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Theoretical Approaches to Erosion and Wetting Phenomena during Laser Brazing Process

机译:激光钎焊过程中冲蚀和润湿现象的理论方法

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摘要

The theoretical approaches to the erosion and wetting/flowing phenomena during the laser brazing process were made by the computer simulation. The erosion kinetics of the Inconel 600 base metal was investigated using Au-18%Ni filler metal. The erosion profile during the laser brazing was estimated by applying the additivity rule to the Nernst-Brunner theory based on the measured thermal cycle of the filler metal droplet. The computed erosion profiles in the laser brazed joints were fairly consistent with the experimental ones. The wetting and flowing of the melted Au-18%Ni filler metal on the Inconel 600 butt joint during the laser brazing were analyzed by the metal flow model. The filler metal droplet wetted and spread on the base metal and simultaneously infiltrated into the joint gap with the lapse of time. In the single beam brazing, the filler metal did not infiltrate into the 0.1mm wide joint gap at the completion of brazing, however, the filler metal could be filled up in it in the tandem beam brazing.
机译:通过计算机仿真,提出了解决激光钎焊过程中腐蚀和润湿/流动现象的理论方法。使用Au-18%Ni填充金属研究了Inconel 600基础金属的腐蚀动力学。激光钎焊过程中的腐蚀曲线是通过根据测得的填充金属滴的热循环将可加性规则应用于Nernst-Brunner理论来估算的。激光钎焊接头的腐蚀曲线与实验值相当一致。通过金属流动模型分析了熔化的Au-18%Ni填充金属在Inconel 600对接接头上的润湿和流动。填充金属滴润湿并散布在母材上,并随着时间的流逝同时渗入接头间隙。在单束钎焊中,填充金属在钎焊完成时不会渗入0.1mm宽的接头间隙中,但是,在串联束钎焊中,填充金属可以填充到其中。

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