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3-D Hydrodynamic Model of Metal Droplet Sputtering and Molten Pool Formation Under Electric Arc

机译:电弧下金属液滴溅射和熔池形成的3-D流体动力学模型

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Material erosion caused by the molten metal liquid droplet ejection is one of the serious problem for contacts used in heavy and medium load conditions. To understand the complex nature of the metal droplet sputtering and molten pool formation under electric arc, a 3-D hydrodynamic model has been developed to describe the formation process of molten metal liquid drop edge ejection and molten pool in the initial axisymmetric stage. The model includes the melting process of pure copper electrode and Marangoni effect of the fused metal. It is carried out with a Multiphysics FEM program COMSOL based on Navier-Stokes equations for incompressible viscous fluid, and the simplified electric arc interacting with the electrode is exerted by pressure and heat flux dissipated on the electrode. The method of combining moving mesh and automatic re-mesh can solve the deformation problem of fused metal. The simulated molten pool metal liquid surface deformation and metal droplet sputtering are presented by the temperature and velocity distribution sequences.
机译:由熔融金属液滴喷射引起的物质侵蚀是重和中负荷条件中使用的触点的严重问题之一。为了了解电弧下的金属液滴溅射和熔池形成的复杂性,已经开发了一种三维流体动力学模型来描述初始轴对称阶段熔融金属液滴边缘喷射和熔池的形成过程。该模型包括纯铜电极和熔融金属的Marangoni效应的熔化过程。它通过基于Navier-Stokes方程对不可压缩的粘性流体的多体的FEM程序COMSOL进行,并且与电极相互作用的简化电弧通过压力和在电极上散发的热通量施加。组合移动网格和自动重新形成的方法可以解决熔融金属的变形问题。模拟熔池金属液面变形和金属液滴溅射由温度和速度分布序列呈现。

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