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

机译:Invar合金激光-MIG混合焊接中小孔行为和熔滴转移的数值模拟

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摘要

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.
机译:目的-本文旨在描述基于有限体积方法的三维数学和数值模型,以模拟Fe36Ni Invar合金的激光-MIG混合焊接过程中焊缝中的流体动力学,熔滴转移和小孔行为。设计/方法/方法-使用双椭圆热源模型和自适应高斯旋转体热源模型分别描述了电弧和激光束热源。此外,在计算模型中考虑了反冲压力,电磁力,Marangoni力,浮力以及液体材料流经多孔介质的过程,并考虑了由于液滴引起的热量,质量,动量传递。发现-在质量,动量和能量守恒方程的解的基础上,本文给出了计算机模拟的结果,包括焊接板中的温度场和融合区中的速度场。实验结果验证了模型的正确性,该模型与焊缝几何形状的实验结果紧密相关。独创性/价值-它为理解伴随混合焊接的物理现象和优化因瓦合金激光-MIG混杂焊接的工艺参数奠定了基础。

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