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NANO-STRUCTURAL AND NANO-CHEMICAL ANALYSIS OF NI-BASE ALLOY/LOW ALLOY STEEL DISSIMILAR METAL WELD INTERFACES

机译:Ni基合金/低合金钢异种金属焊接界面的纳米结构和纳米化学分析

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摘要

The dissimilar metal joints welded between Ni-based alloy, Alloy 690 and low alloy steel, A533 Gr. B with Alloy 152 filler metal were characterized by using optical microscope, scanning electron microscope, transmission electron microscope, secondary ion mass spectrometry and 3-dimensional atom probe tomography. It was found that in the weld root region, the weld was divided into several regions including unmixed zone in Ni-base alloy, fusion boundary, and heat-affected zone in the low alloy steel. The result of nanostructural and nanochemical analyses in this study showed the non-homogeneous distribution of elements with higher Fe but lower Mn, Ni and Cr in A533 Gr. B compared with Alloy 152, and the precipitation of carbides near the fusion boundary.
机译:镍基合金690合金与低合金钢A533 Gr之间的异种金属接头。用光学显微镜,扫描电子显微镜,透射电子显微镜,二次离子质谱和3维原子探针断层扫描对具有合金152填充金属的B进行了表征。研究发现,在焊缝根部区域,焊缝被分为几个区域,包括镍基合金中的非混合区,熔合边界和低合金钢中的热影响区。这项纳米结构和纳米化学分析的结果表明,在A533 Gr中,高铁,低锰,低镍和低铬元素的分布是不均匀的。 B与152合金相比,碳化物在熔合边界附近析出。

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