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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Study of cathode-spot crater and droplet formation in a vacuum arc
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Study of cathode-spot crater and droplet formation in a vacuum arc

机译:真空弧中阴极点火山口和液滴形成的研究

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A 3D transient model of a cathode-spot crater and droplet formation in a vacuum arc is developed. The model includes mass, momentum, heat transfer (energy), current continuity and potential equations. Using the energy flux density, current density and pressure as external parameters, the shape of the cathode-spot crater and the temperature, velocity, potential and current density distributions at each time step are determined via numerical simulation. Under symmetrical conditions, the 3D simulation results are highly consistent with those from the previous 2D model. The new cathode spot tends to appear in the direction in which the protrusion is largest because the liquid-metal velocity is lower and the liquid-metal ridge radius is larger in this direction. The effect of the external transverse magnetic field is considered by using a symmetric space function to represent the pressure and energy flux density of the plasma cloud. Simulation results show that even small changes in the plasma cloud distribution have a significant impact on the cathode-spot crater process and droplet formation. Since the pressure is asymmetric, the crater becomes asymmetric and the new cathode spot tends to appear opposite to the direction of the Ampere force. Based on this phenomenon, a possible explanation for the retrograde motion phenomenon of cathode spots is proposed.
机译:建立了真空电弧中阴极斑点坑和液滴形成的三维瞬态模型。该模型包括质量、动量、传热(能量)、电流连续性和势方程。以能量通量密度、电流密度和压力为外部参数,通过数值模拟确定了阴极斑点坑的形状以及每个时间步的温度、速度、电势和电流密度分布。在对称条件下,三维模拟结果与先前二维模型的结果高度一致。新的阴极斑点倾向于出现在突起最大的方向,因为液态金属速度较低,液态金属脊半径在该方向较大。通过使用对称空间函数来表示等离子体云的压力和能量通量密度,考虑了外部横向磁场的影响。模拟结果表明,即使是等离子体云分布的微小变化也会对阴极斑点坑过程和液滴形成产生显著影响。由于压力不对称,弹坑变得不对称,新的阴极斑点倾向于出现在安培力的相反方向。基于这一现象,提出了阴极斑点逆行现象的可能解释。

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