碳基纳米填料对韧皮纤维增强聚合物复合材料机械、电气和热性能的影响

Md. Syduzzaman, Kawser Parveen Chowdhury, Fahmida Faiza Fahmi, Shaida Sultana Rumi, Abir Hassan
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引用次数: 0

摘要

韧皮纤维增强聚合物复合材料(BFRP)因其对环境的显著影响和卓越的生物降解性而备受研究关注。虽然 BFRP 具有优异的生态性能因素,但由于吸湿性强、热稳定性低以及韧皮纤维的固有特性,它们在某些方面也存在不足,例如机械、电气和热性能较低。与合成纤维增强聚合物复合材料相比,韧皮纤维增强聚合物复合材料的纤维/基体界面粘合力较弱,因此机械性能较低。如今,各种纤维和基体改性技术的应用改善了纤维与基体之间的相互作用,最终提高了机械性能。在纤维和基体改性技术中,纳米填料集成是最有前途的一种。本研究综述了在多样化的 BFRP 中引入碳基纳米填料,特别是石墨烯和碳纳米管(CNT)的影响。全面综述了碳基纳米填料对 BFRP 的机械、电气和热行为的影响及其潜在前景。最后,论文介绍了复合材料加工中的挑战和困难,以及克服这些挑战和困难的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of carbon-based nanofillers on mechanical, electrical, and thermal properties of bast fiber reinforced polymer composites
Bast fiber-reinforced polymer composites (BFRPs) are grabbing considerable research attention due to their assertive impact on the environment and excellence in biodegradability. Though BFRPs have excellent ecological performance factors, they also lack in some cases, such as lower mechanical, electrical, and thermal properties, due to the significant moisture absorption, minimal thermal stability, and inherent nature of bast fibers. BFRPs exhibit weaker fiber/matrix interfacial adhesion as compared to synthetic fiber-reinforced polymer composites, resulting in lower mechanical properties. Nowadays, a wide variety of fiber and matrix modification techniques are practiced improving the fiber-matrix interaction, which ultimately improves the mechanical properties. Among the fiber and matrix modification techniques, nanofiller integration is the most promising one. This study reviews the impacts of introducing carbon-based nanofillers, particularly graphene and carbon nanotubes (CNT), in diversified BFRPs. The influence of carbon-based nanofillers on the mechanical, electrical, and thermal behavior of BFRPs and their potential prospects are comprehensively reviewed. The paper concludes with the challenges and difficulties in composite processing, along with the techniques for overcoming them.
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