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Effect of Welding Processes on Mechanical and Microstructural Characteristics of DP780 Steel Welded Joints for the Automotive Industry

机译:焊接工艺对汽车工业DP780钢焊接接头机械和微观结构特性的影响

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摘要

Arc welding processes are widely used in the automotive industry among other welding processes. Consequently, laser welding technology is being used instead of arc welding due to the rapid heating and cooling characteristics of the laser. In this study, empirical investigations and comparative study are held out on the arc and laser beam welded joints of DP780 dual-phase-steel. Accordingly, weld joint microstructures, hardness distribution, and fatigue properties cross the butt-welded joints were investigated. The results showed that laser beam welding produces narrow fusion and heat-affected zones while gas metal arc welding produced wide welds with incomplete penetration. It was observed that the microstructure of the laser joint weld metal has mainly lath martensite in the ferritic matrix, while microstructure of gas metal arc weld metal relies upon filler type. Heat-affected zone in DP780 steel exhibit hardness softening in both laser beam welding and gas metal arc welding due to martensite tempering, a wider softening region was clearly observed in heat-affected zone welded by gas metal arc welding than laser beam welding. Generally, fatigue ratio, fatigue limit and fatigue life of the welded joints were improved by using laser welding.
机译:电弧焊工艺被广泛应用于汽车业的其他焊接工艺中。因此,激光焊接技术被用来代替电弧焊接,由于快速加热和激光的冷却特性。在这项研究中,经验研究和比较研究是在DP780双相钢的电弧和激光束焊接接头伸出。因此,熔接接头显微组织,硬度分布,和疲劳特性跨越对接接头进行了研究。结果表明,激光束焊接产生窄熔化和热影响区,而气体金属电弧焊接产生具有未焊透焊缝宽。据观察,在激光焊缝金属的显微组织主要具有板条马氏体在铁素体基质中,而气体金属电弧焊接金属的显微结构依赖于填料的类型。在两个激光束焊接和气体金属电弧焊接,由于马氏体回火,更宽软化区域清楚地在热影响区观察到DP780钢表现出硬度软化热影响区焊接由气体金属电比激光束焊接的焊接。通常,疲劳比,疲劳极限和疲劳寿命的焊接接头,通过使用激光焊接改善。

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