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Technical Issues Of Reduced Activation Ferritic/martensitic Steels For Fabrication Of Iter Test Blanket Modules

机译:用于制造Iter测试毯模块的还原活化铁素体/马氏体钢的技术问题

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Reduced activation ferritic/martensitic steels (RAFMs) are recognized as the primary candidate structural materials for fusion blanket systems. The RAFM F82H was developed in Japan with emphasis on high-temperature properties and weldability. Extensive irradiation studies have conducted on F82H, and it has the most extensive available database of irradiated and unirradiated properties of all RAFMs. The objective of this paper is to review the R&D status of F82H and to identify the key technical issues for the fabrication of an ITER test blanket module (TBM) suggested from the recent research achievements in Japan. This work clarified that the primary issues with F82H involve welding techniques and the mechanical properties of weld joints. This is the result of the distinctive nature of the joint caused by the phase transformation that occurs in the weld joint during cooling, and its impact on the design of a TBM will be discussed.
机译:减少活化的铁素体/马氏体钢(RAFM)被公认为是熔覆层系统的主要候选结构材料。 RAFM F82H是在日本开发的,着重于高温性能和可焊性。对F82H进行了广泛的辐照研究,它具有所有RAFM辐照和未辐照特性的最广泛的可用数据库。本文的目的是回顾F82H的研发状况,并从日本的最新研究成果中找出制造ITER测试毯模块(TBM)的关键技术问题。这项工作阐明了F82H的主要问题涉及焊接技术和焊接接头的机械性能。这是由于冷却过程中焊缝中发生的相变而引起的焊缝独特性的结果,并将讨论其对TBM设计的影响。

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