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Forced air plasma treatment for enhanced adhesion of polypropylene and polyethylene

机译:强制空气等离子体处理可增强聚丙烯和聚乙烯的附着力

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This paper describes our investigation of the effects of forced air plasma treatment on polypropylene and polyethylene. The morphology of the treated surfaces has been carefully examined using a variety of tools including optical profiling. The complex surface morphology was observed to change with increasing treatment and varying intensity of the treatment over the surface. Optimum treatment conditions have been deduced using surface energy determinations and can be compared with the morphological changes. Determinations of surface energy, both the polar and non-polar components, have been made after exposure to varying moisture conditions for varying times. Different results are obtained for different environments and from different materials. These results demonstrate that forced air plasma treatment is a highly effective means of increasing the surface energy of polymers, which can be long-lasting, provided the treated surfaces are kept in dry conditions.
机译:本文介绍了我们对强制空气等离子体处理对聚丙烯和聚乙烯的影响的研究。已使用各种工具(包括光学轮廓分析)仔细检查了处理过的表面的形态。观察到复杂的表面形态随着处理量的增加和表面处理强度的变化而变化。使用表面能测定可以得出最佳处理条件,并且可以将其与形态变化进行比较。在暴露于变化的水分条件下变化的时间之后,已经确定了极性和非极性成分的表面能。对于不同的环境和不同的材料,可以获得不同的结果。这些结果表明,强迫空气等离子体处理是增加聚合物表面能的高效方法,只要将处理过的表面保持在干燥条件下,表面活性就可以持久。

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