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Photochemical surface modification of PP for abrasion resistance

机译:PP的光化学表面改性以提高耐磨性

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摘要

The potential of a photo-chemical approach to increase the surface hardness of polypropylene (PP) has been studied. Using a 222 nm excimer lamp, fibers and film were irradiated in the presence of multifunctional substances diallylphthalate (DAP), tetraallyloxyethane (TAE), and pentaerithritoltriacylate (PETA) and characterized with regard to the resulting effect on abrasion resistance. AFM-based methods were employed to analyze thermo-mechanical surface properties. Nanoindentation and microthermal analyses of the outermost surface layers of UV treated fibers gave clear indications of an effective cross-linking of reactive substances present during irradiation. One may assume that the reactive media polymerize on top of the surface of the PP substrate and form a thin-layer. The abrasion resistance of the PP fibers was tested by applying stress through a rotating and axially oscillating roller of defined roughness and measuring the mass loss as a function of time. The abrasion resistance was found to be remarkably improved compared to the untreated fiber. Best effects were achieved using PETA as reactive substance. The experiments clearly showed the influence of processing conditions, namely with regard to homogeneous coverage of the substrate surface with the reactive medium.
机译:已经研究了光化学方法增加聚丙烯(PP)表面硬度的潜力。使用222 nm准分子灯,在多功能物质邻苯二甲酰邻苯二酸酯(DAP),四烯丙基氧乙烷(TAE)和季戊四醇三酰基丙烯酸酯(PETA)的存在下辐照纤维和薄膜,并就其对耐磨性的影响进行表征。基于原子力显微镜的方法被用来分析热机械表面性能。对经过紫外线处理的纤维最外层的纳米压痕和微热分析清楚地表明了辐照过程中存在的活性物质的有效交联。可以假定反应性介质在PP基材表面的顶部聚合并形成薄层。 PP纤维的耐磨性是通过以下方法测试的:通过具有确定粗糙度的旋转和轴向振荡辊施加应力,并测量质量损失随时间的变化。发现与未处理的纤维相比,耐磨性显着提高。使用PETA作为反应性物质可获得最佳效果。实验清楚地表明了加工条件的影响,即,反应介质对基材表面的均匀覆盖。

著录项

  • 来源
    《Applied Surface Science》 |2009年第22期|9139-9145|共7页
  • 作者单位

    Deutsches Textilforschungszentrum Nord-West e.V., Adlerstr. 1, D-47798 Krefeld, Germany;

    Leibniz Institut fuer Polymerforschung Dresden e.V., Hone Str. 6, D-01069 Dresden, Germany;

    Leibniz Institut fuer Polymerforschung Dresden e.V., Hone Str. 6, D-01069 Dresden, Germany;

    Leibniz Institut fuer Polymerforschung Dresden e.V., Hone Str. 6, D-01069 Dresden, Germany;

    Deutsches Textilforschungszentrum Nord-West e.V., Adlerstr. 1, D-47798 Krefeld, Germany;

    Deutsches Textilforschungszentrum Nord-West e.V., Adlerstr. 1, D-47798 Krefeld, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photo-chemical cross-linking; abrasion resistance; surface hardness;

    机译:光化学交联;抗磨性;表面硬度;
  • 入库时间 2022-08-18 03:07:50

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