Bioresin based hybrid green composite preparation using Holoptelea integrifolia fibers reinforced by Ziziphus jujuba seed particles: a fuzzy logic assisted optimization of mechanical behaviour

S. R. Kandavalli, Venkatesa Prabhu Sundramurthy, Vimala Devi Krishnasamy, Goli Naga Raja Prasad, U. Kasi, Sudhakar Rajesh, Balaganesh Rajesh Kumar, Mayakannan Selvaraju, S. Kadaikunnan, Jamal M Khaled
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Abstract

In recent years, hybrid natural fiber–reinforced composites prepared by bio-based epoxy resin (BBER) have gained extensive usage due to their exceptional specific strength. Researchers have looked at natural fibre/BBER composites because of the vast array of technical uses for these materials. Experimenting with various composition combinations of hybrid natural fiber composites to improve their mechanical properties requires a significant amount of resources. The purpose of this research was to develop and evaluate a tannic acid (TA) – based bio-based epoxy resin (BBER). The synthesized BBER was analyzed using FTIR spectroscopy. The bio-resin’s thermal characteristics were assessed using TGA, DSC, and OIT studies. Further, this study investigated the mechanical characteristics of hybrid composites prepared by Holoptelea integrifolia (HIBF) bark fibre reinforced with Ziziphus jujuba Seed Particles (ZJSP) which was manufactured using BBER. In the present study, a full factorial design was used to conduct experiments, which included three variables: the percentage of HIBF fibre by weight, the particle size of ZJSP, and the percentage of ZJSP by weight. The experimental results from the mechanical evaluation of the hybrid HIBF/ZJSP using BBER composites are then used to develop a fuzzy model that predicts mechanical parameters such as tensile strength (TS), flexural strength (FS), and impact strength (IS). An accurate prediction of the mechanical characteristics of hybridized composites made by the fuzzy model owing to the membership functions that were built. To further validate the fuzzy model, a set of tests utilising test cases were conducted. The model’s accuracy in predicting the mechanical characteristics of hybrid composites was determined to be 87 % based on the outcomes of the test cases.
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基于生物树脂的杂化绿色复合材料制备:使用茨竹种子颗粒增强的 Holoptelea integrifolia 纤维:机械性能的模糊逻辑辅助优化
近年来,由生物基环氧树脂(BBER)制备的混合天然纤维增强复合材料因其卓越的比强度而得到广泛应用。研究人员之所以关注天然纤维/BBER 复合材料,是因为这些材料具有广泛的技术用途。试验混合天然纤维复合材料的各种成分组合以改善其机械性能需要大量资源。本研究的目的是开发和评估一种基于单宁酸(TA)的生物基环氧树脂(BBER)。使用傅立叶变换红外光谱分析了合成的 BBER。使用 TGA、DSC 和 OIT 研究评估了生物树脂的热特性。此外,本研究还调查了由集成树皮纤维(Holoptelea integrifolia,HIBF)与酸枣仁颗粒(Ziziphus jujuba Seed Particles,ZJSP)增强的混合复合材料的机械特性,该复合材料是用 BBER 制成的。本研究采用全因子设计进行实验,包括三个变量:HIBF 纤维的重量百分比、ZJSP 的粒度和 ZJSP 的重量百分比。然后,利用 BBER 复合材料对 HIBF/ZJSP 混合材料的力学评估实验结果建立了一个模糊模型,用于预测拉伸强度(TS)、抗弯强度(FS)和冲击强度(IS)等力学参数。由于建立了成员函数,模糊模型可以准确预测混合复合材料的机械特性。为了进一步验证模糊模型,利用测试案例进行了一系列测试。根据测试案例的结果,确定该模型预测混合复合材料机械特性的准确率为 87%。
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