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Feasibility study of material surface modification by millimeter size plasmas produced in a pin to plane electrode configuration

机译:针到平面电极配置中产生的毫米大小的等离子体对材料表面进行改性的可行性研究

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A few millimeter size plasma was generated in a pin to plane electrode configuration with either Aluminum or Indium Tin Oxide glass. Depending on the plane electrode material, the plasma showed either corona or corona-dielectric barrier discharge hybrid discharge characteristics. From electrical and optical diagnostics, it was found that the hybrid discharge was more electrically stable and had lower rotational temperature. A feasibility study of material surface modification was performed with the hybrid discharge. All samples such as polyethylene and polypropylene films became more hydrophilic, and the surface property was changed only within the radius of less than about 12 mm. In addition, several effects of gas temperature and treatment time on the surface modification were studied besides the durability.
机译:用铝或氧化铟锡玻璃在引脚到平面电极配置中生成了几毫米大小的等离子体。取决于平面电极材料,等离子体显示出电晕或电晕-电介质势垒放电混合放电特性。从电学和光学诊断学中发现,混合放电在电学上更稳定并且旋转温度更低。用混合放电进行了材料表面改性的可行性研究。所有样品,例如聚乙烯和聚丙烯膜,都变得更亲水,并且仅在小于约12 mm的半径内改变表面性能。另外,除了耐久性之外,还研究了气体温度和处理时间对表面改性的几种影响。

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