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Nonequilibrium simulation analysis of the power dissipation and the pressure produced by TIG welding arcs

机译:非醌仿真分析,TIG焊弧产生的电力耗散和压力

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The recently developed novel nonequilibrium model of TIG arcs is applied to study in detail the momentum balance and pressure establishment in the arc region and the power balance of the whole arc system. TIG configurations with two currents (100 and 200 A), two different cathode shapes (2-mm radius and vertex angles of 60 degrees and 30 degrees), and an electrode distance of 5 mm are considered exemplary. The pressure analysis yields two regions of pressure in excess of atmospheric pressure below the cathode tip in front of the anode. The maximum values show weak dependence on the cathode vertex angles. The growth of the arc pressure with the arc current is predicted to be faster than quadratic. The analysis of the power budget shows the importance of the Joule heating term in the electron energy balance, which is the dominant mechanism in the vicinity of the cathode and the near surrounding while it is negative in the vicinity of the anode. The electric power deposited in the cathode space-charge sheath is a huge amount of the total power supply (40% at 200 A and 50% at 100 A) with a significant part of it being transferred to the plasma electrons.
机译:最近开发的TIG弧的非Quizizium模型用于详细研究弧区域的动量平衡和压力建立和整个电弧系统的功率平衡。具有两个电流(100和200a)的TIG配置,两个不同的阴极形状(2mm半径和60度的顶点和60度),以及5mm的电极距离被认为是示例性的。压力分析产生两个压力区域,超过阴极尖端的大气压在阳极前面的阴极尖端。最大值显示对阴极顶点角度的弱依赖性。预计具有电弧电流的电弧压力的生长比二次立方更快。对电力预算的分析表明,焦耳加热术语在电子能量平衡中的重要性,这是阴极附近的主机制,而在阳极附近的阴极和近周边。沉积在阴极空间电荷护套中的电力是大量的总电源(在200a和50%处为50%,在100a的50%),其具有转移到等离子体电子的重要部分。

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