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首页> 外文期刊>Journal of Electrostatics >Characterization of a non-thermal plasma torch in streamer mode and its effect on polyvinyl chloride and silicone rubber surfaces
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Characterization of a non-thermal plasma torch in streamer mode and its effect on polyvinyl chloride and silicone rubber surfaces

机译:流光模式下非热等离子体炬的特性及其对聚氯乙烯和硅橡胶表面的影响

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In this study, a non-thermal plasma torch in steamer mode was characterized to apply for surface modification in ambient air. The plasma source is a central rod-ring configuration based on DBD operation. Mixture of Ar/air gases was passed through the hollow Copper rod. A home-built high voltage generator at 18.8kHz was employed to ignite the plasma. Electrical features of plasma torch were studied and different regions of plasma were examined using optical emission spectroscopy to explore the reactive species that result in efficient treatment. The surfaces of polyvinyl chloride (PVC) and silicone rubber (SIR) films were treated by the cold plasma torch. Contact angle measurement shows the improvement of surface hydrophilicity and wettability. Analysis revealed that the surface energy of the films increases indicating their activation after plasma treatment. This process is attributed to increasing the polar component of the surface energy.
机译:在这项研究中,以蒸锅模式的非热等离子体炬的特点是可以在环境空气中进行表面改性。等离子体源是基于DBD操作的中心杆-环结构。 Ar /空气的混合物通过空心铜棒。使用自制的18.8kHz高压发生器点燃等离子体。研究了等离子炬的电特性,并使用光发射光谱法研究了不同区域的等离子体,以探索可进行有效处理的反应性物种。用冷等离子炬处理聚氯乙烯(PVC)和硅橡胶(SIR)膜的表面。接触角测量显示出表面亲水性和润湿性的改善。分析表明,膜的表面能增加,表明等离子处理后它们的活化。该过程归因于增加表面能的极性成分。

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