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Effects of Fiber Laser Welding Speeds on Microstructures and Properties of E36 Steel Butt Joints

机译:光纤激光焊接速度对E36钢对接接头微观结构和性能的影响

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摘要

A 6 kW fiber laser YSL-6000 was chosen to weld the E36 steel with a thickness of 6 mm. The effects of laser welding speeds on the welded joint appearance were examined, and the microstructures and properties on the typical butt joints were investigated. Results showed that narrow and fully penetrated welded joints without obvious defects could be obtained at different welding speeds. With the welding speed increasing, the welding seam width decreased, and the welding seam (WS) and heat affected zone (HAZ) hardness increased. The microstructures of weld metal and HAZ were consisted of martensite, but the contents of it were significantly different. Welding speeds had no remarkable effect on the tensile strength and yield strength, except elongation. But the increase of welding speeds resulted in improvement of micro-hardness, which reached the maximum value of 426.38 HV at 45 mm/s. Weld metals of different welded joints were active in corrosion solution, and corrosion potential became more negative with the welding speeds increased from 35 mm/s to 50 mm/s, except at 45 mm/s.
机译:选择6 kW光纤激光器YSL-6000以焊接厚度为6mm的E36钢。检查激光焊接速度对焊接接头外观的影响,研究了典型对接接头上的微观结构和性能。结果表明,在不同的焊接速度下,可以获得没有明显缺陷的窄且完全穿透的焊接接头。随着焊接速度的增加,焊缝宽度降低,焊缝(WS)和热影响区(HAZ)硬度增加。焊接金属和HAZ的微观结构由马氏体组成,但它的内容物显着不同。除了伸长率之外,焊接速度对拉伸强度和屈服强度没有显着影响。但焊接速度的增加导致微硬度提高,其达到45mm / s的最大值为426.38HV。不同焊接接头的焊接金属在腐蚀溶液中活跃,并且焊接电位从35mm / s增加到50 mm / s的焊接速度比为45 mm / s更大。

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