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Joining technologies of reduced activation ferritic/martensitic steel for blanket fabrication

机译:还原活化的铁素体/马氏体钢的连接技术,用于毛毯制造

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摘要

Reduced activation ferritic/martensitic steel, like F82H has been developed as a structural material for in vessel components because of its superior resistance to irradiation damage. As a blanket fabrication process, hot isostatic pressing (HIP) bonding has the great merit of near-net-shaping processing. The degassing conditions and surface roughness were investigated as parameters of HIP conditions. Although the surface roughness and degassing conditions had slight effects on tensile properties, the lack of degassing caused significant degradation of impact properties. A dissimilar metal joint between sintered tungsten and F82H was fabricated by a spark plasma sintering (SPS) method. The joint had no defects in spite of the large difference in thermal expansion coefficient between tungsten and F82H. It is considered that formation of a compliant layer of the ferritic phase can lead to successful bonding for the tungsten and F82H joint even without an artificial interlayer.
机译:还原活化的铁素体/马氏体钢,例如F82H,由于其对辐射损伤的优越抵抗力,已被开发为容器部件的结构材料。作为橡皮布制造工艺,热等静压(HIP)粘合具有近乎净成形的巨大优势。作为HIP条件的参数,研究了脱气条件和表面粗糙度。尽管表面粗糙度和脱气条件对拉伸性能影响不大,但缺乏脱气会导致冲击性能明显下降。通过火花等离子烧结(SPS)方法在烧结钨和F82H之间形成了一种异种金属接头。尽管钨和F82H之间的热膨胀系数差异很大,但接头没有缺陷。认为即使没有人造夹层,铁素体相的顺应层的形成也可以导致钨和F82H接头的成功粘结。

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