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The Effect of Hybridization on Thermal and Mechanical Properties of Glass/Oxidized PAN Fibers-Polymer Composites

机译:杂化对玻璃/氧化PAN纤维-聚合物复合材料热力学性能的影响

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摘要

Fibers hybridization is one of the most effective ways to facilitate the use of the new fibers as reinforcement in composite materials. In this study, oxidized polyacrylonitrile fibers (OPFs) and glass fibers were hybridized in a polymer matrix through hand lay-up method by arranging the fibers in different layering sequences. The hybridization effects of fibers on thermal and mechanical properties of the polymer matrix composites were investigated by thermal analysis, horizontal burning, tensile and flexural testes. It was found that by increasing the OPFs to glass fibers ratio, tensile strength, elastic and flexural modulus and flexural stress were decreased, whereas failure strain followed a different trend. Also, hybridization of OPFs and glass fibers in composites led to decreasing the burning rate and consequently, increasing fire retardancy. The obtained thermogravimetric analysis results also demonstrated that maximum and minimum amounts of char residue at 900 degrees C were related to the composites reinforced with four layers of glass fibers and OPFs, respectively. Based on the results of derivative thermogravimetric (DTG), by increasing the OPFs to glass fibers ratio, DTG curves were shifted to higher temperatures.
机译:纤维杂化是促进将新纤维用作复合材料增强材料的最有效方法之一。在这项研究中,将氧化聚丙烯腈纤维(OPFs)和玻璃纤维通过手工铺层方法在聚合物基质中进行杂交,方法是将纤维按不同的分层顺序排列。通过热分析,水平燃烧,拉伸和弯曲睾丸研究了纤维对聚合物基复合材料热力学性能的混杂影响。发现通过增加OPF与玻璃纤维的比率,拉伸强度,弹性和挠曲模量以及挠曲应力降低,而破坏应变遵循不同的趋势。另外,复合材料中OPF和玻璃纤维的杂化导致燃烧速率降低,从而增加了阻燃性。所获得的热重分析结果还表明,在900摄氏度下,炭残留量的最大值和最小值分别与四层玻璃纤维和OPFs增强的复合材料有关。基于导数热重分析(DTG)的结果,通过提高OPF与玻璃纤维的比率,DTG曲线移至更高的温度。

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