Numerical simulation of keyhole behaviors and droplet transfer in laser-MIG hybrid welding of Invar alloy

Author:

Zhang Dan,Wei Yanhong,Zhan Xiaohong,Chen Jie,Li Hao,Wang Yuhua

Abstract

Purpose This paper aims to describe a three-dimensional mathematical and numerical model based on finite volume method to simulate the fluid dynamics in weld pool, droplet transfer and keyhole behaviors in the laser-MIG hybrid welding process of Fe36Ni Invar alloy. Design/methodology/approach Double-ellipsoidal heat source model and adaptive Gauss rotary body heat source model were used to describe electric arc and laser beam heat source, respectively. Besides, recoil pressure, electromagnetic force, Marangoni force, buoyancy as well as liquid material flow through a porous medium and the heat, mass, momentum transfer because of droplets were taken into consideration in the computational model. Findings The results of computer simulation, including temperature field in welded plate and velocity field in the fusion zone were presented in this article on the basis of the solution of mass, momentum and energy conservation equations. The correctness of elaborated models was validated by experimental results and this proposed model exhibited close correspondence with the experimental results with respect to weld geometry. Originality/value It lays foundation for understanding the physical phenomena accompanying hybrid welding and optimizing the process parameters for laser-MIG hybrid welding of Invar alloy.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference44 articles.

1. Thermocapillary convection and phase change in welding;International Journal of Numerical Methods for Heat and Fluid Flow,2008

2. The influence of process parameters on porosity formation in hybrid LASER-GMA welding of AA6082 aluminum alloy;Optics and Laser Technology,2012

3. The numerical simulation of heat transfer during a hybrid laser–MIG welding using equivalent heat source approach;Optics and Laser Technology,2014

4. Laser–arc hybrid welding of Ti6Al4V titanium alloy: mechanical characterization of joints and gap tolerance;Welding International,2013

5. Arc leading versus laser leading in the hybrid welding of aluminium alloy using a fiber laser;Procedia Cirp,2013

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