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Fiber laser-MAG hybrid welding of DP/AISI 316 and TWIP/AISI 316 dissimilar weld

机译:DP / AISI 316和TWIP / AISI 316异种焊缝的光纤激光-MAG混合焊接

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In this paper, TWinning-Induced Plasticity (TWIP), Dual Phase (DP) and austenitic stainless (AISI 316) steels were joined together by hybrid laser/arc welding with an austenitic steel filler. Microstructural and mechanical characterization of welded joints was carried out by optical microscopy, microhardness, tensile and bend tests. The heat affected zone (HAZ) at the TWIP side was fully austenitic and exhibited a grain coarsening; at the DP side, new martensite formed close to the fusion zone and other phase transformations occurred moving toward the base metal; at the AISI 316 side, stringers of untreated ferrite δ inside the austenitic matrix was observed. All the tensile welded specimens broke within austenitic stainless steel. TWIP/AISI 316 welds exhibited a greater tensile strength than DP/AISI 316 ones. The bending tests confirmed the ductility of both sorts of joints.
机译:在本文中,采用奥氏体钢填料通过混合激光/电弧焊接将双绞诱导塑性(TWIP),双相(DP)和奥氏体不锈钢(AISI 316)钢连接在一起。通过光学显微镜,显微硬度,拉伸和弯曲试验对焊接接头进行了显微组织和机械表征。 TWIP侧的热影响区(HAZ)完全为奥氏体,并出现晶粒粗化。在DP侧,靠近熔合区形成了新的马氏体,并且发生了其他相变并向母材移动。在AISI 316侧,观察到奥氏体基体内部未处理的铁素体δ的纵梁。所有的拉伸焊接试样均在奥氏体不锈钢中破裂。 TWIP / AISI 316焊缝比DP / AISI 316焊缝具有更高的拉伸强度。弯曲测试证实了两种接头的延展性。

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