5 MW/ml.
机译:等离子体喷涂技术正在研究作为生产高热导芽型涂层的方法,用于磁性融合应用。最近的调查专注于优化沉积铍涂层铍涂层的等离子体喷涂过程。特别感兴趣的是优化加工参数,以最大化铍涂层的贯穿厚度导热率。将报告实验结果对二次H / SUB 2 /天然气的使用,以改善铍粉和负转移弧清洁的熔化,在沉积铍之前制备铍表面。使用10秒的循环时间和60秒的循环时间和国际热核实验反应器(浸泡)相关的偏移器热通量略微超过5mW /尺寸超过5mW /,在铍涂覆的ISX-B Beryllium Limits Limiter瓦片上进行了热疲劳试验。 ml。

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