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An Experimental Study Of Atmospheric Pressure Dielectric Barrier Discharge (DBD) In Argon

机译:氩气中大气压介质屏障放电(DBD)的实验研究

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In this paper, experimental results on atmospheric pressure argon dielectric barrier discharge (DBD) have been presented. The discharge was generated using a high voltage (0 to 20 kV) power supply operating at frequency of 10 to 30 kHz and was studied by means of electrical and optical measurements. A homogeneous and steady discharge was observed between the electrodes with gap spacing from 1 mm to 3 mm and with a dielectric barrier of thickness 1.5 mm while argon gas is fed at a controlled flow rate of 2liter per min. The electron temperature (T_e) and electron density (n_e) of the plasma have been determined by means of optical emission spectroscopy. Our results show that the electron density is of the order of 10~(16) cm~(-3) while the electron temperature is estimated to be ~ 1 eV. The homogeneity and non-thermal nature of the discharge were utilized in the investigation of the change in wettabilty of a polymer sample subjected to the treatment by the discharge. Contact angle analysis showed that the discharge was effective in improving the wettability of low density Polyethylene (LDPE) polymer sample after the treatment.
机译:本文介绍了对大气压氩介质屏障放电(DBD)的实验结果。使用以10至30kHz的频率运行的高电压(0至20kV)电源产生放电,并通过电气和光学测量研究。在具有1mm至3mm的间隙间距的电极之间观察到均匀稳定的放电,并且厚度为1.5mm的介电屏障,而氩气以每分钟的2次的控制流速进给。等离子体的电子温度(T_E)和电子密度(N_E)已经通过光发射光谱法确定。我们的研究结果表明,电子密度为10〜(16 )cm〜(-3),而电子温度估计为约1eV。在通过放电治疗的聚合物样品的Wettbilty的变化调查,使用排出的均匀性和非热性。接触角分析表明,放电在治疗后改善低密度聚乙烯(LDPE)聚合物样品的润湿性有效。

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