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Microstructure, recrystallization, and mechanical property evolutions in the heat-affected and fusion zones of the dissimilar stainless steels

机译:不同不锈钢的热影响区和熔合区的微观结构,再结晶和机械性能演变

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摘要

The purpose of this study was to discuss the microstructure, recrystallization, and mechanical property evolutions in the heat-affected zones and fusion zones during dissimilar stainless steels welding. The morphology, quantity and chemical composition of the delta-ferrite were analyzed by using optical microscopy (OM), scanning electron microscopy (SEM), energy dispersive spectrometer (EDS) and electron probe micro-analyzer (EPMA), respectively. The recrystallization phenomenon was evident with the second pass heat-affected zone (HAZ-2) and indicated equiaxed grains after second pass welding. The contents of delta-ferrite exhibited the highest value of all situations in the first pass fusion zone (FZ-1) during the first pass welding. Furthermore, the solidification mode of fusion zones transformed from massive as well as acicular delta-ferrite-ferrite into lathy and skeletal structures as increased the welding pass number from 1 to 3.
机译:本研究的目的是讨论异种不锈钢焊接过程中热影响区和熔合区的组织,再结晶和力学性能演变。分别用光学显微镜(OM),扫描电子显微镜(SEM),能谱仪(EDS)和电子探针显微分析仪(EPMA)分析了δ铁素体的形貌,数量和化学成分。在第二道热影响区(HAZ-2)处有明显的再结晶现象,并且在第二道焊后显示出等轴晶粒。在第一道焊接过程中,在第一道熔合区(FZ-1)中,δ铁素体的含量在所有情况下均表现出最高值。此外,随着焊接道次从1增加到3,熔合区的凝固模式从块状以及针状δ-铁素体-铁素体转变为板状和骨架结构。

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