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Modification Of Surface Properties Of Polypropylene (pp) Film Using Dc Glow Discharge Air Plasma

机译:使用直流辉光放电空气等离子体改性聚丙烯(pp)膜的表面性能

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The industrial use of polypropylene (PP) films is limited because of undesirable properties such as poor adhesion and printability. In the present study, a DC glow discharge plasma has been used to improve the surface properties of PP films and make it useful for technical applications. The change in hydrophilicity of modified PP film surface was investigated by contact angle (CA) and surface energy measurements as a function of exposure time. In addition, plasma-treated PP films have been subjected to an ageing process to determine the durability of the plasma treatment. Changes in morphological and chemical composition of PP films were analyzed by atomic force microscopy (AFM) and X-ray photoelectron spectroscopy (XPS). The improvement in adhesion was studied by measuring T-peel and lap shear strength. The results show that the surface hydrophilicity has been improved due to the increase in the roughness and the introduction of oxygen-containing polar groups. The AFM observation on PP film shows that the roughness of the surface increased due to plasma treatment. Analysis of chemical binding states and surface chemical composition by XPS showed an increase in the formation of polar functional groups and the concentration of oxygen content on the plasma-processed PP film surfaces. T-peel and lap shear test for adhesion strength measurement showed that the adhesion strength of the plasma-modified PP films increased compared with untreated films surface.
机译:聚丙烯(PP)薄膜的工业用途受到限制,因为它们的性能不理想,例如粘合性和可印刷性差。在本研究中,直流辉光放电等离子体已用于改善PP膜的表面性能,并使其可用于技术应用。通过接触角(CA)和表面能测量值作为暴露时间的函数,研究了改性PP膜表面亲水性的变化。另外,对经过等离子体处理的PP膜进行了时效处理,以确定等离子体处理的耐久性。通过原子力显微镜(AFM)和X射线光电子能谱(XPS)分析了PP膜的形态和化学组成的变化。通过测量T-剥离和搭接剪切强度来研究粘合性的改善。结果表明,由于粗糙度的增加和含氧极性基团的引入,提高了表面亲水性。在AFM上对PP膜的观察表明,由于等离子处理,表面的粗糙度增加了。通过XPS对化学键合状态和表面化学成分的分析表明,在等离子处理的PP膜表面上极性官能团的形成和氧含量的浓度增加。用于粘合强度测量的T-剥离和搭接剪切试验显示,与未处理的膜表面相比,等离子体改性的PP膜的粘合强度增加。

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