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Effects of the electrical excitation signal parameters on the geometry of an argon-based non-thermal atmospheric pressure plasma jet

机译:电激励信号参数对基于氩的非热大气压等离子体射流的几何形状的影响

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摘要

AbstractA non-thermal atmospheric pressure argon plasma jet for medical applications has been generated using a high-voltage pulse generator and a homemade dielectric barrier discharge (DBD) reactor with a cylindrical configuration. A plasma jet of about 6 cm of length has been created in argon gas at atmospheric pressure with an applied peak to peak voltage and a frequency of 10 kV and 50 kHz, respectively. The length and the shape of the created plasma jet were found to be strongly dependent on the electrode setup and the applied voltage and the signal frequency values. The length of the plasma jet increases when the applied voltage and/or its frequency increase, while the diameter at its end is significantly reduced when the applied signal frequency increases. For an applied voltage of 10 kV, the plasma jet diameter decreases from near 5 mm for a frequency of 10 kHz to less than 1 mm at a frequency of 50 kHz. This obtained size of the plasma jet diameter is very useful when the medical treatment must be processed in a reduced space.
机译:摘要使用高压脉冲发生器和圆柱形圆柱型电介质阻挡放电(DBD)反应器产生了医疗用非热常压氩等离子体射流。在大气压下在氩气中产生了大约6厘米长的等离子体射流,施加的峰峰值电压和频率分别为10kV和50kHz。发现产生的等离子体射流的长度和形状在很大程度上取决于电极设置以及所施加的电压和信号频率值。当施加的电压和/或其频率增加时,等离子体射流的长度增加,而当施加的信号频率增加时,其末端的直径显着减小。对于施加的10kV电压,等离子流直径从10kHz频率的5mm减小到50kHz频率的1mm以下。当必须在减小的空间中进行医学处理时,所获得的等离子流直径尺寸非常有用。

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