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Interface characterization of CO_2 laser welded austenitic stainless steel and low carbon steel couple

机译:CO_2激光焊接奥氏体不锈钢与低碳钢对的界面表征

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Purpose - The purpose of this paper is to investigate interface characterization of CO_2 laser welded AISI 304 austenitic stainless steel and AISI 1010 low carbon steel couple. Laser welding experiments were carried under argon and helium atmospheres at 2000, 2250 and 2500W heat inputs and 200-300 cm/min welding speeds. Design/methodology/approach - The microstructures of the welded joints and the heat affected zones (HAZ) were examined by optical microscopy, SEM, EDS and X-Ray analysis. The tensile strength of the welded joints was measured. Findings - The result of this study indicated that the width of welding zone and HAZ became much thinner depending on the increased welding speed. On the other hand, this width widened depending on the increased heat input. Tensile strength values also confirmed this result. The best properties were observed at the specimens welded under helium atmosphere, at 2500W heat input and at 200 cm/min welding speed. Originality/value - There are many reports which deal with the shape and solidification structure of the fusion zone of laser beam welds in relation to different laser parameters. However, the effect of all influencing factors of laser welding has up to now not been extensively researched. Much work is required for understanding the combined effect of laser parameters on the shape and microstructure of the fusion zone. This paper, therefore, is concerned with laser power, welding speed, defocusing distance and type of shielding gas and their effects on the fusion zone shape and final solidification structure of some stainless steels.
机译:目的-本文的目的是研究CO_2激光焊接AISI 304奥氏体不锈钢和AISI 1010低碳钢对的界面特性。激光焊接实验是在氩气和氦气气氛下以2000、2250和2500W的热输入以及200-300 cm / min的焊接速度进行的。设计/方法/方法-通过光学显微镜,SEM,EDS和X射线分析检查了焊接接头和热影响区(HAZ)的微观结构。测量了焊接接头的拉伸强度。发现-研究结果表明,随着焊接速度的提高,焊接区和HAZ的宽度变得更薄。另一方面,该宽度根据增加的热量输入而变宽。拉伸强度值也证实了该结果。在氦气气氛下,以2500W的热量输入和以200 cm / min的焊接速度焊接的样品上观察到了最佳性能。原创性/价值-有许多报道涉及与激光参数不同有关的激光束焊缝熔合区的形状和凝固结构。但是,到目前为止,尚未广泛研究激光焊接的所有影响因素的影响。要了解激光参数对融合区形状和微结构的综合影响,需要做大量工作。因此,本文涉及激光功率,焊接速度,散焦距离和保护气体类型及其对某些不锈钢的熔合区形状和最终凝固组织的影响。

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