Analysis of the Effect of Hybridization of Coconut Shell Particles on Kenaf-Coir Based Epoxy Hybrid Composites

Shikha Parashar, V. Chawla
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引用次数: 2

Abstract

These days manufacturing and automobile industries need structures and materials that are good in strength, higher in toughness, low in weight as well as, are more sustainable in comparison to the presently used materials. Innovative materials like hybrid composite materials are gaining a lot of attention in industrial sector. Recent research work depicts that fiber-reinforced hybrid composite can be utilized in several application areas due to their good mechanical and physical characteristics like, high strength, low weight, and higher opposition to corrosion. In this paper, the combined effect of kenaf fibers and coconut shell nanoparticles on coir fibre reinforced epoxy composites has been investigated. Three different combinations of samples with varying content of coconut shell particles as 0, 3, 5 wt% respectively and kenaf fibres as 5, 4, 0 wt% respectively, along with coconut fibers and epoxy matrix, have been used in the research. Results have been calculated for the three samples using six different analytical models. The results are analyzed using Representative Volume Element (RVE) analysis. The mechanical characteristics like Poisson’s ratio, transverse modulus, longitudinal modulus, are evaluated. The outcomes of analytical modelling are in harmony with the results obtained from the RVE analysis. The outcomes of the research show that the hybridization of various fibres in the composite is among the most potent ways to augment the attributes of composite laminates. The incorporation of coconut shell nanoparticles has also seen to increase the elastic properties of the coir kenaf epoxy hybrid nanocomposite.
椰壳颗粒杂交对红麻-椰胶基环氧复合材料的影响分析
如今,制造业和汽车工业需要强度好、韧性高、重量轻以及比目前使用的材料更具可持续性的结构和材料。混合复合材料等创新材料在工业领域受到广泛关注。最近的研究表明,纤维增强混合复合材料由于其良好的机械和物理特性,如高强度、低重量和更高的抗腐蚀性,可以应用于多个应用领域。本文研究了红麻纤维和椰子壳纳米粒子在椰壳纤维增强环氧复合材料中的复合作用。采用椰壳颗粒含量分别为0、3、5 wt%和红麻纤维含量分别为5、4、0 wt%的三种不同的样品组合,以及椰纤维和环氧树脂基体进行了研究。使用六种不同的分析模型计算了三个样品的结果。采用代表性体积元(RVE)分析结果。对其泊松比、横向模量、纵向模量等力学特性进行了评价。分析模型的结果与RVE分析的结果是一致的。研究结果表明,复合材料中各种纤维的杂交是增强复合材料层合板属性的最有效方法之一。椰子壳纳米颗粒的掺入也增加了椰子红麻环氧杂化纳米复合材料的弹性性能。
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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