首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Micro-mechanical analysis of the pineapple-reinforced polymeric composite by the inclusion of pineapple leaf particulates
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Micro-mechanical analysis of the pineapple-reinforced polymeric composite by the inclusion of pineapple leaf particulates

机译:菠萝叶颗粒用菠萝增强聚合物复合材料的微力学分析

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The present study is focused on investigating the effect of the micro-mechanical properties of the natural fiber- (pineapple leaf fiber) reinforced polymeric composites by the addition of pineapple leaf micro-particulates. For the investigation, a two-step approach has been used. In the first step, finite element method-based analysis has been used to characterize the tensile and shear properties of the pineapple leaf fiber-reinforced polymeric composites (FRP) and pineapple paticulate-reinforced polymeric composites (PRC), and the adopted finite element method-based analysis has been validated through the experimental approach. In the second step, the validated finite element method-based analysis has been used to characterize the micro-mechanical properties of the hybrid fiber-reinforced polymeric composites (HFRP) fabricated using the pineapple leaf micro-particle embedded epoxy as a matrix material and the pineapple leaf fiber has been used as reinforcing material. It has been observed through the analysis that the micro-mechanical properties of HFRP were superior to that of FRP. There has been a 10.16% increment in Young's modulus in the longitudinal direction and a 26.36% increment in Young's modulus in the transverse direction for HFRP over FRP. Further, a 9.91% increment for in-plane shear modulus and 26.17% increment in outer-plane shear modulus have been observed for HFRP in comparison to FRP. These results suggest that pineapple leaf particulates are good reinforcing materials to enhance the transverse direction and outer plane micro-mechanical properties of the fiber-reinforced composite.
机译:本研究专注于通过添加菠萝叶片微颗粒来研究天然纤维(菠萝叶纤维)增强聚合物复合材料的微机械性能的影响。对于调查,已经使用了两步方法。在第一步中,基于有限元方法的分析用于表征菠萝叶纤维增强聚合物复合材料(FRP)和菠萝涂层增强聚合物复合材料(PRC)的拉伸和剪切性能,以及采用的有限元方法基于实验方法验证了分析。在第二步中,已经使用验证的有限元方法的分析来表征使用菠萝叶片微粒嵌入环氧树脂作为基质材料制造的杂化纤维增强聚合物复合材料(HFRP)的微机械性能。菠萝叶纤维已被用作增强材料。通过分析已经观察到HFRP的微机械性能优于FRP的微机械性能。在纵向方向上的杨氏模量增加了10.16%的增量,杨氏模量递增26.36%,用于在FRP上的HFRP的横向。此外,与FRP相比,已经观察到与外平面剪切模量的面内剪切模量的9.91%增加了外平面剪切模量的26.17%。这些结果表明,菠萝叶颗粒是良好的增强材料,以提高纤维增强复合材料的横向和外平面微机械性能。

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