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Effect of heat input on dissimilar welds of ultra high strength steel and duplex stainless steel: Microstructural and compositional analysis

机译:热输入对超高强度钢和双相不锈钢不同焊缝的影响:微观结构和组成分析

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摘要

The effect of heat input on the microstructure and compositional heterogeneity of welds of direct-quenched ultra high strength steel (Optim 960 QC) and duplex stainless steel (UNS 532205) was studied. The dissimilar welds were made using GMAW with a fully austenitic filler wire. In addition to grain coarsening in the heat affected zone (HAZ) of the ferritic side, it was found that an increase in heat input correlatively increased the proportional volume of bainitic to martensitic phases. Coarse ferritic grains were observed in the duplex HAZ. Higher heat input, however, had a beneficial effect on the nucleation of austenite in the HAZ. Heat input had a regulatory effect on grain growth within the austenitic weld and more favorable equiaxed austenite was obtained with higher heat input. On the ferritic side of the welds, macrosegregation in the form of a martensitic intermediate zone was observed for all the cooling rates studied. However, on the duplex side, macrosegregation in the fusion boundary was only noticed with higher cooling rates. Microstructural observations and compositional analysis suggest that higher heat input could be beneficial for the structural integrity of the weld despite higher heat input increasing the extent of adverse coarse grains in the HAZ, especially on the ferritic side. (C) 2016 Elsevier Inc. All rights reserved.
机译:研究了热输入对直接淬火超高强度钢(OPTEM 960QC)和双相不锈钢(UNS 532205)焊接微观结构和组成异质性的影响。使用全奥氏体填料的GMAW制成不同的焊接。除了在铁素体侧的热影响区(HAZ)中粗糙的晶粒外,还发现热输入的增加呈相关性增加贝氏体对马氏体相的比例。在双相HAZ中观察到粗糙的铁素体晶粒。然而,较高的热量输入对HAZ中奥氏体的成核具有有益的影响。热量输入对奥氏体焊缝内的晶粒生长具有调节效果,并且通过更高的热输入获得更有利的等轴奥氏体。在焊缝的铁素体侧,对于所有研究的冷却速率,观察到以马氏体中间区的形式的宏指令格。然而,在双工侧,融合边界中的Macrosegration仅被较高的冷却速率注意到。微观结构观察和组成分析表明,尽管较高的热量输入增加了诸如危险中的不良粗颗粒的范围,但尤其是在铁素体侧的不良粗粒的程度上,较高的热量输入可能是有益的。 (c)2016年Elsevier Inc.保留所有权利。

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