Impact of Water Absorption on Tensile Strength: A Comparative Study of Jute Fiber Composites with Various Fiber Content

Mohammad Salman Haque, Istiak Ahmed Ovi, Farah Samsi Prome, Anika Hossain
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Abstract

The study focuses on replacing environmentally harmful synthetic materials with natural, renewable, and biodegradable jute fibers in Bangladesh. The hand-layup method incorporates Long jute fibres unidirectionally in an epoxy resin matrix. The primary goal of this research is to examine the effects of different fiber volume fractions on the tensile strength of the composite and how that strength is affected by the composite’s water absorption behavior following two months of weathering in water. The reduction in the tensile strength of weathered samples is attributed to the loss of fibres' structural integrity upon water absorption compared to raw samples. After being exposed to the water, the tensile strength of a 5% fiber composite sample drops by around 16.43%, whereas an epoxy sample with 15% fiber reinforcement drops by about 28.93%. The interactions between the fibers and the epoxy matrix, as well as the morphology of the fibers following fracture, were analyzed by SEM for both raw and weathered samples. Fiber-matrix debonding and fiber swelling due to water absorption and voids are observed in weathered specimens, whereas perfect fiber-matrix bonding is evident in raw composites.
吸水性对拉伸强度的影响:不同纤维含量黄麻纤维复合材料的比较研究
这项研究的重点是在孟加拉国用天然、可再生和可生物降解的黄麻纤维取代对环境有害的合成材料。手工铺设法将长黄麻纤维单向铺设在环氧树脂基体中。这项研究的主要目的是考察不同纤维体积分数对复合材料拉伸强度的影响,以及在水中风化两个月后,复合材料的吸水性如何影响拉伸强度。与原始样品相比,风化样品拉伸强度的降低是由于吸水后纤维结构完整性的丧失。暴露在水中后,5% 纤维复合材料样品的抗拉强度下降了约 16.43%,而纤维增强率为 15%的环氧树脂样品则下降了约 28.93%。用扫描电子显微镜分析了未加工样品和风化样品中纤维与环氧基体之间的相互作用以及纤维断裂后的形态。在风化试样中观察到由于吸水和空隙造成的纤维与基体脱粘和纤维膨胀,而在未风化的复合材料中则观察到纤维与基体的完美粘合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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