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Influence of processing on morphology in short aramid fiber reinforced elastomer compounds

机译:加工工艺对芳纶短纤维增强弹性体复合材料形貌的影响

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摘要

The rubber industry is nowadays facing the general increase of raw materials as the customers are confronted with rising prices for energy. Therefore there is a need for higher durability of elastomer applications. Short fiber reinforced elastomers can contribute to the improvement of dynamic and wear properties. To determine structure-property relationships in short fiber reinforced elastomer compounds it is of crucial interest to know the contributions of fiber aspect ratio, volume content, orientation and fiber-elastomer interaction. Therefore the influence of different processing conditions and fiber contents on the resulting morphology and macroscopic properties was investigated in this article by the help of fluorescence and confocal laser microscopy using a transparent ethylene-propylene-diene rubber (EPDM) matrix. It was found that the processing induced fiber breakage was the key factor in determining the composite morphology and subsequent physical properties.
机译:如今,橡胶行业面对原材料的普遍增长,因为客户面临着能源价格上涨的困扰。因此,需要弹性体应用的更高耐久性。短纤维增强的弹性体可有助于改善动态和磨损性能。为了确定短纤维增强弹性体化合物中的结构性质关系,至关重要的是要了解纤维长径比,体积含量,取向和纤维-弹性体相互作用的贡献。因此,本文通过使用透明的乙烯-丙烯-二烯橡胶(EPDM)基体的荧光和共聚焦激光显微镜技术研究了不同加工条件和纤维含量对所得形态和宏观性能的影响。发现加工引起的纤维断裂是确定复合材料形态和随后的物理性能的关键因素。

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