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Physical and mechanical properties of heat affected zone of dissimilar welds between duplex stainless steel and low carbon steel

机译:双相不锈钢与低碳钢间不同焊缝热影响区的物理和力学性能

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Joining of duplex stainless steel (DSS) and low carbon steel (LCS) was performed using gas tungsten arc welding (GTAW) with aid of argon as a shielding gas. Sample was welded using ER308L weld wire to produce joined material. Physical and mechanical properties of the heat effect zone and the welded joint were investigated using optical microscope (OP), scanning electron microscope (SEM), Electron dispersive spectroscopy (EDS), hardness test and ultimate tensile test (UTS). SEM at the both sides of HAZ revealed difference in morphological changes at DSS HAZ and LCS HAZ with a precipitation of martensitic phase and chromium carbide respectively which are suspected to be responsible variation in mechanical properties at this region. UTS conducted also shows a plastic deformation mode of failure at the DSS HAZ while failure occurred at the HAZ of LCS indicating brittle property at this point. Redistribution and migration of manganese from DSS to LCS during welding from EDS is also suspected to be the reason for brittle property of HAZ of LCS.
机译:使用气体钨弧焊(GTAW)借助氩气作为屏蔽气体,进行双相不锈钢(DSS)和低碳钢(LCS)的连接。使用ER308L焊接线焊接样品以产生连接材料。使用光学显微镜(OP),扫描电子显微镜(SEM),电子分散光谱(EDS),硬度测试和极限拉伸试验(UTS)研究了热效应区和焊接接头的物理和力学性能。 HAZ两侧的SEM显示DSS HAZ和LCS HAZ的形态变化的差异,分别沉淀着马氏体相和碳化铬,可疑是该区域的机械性能的负载变化。进行的UTS还显示了DSS HAZ处的塑性变形模式,而在此时的LCS的HAZ处发生故障。还怀疑在焊接期间从DSS到LCS的重新分配和迁移到LCS,也怀疑是LCS的HAZ的脆性性质的原因。

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