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Hysteresis in Electron-Emission Current of an Axial Electron Gun Used for Evaporation of Metals

机译:用于蒸发金属的轴向电子枪的电子发射电流中的磁滞

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Hysteresis of electron-emission current from filament cathode was observed in a 10-kW axial electron gun used for evaporation of metals. It was observed that in the forward direction of power change (i.e., increasing electron-beam (e-beam) power), the required filament-heating current for a specified e-beam current was significantly higher than the filament current required in the backward direction (i.e., decreasing e-beam power). With appropriate calculations and experimental methods, it is established that this hysteresis arises primarily due to the energetic metal-ion bombardment on the electron-emitting area of filament in the electron gun. Finally, results of modification of the electron-emitting filament, such as drilling of a hole at its center to check the uncontrollability arising due to the bombardment of ions, are presented.
机译:在用于金属蒸发的10 kW轴向电子枪中观察到了灯丝阴极的电子发射电流的滞后现象。观察到,在功率变化的正向方向(即,增加电子束(e-beam)功率)中,特定电子束电流所需的灯丝加热电流明显高于后向所需的灯丝电流。方向(即降低电子束功率)。通过适当的计算和实验方法,可以确定该磁滞主要是由于电子枪中灯丝的电子发射区域发生了高能金属离子轰击。最后,给出了电子发射丝的改性结果,例如在其中心钻孔以检查由于离子轰击而引起的不可控性。

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