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A unified model of coupled arc plasma and weld pool for double electrodes TIG welding

机译:双电极TIG焊接电弧等离子体和熔池耦合的统一模型

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摘要

A three-dimensional model containing tungsten electrodes, arc plasma and a weld pool is presented for double electrodes tungsten inert gas welding. The model is validated by available experimental data. The distributions of temperature, velocity and pressure of the coupled arc plasma are investigated. The current density, heat flux and shear stress over the weld pool are highlighted. The weld pool dynamic is described by taking into account buoyance, Lorentz force, surface tension and plasma drag force. The turbulent effect in the weld pool is also considered. It is found that the temperature and velocity distributions of the coupled arc are not rotationally symmetrical. A similar property is also shown by the arc pressure, current density and heat flux at the anode surface. The surface tension gradient is much larger than the plasma drag force and dominates the convective pattern in the weld pool, thus determining the weld penetration. The anodic heat flux and plasma drag force, as well as the surface tension gradient over the weld pool, determine the weld shape and size. In addition, provided the welding current through one electrode increases and that through the other decreases, keeping the total current unchanged, the coupled arc behaviour and weld pool dynamic change significantly, while the weld shape and size show little change. The results demonstrate the necessity of a unified model in the study of the arc plasma and weld pool.
机译:提出了包含钨电极,电弧等离子体和焊池的三维模型,用于双电极钨极惰性气体保护焊。该模型已通过可用的实验数据验证。研究了耦合电弧等离子体的温度,速度和压力的分布。突出显示了焊接池上的电流密度,热通量和剪切应力。通过考虑浮力,洛伦兹力,表面张力和等离子拖曳力来描述焊缝动态。还应考虑焊缝中的湍流效应。发现耦合电弧的温度和速度分布不是旋转对称的。阳极表面的电弧压力,电流密度和热通量也显示出类似的特性。表面张力梯度比等离子阻力大得多,并且在焊接熔池中占主导地位,因此决定了焊接熔深。阳极热通量和等离子阻力以及焊池上的表面张力梯度决定了焊缝的形状和尺寸。另外,如果通过一个电极的焊接电流增加而通过另一个电极的焊接电流减少,则使总电流保持不变,则耦合电弧行为和焊池动态变化显着,而焊缝形状和尺寸变化很小。结果证明了在电弧等离子和熔池研究中建立统一模型的必要性。

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