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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Laser welding characteristics of Ti-Pb dissimilar couples and element diffusion in the molten pool
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Laser welding characteristics of Ti-Pb dissimilar couples and element diffusion in the molten pool

机译:Ti-PB不同耦合耦合的激光焊接特性和熔池中的元素扩散

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摘要

Laser welding lead metal to titanium or titanium alloy, which is a typical dissimilar welding process, have a great challenge. Couples of Ti-Pb, Ti6Al4V-Pb were welded by a 3kW continuous wave Nd:YAG laser. The influences of process parameters such as laser power and laser beam offset on welding depth were investigated. Microstructure, element distribution and micro hardness of the welds were tested. The element diffusion characteristics during laser welding of Ti-Pb couple and Ti6Al4V-Pb couple were studied based on the experiments data. Experimental results show laser beam offset is a primary factor for welding titanium alloy and lead metal, and laser power plays a critical role for welding pure titanium and lead metal. A chemical potential calculation model of Ti-Pb-Al ternary alloy was established. The calculation results show that chemical potential of Ti element increases with enhancing Pb content in Ti-Pb-Al ternary system, however, the chemical potential of Ti element decreases with increasing Pb content in Ti-Pb binary system. According to the calculation results, for Ti-Pb-Al ternary system, because of the Al element in the molten pool, the Ti element tends to diffuse into the Al element, and the diffusion driving force of Ti element to the Pb element is weak. Compared with the Ti-Pb binary system and the Ti-Pb-Al ternary system, it is more likely to form a mixed fusion weld for the binary system, and the mass transfer interface phenomenon is more serious for the ternary system, which is consistent with EDS line scan and microhardness testing results.
机译:激光焊接铅金属至钛或钛合金,这是一种典型的不同焊接过程,具有巨大的挑战。 Ti-Pb的耦合,Ti6Al4V-PB被3kW连续波Nd:YAG激光焊接。研究了过程参数的影响,例如激光功率和激光束偏移在焊接深度上。测试了焊缝的微观结构,元件分布和微硬度。基于实验数据,研究了Ti-Pb耦合和Ti6Al4V-PB夫妇激光焊接期间的元件扩散特性。实验结果表明激光束偏移是焊接钛合金和铅金属的主要因素,激光功率对焊接纯钛和铅金属发挥着关键作用。建立了Ti-PB-Al三元合金的化学势计算模型。计算结果表明,Ti元素的化学电位随着Ti-Pb-Al三元系中的增强Pb含量而增加,但Ti元素的化学电位随着Ti-Pb二元系统中的增加而降低。根据计算结果,对于Ti-Pb-Al三元体系,由于熔池中的Al元件,Ti元件倾向于扩散到Al元件中,并且Ti元件的扩散驱动力较弱。与TI-PB二元系统和TI-PB-AL三元系相比,更有可能形成二元系统的混合熔焊焊缝,并且对于三元系统来说,传质界面现象更严重,这是一致的使用EDS线扫描和微硬度测试结果。

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