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Performance Evaluation of Arc―Electrodes Systems for High Temperature Materials Processing by Computational Simulation

机译:电弧材料在高温材料加工中的性能计算仿真

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摘要

Thermofluid analysis of an arc flow and the evaluation of the cathode lifetime have been conducted by a computational simulation for the performance improvement of arc―electrodes systems. The effects of arc current, electrode gap, inlet gas flow rate and cathode vertex angle on the temperature and velocity fields of an arc flow are clarified by parametric computations to optimize the operating conditions and torch geometry. The temperature field by an arc flow model shows the quantitative agreement with the available experimental data in the local thermodynamic equilibrium (LTE) region. The cathode lifetime is evaluated successfully by coupling with the computated thermofluid field of an arc flow. The effects of different operating conditions on the cathode lifetime are also discussed for longer lifetime of the arc―electrodes systems.
机译:电弧流的热流分析和阴极寿命的评估已通过计算仿真进行,以改善电弧电极系统的性能。通过参数计算可以明确电弧电流,电极间隙,入口气体流速和阴极顶角对电弧流温度和速度场的影响,从而优化操作条件和焊炬几何形状。电弧流模型的温度场显示了与局部热力学平衡(LTE)区域中可用实验数据的定量一致性。通过与电弧流的计算出的热流体场耦合,成功评估了阴极寿命。为了延长电弧电极系统的寿命,还讨论了不同工作条件对阴极寿命的影响。

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