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Effects of melting-mixing ratio on the interfacial microstructure and tensile properties of austenitic–ferritic stainless steel joints

机译:熔融混合比对奥氏体-铁素体不锈钢接头界面组织和拉伸性能的影响

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In this study, the microstructure and mechanical properties of dissimilar austenitic–ferritic stainless steel joints welded by gas tungsten arc welding were investigated. Different offsets of the tungsten electrode's tip from the centerline of the assembled workpieces were used to obtain different elemental melting-mixing ratios. In tensile tests, two failure modes were found: the weld/workpiece interface failure mode (low strength and ductility) and the AISI 430 base metal failure mode (high strength and ductility). With a large offset (≥0.5mm) toward the AISI 304 side, additional elemental Ni was melted into the welding pool, which changed the solidification mode from ferritic to ferritic–austenitic. This leads to a dramatic microstructure and local property change at the weld/workpiece interface. The local stress–strain curves of various heat-affected zones from different joints were obtained by the digital image correlation technique. This technique showed that the steep local microstructural and mechanical property transition of the dissimilar austenitic–ferritic joints will lead to failure at the weld/workpiece interface.
机译:在这项研究中,研究了通过气体钨极电弧焊焊接的不同奥氏体-铁素体不锈钢接头的组织和力学性能。钨电极头距已组装工件中心线的不同偏移量用于获得不同的元素熔融混合比。在拉伸测试中,发现了两种失效模式:焊缝/工件界面失效模式(低强度和延展性)和AISI 430贱金属失效模式(高强度和延展性)。随着向AISI 304侧的较大偏移(≥0.5mm),额外的元素Ni熔化到焊接熔池中,从而将凝固模式从铁素体转变为铁素体-奥氏体。这会导致焊缝/工件界面处的微观组织和局部性能发生显着变化。通过数字图像相关技术获得了来自不同接头的不同热影响区的局部应力-应变曲线。该技术表明,不同的奥氏体-铁素体接头的局部局部微观组织和力学性能过渡会导致焊缝/工件界面处的破坏。

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