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Study on Parameter Optimization of Polypropylene Surface Modification in Atmospheric Pressure Dielectric Barrier Discharge

机译:常压介质阻挡放电中聚丙烯表面改性参数优化研究

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Atmospheric pressure dielectric barrier discharge is widely used for surface modification of polymers. In this paper, the effect of discharge energy density on wettability and oxygen atomic percentage of polypropylene surface is investigated. Contact angle measurement, atomic force microscopy and X-ray photoelectron spectroscopy are applied to analyze the changes of surface wettability and topology of the samples. In the experiments, polypropylene surface contact angles decrease and then increase when the discharge energy density increases. While oxygen atomic percentages increase and then decrease as energy density increasing. An optimum range of discharge energy density is obtained. And it indicates that the changes of water contact angles are due to surface microstructure and chemical compositions by analyzing the results of AFM and XPS measurements. The results show that there exist optimal discharge processing parameters for polypropylene surface modification.
机译:大气压介电阻挡排放广泛用于聚合物的表面改性。本文研究了对聚丙烯表面润湿性和氧原子百分比的放电能量密度对聚丙烯表面的影响。接触角测量,原子力显微镜和X射线光电子能谱应用于分析样品表面润湿性和拓扑的变化。在实验中,当放电能量密度增加时,聚丙烯表面接触角减小,然后增加。氧气原子百分比增加,随后随着能量密度的增加而降低。获得最佳放电能量密度范围。并且表明通过分析AFM和XPS测量的结果,水接触角的变化是由于表面微观结构和化学组合物。结果表明,聚丙烯表面改性存在最佳的放电处理参数。

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