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Microstructure, mechanical properties and residual stress of a 2205DSS/Q235 rapidly formed LBW joint

机译:2205DSS / Q235快速形成LBW关节的微观结构,机械性能和残余应力

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Welding seam (WS) of a 2205DSS/Q235 laser-beam welded (LBW) joint consisted of a martensitic phase and a small amount of residual austenite. The microstructure of the heat-affected zone (HAZ) of the 2205DSS side was ferrite-dominated. The HAZ of the Q235 side consisted of a coarse-grained zone (near the WS) and a fine-grained zone which was a result of the thermal cycling. The WS had the was highest hardness, and the hardness value of the HAZ was slightly higher than that of the respective base metal. The strength of these welding joints was approximately 460 MPa. The residual stress was investigated using a finite element method, hole-drilling method, and X-ray diffraction analysis. The results revealed two high stress regions on either side of the WS. The residual stress of the WS was relieved substantially because of the martensitic transformation at 400 degrees C.
机译:2205DS / Q235激光焊接(LBW)关节的焊缝(WS)由马氏体相和少量的残余奥氏体组成。 2205DS侧的热影响区(HAZ)的微观结构是铁氧体主导的。 Q235侧的HAZ由粗粒区域(靠近WS)和粗粒区域组成,其是热循环的结果。 WS具有最高硬度,HAZ的硬度值略高于各自基金金属的硬度值。 这些焊接接头的强度约为460MPa。 使用有限元方法,钻孔法和X射线衍射分析研究了残余应力。 结果在WS的两侧揭示了两个高应力区域。 由于400℃的马氏体转化,WS的残余应力显着释放。

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