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The influence of laser beam welding and plasma arc welding processes on dual phase steel microstructure

机译:激光束焊和等离子电弧焊接工艺对双相钢微结构的影响

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One important aspect in the application of dual phase (DP) steels in the automotive industry are their weldability and subsequent mechanical properties. Welding involves a rapid change in the temperature which alters the microstructure and the mechanical properties of the steel. Understanding the influence of welding conditions on the mechanical properties of DP 600 is useful for both the automotive industry and steel producers. Despite its importance, the weldability study of dual phase steels is still limited. In this paper the microstructural evolution and its influence on the mechanical properties of 1 mm thick zinc coated DP 600 steel are described for laser beam welding (LBW) and plasma arc welding (PAW) processes. Microstructural and mechanical characterisation were performed using optical microscopy, microhardness measurements, tensile tests and Erichsen cupping tests. The process comparison shows differences in the final mechanical properties resulting from the microstructural differences in the welding zones.
机译:在汽车行业中施加双相(DP)钢的应用中的一个重要方面是它们的可焊性和随后的机械性能。焊接涉及温度的快速变化,这改变了钢的微观结构和机械性能。了解焊接条件对DP 600的机械性能的影响对于汽车工业和钢铁生产商有用。尽管重要的是,双相钢的可焊性研究仍然有限。本文描述了激光束焊接(LBW)和等离子弧焊(PAW)工艺的1mm厚锌涂层DP 600钢的微观结构演化及其对机械性能的影响。使用光学显微镜,微硬度测量,拉伸试验和Erichsen拔罐测试进行微观结构和机械表征。过程比较显示了由焊接区域的微观结构差异导致的最终机械性能的差异。

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