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Investigation on the microstructure-mechanical property correlation in dissimilar steel welds of stainless steel SS 304 and medium carbon steel EN 8

机译:不锈钢SS 304和中碳钢EN 8的异种钢焊缝的组织与力学性能相关性研究

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Stainless steel grade SS 304 and medium carbon steel EN 8 were welded with various combinations of weld parameters using tungsten inert gas (TIG) welding process. Significant differences in weld and interface microstructures were achieved under different weld process variables (current, voltage and speed). Microstructures of the weld region varied from large grains of γ-austenite to fine grain distribution ofδ-ferrite and γ-austenite grains. Further to that, the phase boundaries between γ andδphases showed presence of two dominant phase boundary relationships (PBR), 44°〈104〉 and 44°〈114〉. The weld metal (WM)-base metal (BM) interfaces also showed differences in the fusion zone (FZ) and heat affected zone (HAZ). Fusion zone at the interface of medium carbon steel and weld metal were characterized by presence of fine grains of ferrite which were identified as relatively strain free grains. These differences in microstructures were mainly due to the differences in heat inputs and solidification rates of the weld metal. Differences were also observed in the grain boundary fractions and local in-grain misorientation between different microstructures. The tensile strength of these welded joints were found to be clear functions of low angle grain boundary (LAGB) fractions, while impact energy was seen to be a function of austenite in-grain misorientation andδ-ferrite percentage. The pattern of fracture under tensile deformation displayed both mixed mode and ductile fracture. Differences in the fractured surfaces were seen in the distribution, size and shapes of dimples and microvoids. The present investigation attempts to address the pattern of microstructure development and the related mechanical behavior in dissimilar welded joints through a systematic approach.
机译:使用钨极惰性气体(TIG)焊接工艺以不同的焊接参数组合焊接了SS 304级不锈钢和EN 8中碳钢。在不同的焊接工艺变量(电流,电压和速度)下,焊缝和界面的微观结构存在显着差异。焊接区的组织从大的γ-奥氏体晶粒到δ-铁素体和γ-奥氏体晶粒的细晶粒分布不等。除此之外,γ相和δ相之间的相界显示出两个主要的相界关系(PBR):44°44104〉和44°〈114〉。焊缝金属(WM)-基体金属(BM)界面在熔合区(FZ)和热影响区(HAZ)中也显示出差异。中碳钢与焊缝金属交界处的熔合区的特征是存在铁素体细晶粒,这些晶粒被确定为相对无应变的晶粒。这些微观结构上的差异主要是由于焊接金属的热量输入和凝固速率的差异所致。在不同组织之间的晶界分数和局部晶粒取向差也观察到差异。发现这些焊接接头的抗拉强度是低角度晶界(LAGB)分数的明确函数,而冲击能量则是奥氏体晶粒取向不良和δ-铁素体百分比的函数。拉伸变形下的断裂模式既显示混合模式,又显示延性断裂。裂纹表面的差异在酒窝和微孔的分布,大小和形状上可见。本研究试图通过系统的方法解决不同焊接接头中的微结构发展模式和相关的机械行为。

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