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首页> 外文期刊>International Journal of Heat and Mass Transfer >Modeling of transport phenomena in hybrid laser-MIG keyhole welding
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Modeling of transport phenomena in hybrid laser-MIG keyhole welding

机译:混合激光-MIG锁孔焊接中传输现象的建模

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摘要

Mathematical models and associated numerical techniques have been developed to investigate the complicated transport phenomena in spot hybrid laser-MIG keyhole welding. A continuum formulation is used to handle solid phase, liquid phase, and the mushy zone during the melting and solidification processes. The volume of fluid (VOF) method is employed to handle free surfaces, and the enthalpy method is used for latent heat. Dynamics of weld pool fluid flow, energy transfer in keyhole plasma and weld pool, and interactions between droplets and weld pool are calculated as a function of time. The effect of droplet size on mixing and solidification is investigated. It is found that weld pool dynamics, cooling rate, and final weld bead geometry are strongly affected by the impingement process of the droplets in hybrid laser-MIG welding. Also, compositional homogeneity of the weld pool is determined by the competition between the rate of mixing and the rate of solidification.
机译:已经开发了数学模型和相关的数值技术来研究点混合激光-MIG锁孔焊接中的复杂传输现象。在熔化和固化过程中,使用连续体配方处理固相,液相和糊状区。流体体积(VOF)方法用于处理自由表面,而焓法用于潜热。根据时间计算焊缝池流体流动,锁孔等离子体和焊缝池中的能量转移以及熔滴与焊缝池之间的相互作用的动力学。研究了液滴大小对混合和固化的影响。发现在混合激光-MIG焊接中,熔滴的冲击过程会严重影响熔池动态,冷却速率和最终焊缝几何形状。而且,熔池的成分均匀性由混合速率和凝固速率之间的竞争关系决定。

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