亚马逊天然纤维混杂复合材料的数值与实验分析

G. G. del Pino, A. Bezazi, H. Boumediri, J. L. Valín Rivera, A. C. Kieling, Sofia Dehaini Garcia, José Costa de Macêdo Neto, Marcos Dantas dos Santos, T. Panzera, Aristides Rivera Torres, César Alberto Chagoyen Méndez, F. V. Valenzuela Díaz
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引用次数: 1

摘要

近年来,由于天然纤维具有低成本、高比模量、可生物降解性、丰富度和许多技术特性等吸引人的特点,木质纤维素纤维作为增强材料在复合材料中的应用越来越广泛。天然纤维混杂复合材料广泛应用于汽车、航空航天等行业。本文对工业环氧复合材料中curauau、黄麻和剑麻纤维的性能进行了数值和实验分析比较。通过确定每种纤维的用量,考虑了最适宜的杂化效应对力学性能的影响。设计了有限元模型,并通过力学试验进行了验证。采用田口法进行试验设计,确定有限元模型和试样的数量,并对结果进行统计验证。黄麻纤维的复合材料强度最高,其次是黄麻和剑麻纤维。这种行为是通过有限元和实验测试来实现的,表明通过增加纤维总量达到35%,拉伸强度增加。当复合材料由curaut (20wt .%),黄麻(10wt .%)和剑麻(5wt .%)纤维制成时,强度更高。结果表明,有限元计算结果与试验结果吻合较好。此外,本研究的结果与先前在公开文献中获得的结果进行了比较。
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Numerical and Experimental Analyses of Hybrid Composites Made from Amazonian Natural Fibers
The application of lignocellulosic fibers as reinforcements in composite materials has found increasing use in recent years, due to the attractive characteristics of natural fibers such as their low cost, high specific modulus, biodegradability, abundance and with many technical qualities. Natural fiber hybrid composites are very frequently used in automotive aerospace and other industries. In this work, numerical and experimental analysis is carried out to compare curauá, jute and sisal fibers in epoxy composites for use in industry. The most appropriate hybridization effect by establishing the amounts of each fiber on the mechanical properties was considered. Finite Element Models were designed and validated through mechanical tests. The number of Finite Element models and specimens performed was determined through the design of experiments using the Taguchi Method and then the results were statistically validated. Higher strength was obtained in composites made with curauá fiber, followed by jute and sisal fibers. Such behavior was achieved by FEM and experimental tests, revealing an increase in tensile strength by increasing the amount of fibers up to 35% in total. Higher strength was achieved when the composite was made with curauá (20 wt.%), jute (10 wt.%) and sisal (5 wt.%) fibers. The results show a good agreement between the FEM and the experimental tests. Furthermore, the results of the present study were compared with those obtained previously mentioned in the open literature.
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