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THREE DIMENSIONAL ATOM PROBE STUDY 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三维原子探针研究

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摘要

Three dimensional atom probe tomography (3D APT) is applied to characterize the dissimilar metal joint which was welded between the Ni-based alloy, Alloy 690 and the low alloy steel, A533 Gr. B, with Alloy 152 filler metal. While there is some difficulty in preparing the specimen for the analysis, the 3D APT has a truly quantitative analytical capability to characterize nanometer scale particles in metallic materials, thus its application to the microstructural analysis in multicomponent metallic materials provides critical information on the mechanism of nanoscale microstructural evolution. In this study, the procedure for 3D APT specimen preparation was established, and those for dissimilar metal weld interface were prepared near the fusion boundary by a focused ion beam. The result of the analysis in this study showed the precipitation of chromium carbides near the fusion boundary between A533 Gr. B and Alloy 152.
机译:应用三维原子探针层析成像(3D APT)来表征焊接在Ni基合金690合金和低合金钢A533 Gr之间的异种金属接头。 B,用152合金填充金属。尽管准备样品进行分析有些困难,但3D APT具有真正的定量分析能力,可表征金属材料中的纳米级颗粒,因此将其用于多组分金属材料的微结构分析中,可提供有关纳米级机理的重要信息。微观结构的演变。在这项研究中,建立了3D APT试样制备程序,并通过聚焦离子束在融合边界附近制备了异种金属焊接界面的程序。本研究的分析结果表明,碳化铬在A533 Gr之间的熔合边界附近析出。 B和合金152。

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