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Thermal fatigue characterization of CFC divertor modules using a one step brazing process

机译:使用一步钎焊工艺表征CFC分流器模块的热疲劳特性

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摘要

From the European side, three directional carbon fiber composites (CFCs) are foreseen to be used as plasma facing material for the strike point region of the initial ITER divertor installed for the non-tritium operational phase. For such divertor components two designs, the flat tile and the monoblock concept, are feasible, comprising a joint of the CFC with a Cu/Cu-alloy heat sink. This paper deals with the qualification of a reliable and cheap joining technology for such components, i.e. the simultaneous joining of the CuCrZr heat sink to a compliant Cu layer for the accommodation of thermal stresses and of the Cu layer and the CFC using a non-active Cu-Ge brazing material. For this purpose flat tile and monoblock mock-ups were manufactured, microstructurally analyzed, and subsequently exposed to cyclic high heat flux tests in the electron beam facility JUDITH. Applying hundreds of cycles at up to 20 MW/m~2 the tested mock-ups underwent partial damaging, which was characterized in post-mortem microstructural investigations to analyze occurring degradation mechanisms, e.g. partial delamination at the CFC/Cu-interface.
机译:从欧洲方面来看,预计将使用三种定向碳纤维复合材料(CFC)作为面向非operational操作阶段安装的初始ITER偏滤器的撞击点区域的面向等离子体的材料。对于这种分流器组件,可以采用两种设计,即平铺砖和整体式概念,包括CFC与Cu / Cu合金散热器的接合处。本文讨论了用于此类组件的可靠且便宜的连接技术的资格,即,使用非活性剂将CuCrZr散热器同时连接到用于适应热应力的顺应性Cu层以及铜层和CFC的同时。铜锗钎料。为此,制造了瓷砖和整体模型,对其进行了微观结构分析,然后在电子束设备JUDITH中进行了循环高热通量测试。以高达20 MW / m〜2的速度施加数百个循环,对测试的模型进行了部分破坏,这在事后微观结构研究中得到了表征,以分析发生的降解机理,例如CFC / Cu接口处的部分分层。

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