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首页> 外文期刊>Metals and Materials International >HIP Joining of RAFM/RAFM Steel and Beryllium/RAFM Steel for Fabrication of the ITER TBM First Wall
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HIP Joining of RAFM/RAFM Steel and Beryllium/RAFM Steel for Fabrication of the ITER TBM First Wall

机译:RAFM / RAFM钢和铍/ RAFM钢的HIP连接以制造ITER TBM第一壁

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摘要

One of the main research and development issues concerning the test blanket module (TBM) is the development of joining technologies for fabrication of the first wall. The objectives of the present study are to investigate the effects of thermal history corresponding to the TBM fabrication process on reduced activation ferritic martensitic (RAFM) steel microstructure, and to establish the appropriate hot isostatic pressure (HIP) conditions for the fabrication of RAFM/RAFM steels and beryllium (Be)/RAFM steels joints without degradation of the mechanical properties of the RAFM steel or delamination of the joined interface. In this study, RAFM and RAFM steels were joined by HIPing at 1050 deg C under 100 MPa for 2 h. During the HIP process, the thermally altered microstructure and mechanical properties were recovered to the as-received state by subsequent normalizing at 950 deg C for 2 h and tempering at 750 deg C for 2 h. Be and RAFM steels were also bonded successfully by the application of Ti/Cu interlayers and HIPing at 850 deg C under 100 MPa for 2 h.
机译:关于测试毯模块(TBM)的主要研究和开发问题之一是用于制造第一壁的连接技术的发展。本研究的目的是研究对应于TBM制造过程的热历史对还原活化铁素体马氏体(RAFM)钢显微组织的影响,并为制造RAFM / RAFM建立合适的热等静压(HIP)条件。钢和铍(Be)/ RAFM钢的接头,而不会降低RAFM钢的机械性能或连接界面分层。在这项研究中,RAFM和RAFM钢通过在1050℃,100 MPa下进行HIPing 2 h进行连接。在HIP过程中,通过随后在950摄氏度下进行2小时正火并在750摄氏度下进行2小时回火,将热变化后的微观结构和力学性能恢复到接收状态。通过应用Ti / Cu中间层并在850℃,100 MPa的压力下进行HIP 2小时,Be和RAFM钢也成功粘合。

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