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Formation of a high-current pulsed gas discharge as a source of highly concentrated energy flux to treat metal surfaces

机译:大电流脉冲气体放电的形成,作为高浓度能量通量的来源,用于处理金属表面

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摘要

The properties of a novel, pulsed, high-current gas discharge with minimized energy losses are investigated. The discharge provides a highly concentrated energy flux that can be used to treat metal surfaces and to form thin surface layers with desirable properties. A theoretical treatment of the formation of the discharge is presented, and the limitations on its voltage and interelectrode separation length are considered. Experiments are carried out to test the theoretical predictions of the discharge parameters. The experimental results show that more than 80% of the energy input to the discharge from the power supply is delivered to the metal surface.
机译:研究了具有最小能量损失的新型脉冲大电流气体放电的特性。放电提供了高度集中的能量通量,可用于处理金属表面并形成具有所需性能的薄表面层。提出了形成放电的理论方法,并考虑了其电压和电极间分离长度的限制。进行实验以测试排放参数的理论预测。实验结果表明,超过80%的输入电源放电能量输入到金属表面。

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