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Calculation of Electron Swarm Parameters of SF_6/N_2 in a Uniform Field Using an Improved Monte Carlo Collision Simulation Method
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作者 汪沨 W.PFEIFFER +3 位作者 N.KOUZICHINE 邱毓昌 e.kuffel 李肯立 《Plasma Science and Technology》 SCIE EI CAS CSCD 2008年第1期39-42,共4页
The electron swarm parameters of SF6/N2 are calculated in the present study using an improved Monte Carlo collision simulation method (MCS). And some improved sampling techniques are also adopted. The simulation res... The electron swarm parameters of SF6/N2 are calculated in the present study using an improved Monte Carlo collision simulation method (MCS). And some improved sampling techniques are also adopted. The simulation results show that the improved simulation method can provide more accurate results. 展开更多
关键词 Monte Carlo collision simulation gas discharge swarm parameter
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Improving Hydrophobicity of Glass Surface Using Dielectric Barrier Discharge Treatment in Atmospheric Air
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作者 方志 邱毓昌 +1 位作者 王辉 e.kuffel 《Plasma Science and Technology》 SCIE EI CAS CSCD 2007年第5期582-586,共5页
Non-thermal plasmas under atmospheric pressure are of great interest in industrial applications, especially in material surface treatment. In this paper, the treatment of a glass surface for improving hydrophobicity u... Non-thermal plasmas under atmospheric pressure are of great interest in industrial applications, especially in material surface treatment. In this paper, the treatment of a glass surface for improving hydrophobicity using the non-thermal plasma generated by dielectric barrier discharge (DBD) at atmospheric pressure in ambient air is conducted, and the surface properties of the glass before and after the DBD treatment are studied by using contact angle measurement, surface resistance measurement and wet flashover voltage tests. The effects of the applied voltage and time duration of DBD on the surface modification are studied, and the optimal conditions for the treatment are obtained. It is found that a layer of hydrophobic coating is formed on the glass surface after spraying a thin layer of silicone oil and undergoing the DBD treatment, and the improvement of hydrophobicity depends on DBD voltage and treating time. It seems that there exists an optimum treating time for a certain applied voltage of DBD during the surface treatment, The test results of thermal aging and chemical aging show that the hydrophobic layer has quite stable characteristics. The interaction mechanism between the DBD plasma and the glass surface is discussed. It is concluded that CHa and large molecule radicals can react with the radicals in the glass surface to replace OH, and the hydrophobicity of the glass surface is improved accordingly. 展开更多
关键词 non-thermal plasma dielectric barrier discharge (DBD) surface treatment hydrophobicity
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