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Numerical simulation of filler metal droplets spreading in laser brazing

Numerical simulation of filler metal droplets spreading in laser brazing
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摘要 A finite element model was constructed using a commercial software Fidap to analyze the Cu-base filler metal droplet spreading process in laser brazing, in which the temperature distribution, droplet geometry, and fluid flow velocity were calculated. Marangoni and buoyancy convection and gravity force were considered, and the effects of laser power and spot size on the spreading process were evaluated. Special attention was focused on the free surface of the droplet, which determines the profile of the brazing spot. The simulated results indicate that surface tension is the dominant flow driving force and laser spot size determines the droplet spreading domain. A finite element model was constructed using a commercial software Fidap to analyze the Cu-base filler metal droplet spreading process in laser brazing, in which the temperature distribution, droplet geometry, and fluid flow velocity were calculated. Marangoni and buoyancy convection and gravity force were considered, and the effects of laser power and spot size on the spreading process were evaluated. Special attention was focused on the free surface of the droplet, which determines the profile of the brazing spot. The simulated results indicate that surface tension is the dominant flow driving force and laser spot size determines the droplet spreading domain.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2007年第11期654-656,共3页 中国光学快报(英文版)
基金 This work was supported by the National Natural Science Foundation of China under Grant No.50275036.
关键词 Brazing filler metals BUOYANCY Computer simulation Finite element method Flow velocity Surface tension Temperature distribution Brazing filler metals Buoyancy Computer simulation Finite element method Flow velocity Surface tension Temperature distribution
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参考文献6

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