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Arc Shape Characteristics with Ultra-High-Frequency Pulsed Arc Welding

机译:超高频脉冲电弧焊的电弧形状特征

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Arc plasma possesses a constriction phenomenon with a pulsed current. The constriction is created by the Lorentz force, the radial electromagnetic force during arc welding, which determines the energy distribution of the arc plasma. Welding experiments were carried out with ultra-high-frequency pulsed arc welding (UHFP-AW). Ultra-high-speed camera observations were produced for arc surveillance. Hue-saturation-intensity (HSI) image analysis was used to distinguish the regions of the arc plasma that represented the heat energy distribution. The measurement of arc regions indicated that, with an ultra-high-frequency pulsed arc, the constriction was not only within the decreased arc geometry, but also within the constricted arc core region. This can be checked by the ratio of the core region to the total area. The arc core region expanded significantly at 40 kHz at 60 A. A current level of 80 A caused a decrease in the total region of the arc. Meanwhile, the ratio of the core region to the total increased. It can be concluded that arc constriction depends on the increased area of the core region with the pulsed current (>20 kHz).
机译:电弧等离子体具有脉冲电流的收缩现象。收缩是由洛伦兹力产生的,洛伦兹力是电弧焊接期间的径向电磁力,它决定了电弧等离子体的能量分布。使用超高频脉冲弧焊(UHFP-AW)进行了焊接实验。产生了用于弧光监视的超高速摄像机观察结果。色相饱和强度(HSI)图像分析用于区分代表热能分布的电弧等离子体区域。电弧区域的测量表明,对于超高频脉冲电弧,收缩不仅在减小的电弧几何形状内,而且还在收缩的电弧芯区域内。可以通过核心区域与总面积的比率进行检查。电弧芯区域在60 A时以40 kHz的频率显着扩展。80A的电流水平导致电弧总区域的减小。同时,核心区域占总数的比例增加。可以得出结论,电弧收缩取决于脉冲电流(> 20 kHz)时铁芯区域的增加面积。

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