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Microstructural and mechanical characteristics of laser welding of Ti6Al4V and lead metal

机译:Ti6Al4V与铅金属激光焊接的组织和力学性能

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Titanium alloy Ti6Al4V and lead metal were welded using a continuous wave Nd:YAG laser. The influences of laser power, scanning velocity, and laser beam offset on weld morphology were investigated. Microstructure, chemical composition and mechanical properties of the joints were evaluated. Experimental results showed that fusion weld formed at the upper part of the weld and brazing weld with solder of Pb formed at the lower part of the weld under appropriate process condition. Interfaces were formed between mixed fusion zone and liquid lead zone in molten pool during laser welding of Ti6Al4V and lead. Reasons for interface formation may be different driving force of various regions in molten pool, and the miscibility gap of Ti and Pb binary system. Ti-Pb intermetallic compound Ti_4Pb was detected at the fusion weld zone, which made the microhardness of the weld seam was higher than that of the base materials. The strength of the joint was at least equal to or larger than that of lead base material.
机译:使用连续波Nd:YAG激光焊接钛合金Ti6Al4V和铅金属。研究了激光功率,扫描速度和激光束偏移量对焊缝形态的影响。评估了接头的微观结构,化学成分和机械性能。实验结果表明,在适当的工艺条件下,在焊缝的上部形成了熔焊,在焊缝的下部形成了Pb钎焊。 Ti6Al4V与铅的激光焊接过程中,熔池中的混合熔合区与液态铅区之间形成界面。形成界面的原因可能是熔池中各个区域的驱动力不同,以及Ti和Pb二元体系的混溶间隙。在熔焊区检测到Ti-Pb金属间化合物Ti_4Pb,使焊缝的显微硬度高于母材。接头的强度至少等于或大于铅基材料的强度。

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