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Factors Influencing Reinforcement of NR and EPDM Rubbers with Short Aramid Fibers

机译:短芳纶纤维增强NR和EpDm橡胶增强的影响因素

摘要

Among short fiber reinforced composites, those with rubbery matrices have gained great importance due to the advantages they have in processing and low cost, coupled with high strength. These composites combine the elastic behavior of rubbers with strength and stiffness of fibers. Reinforcement with short fibers offers additional features such as design flexibility, high modulus, tear strength, etc. The degree of reinforcement depends on parameters such as: the nature of the rubber matrix, the type of fibers, the concentration and orientation of fibers, fiber to rubber adhesion (generation of a strong interface), fiber length and aspect ratio of the fibers. In this research aramid fibers have been chosen because of their significantly higher modulus and strength, compared to other commercial fibers. Compounds based on NR and EPDM are prepared. Short aramid fibers with different kinds of surface treatments, standard finish and RFL-coating result in different rubber-fiber interfaces. The reinforcing effect of these short aramid fibers is characterized by mechanical and viscoelastic experiments, and by studying the fracture surfaces with microscopic techniques.
机译:在短纤维增强复合材料中,具有橡胶状基质的复合材料由于其在加工,低成本,高强度方面的优势而变得非常重要。这些复合材料将橡胶的弹性性能与纤维的强度和刚度结合在一起。短纤维增强可提供其他功能,例如设计灵活性,高模量,撕裂强度等。增强程度取决于以下参数:橡胶基质的性质,纤维类型,纤维的浓度和方向,纤维橡胶粘合性(产生牢固的界面),纤维长度和纤维的长径比。在这项研究中,选择芳纶纤维是因为与其他商品纤维相比,它们的模量和强度明显更高。制备了基于NR和EPDM的化合物。短芳纶纤维具有不同类型的表面处理,标准的光洁度和RFL涂层,形成了不同的橡胶纤维界面。这些短的芳族聚酰胺纤维的增强作用通过机械和粘弹性实验以及通过显微技术研究断裂表面来表征。

著录项

  • 作者

    Shirazi M.; Noordermeer J.W.M.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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