Mechanical Characterization of Banana/Sisal Fibre Reinforced PLA Hybrid Composites for Structural Application

R. Ranjan, P. Bajpai, R. Tyagi
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引用次数: 28

Abstract

Advanced technology emergence in the field of petrochemical-based polymers has brought many benefits to mankind. It is validating that the ecosystem is considerably disturbed and damaged as a result of the non-degradable plastic materials used for disposable items. This paper relates the use of hybrid bio-composites, which is eco-friendly and easily degradable. Previous literature related to hybrid bio-composites proves its eco-friendly and excellent degradable properties. In this paper, banana and sisal fibers were selected to execute the hybrid bio-composite preparation with poly lactic as its matrix. Specimens were made with and without fibre treatment and their mechanical properties like tensile, flexural and impact were evaluated as per the standard test procedures. The test results obtained evident that the treated fibers having the best mechanical properties than pure PLA and untreated fibre bio-composites. The chemical treatment also improved fiber matrix interaction by removal of lignin and hemicellulose, which led to the better incorporation of fiber with the matrix. The SEM micrographs of untreated banana/sisal fibre reinforced PLA bio-composites and treated banana/sisal fibre reinforced PLA bio-composites clearly indicated the extent of the fiber-matrix interface adhesion.
香蕉/剑麻纤维增强PLA杂化复合材料的力学性能
石油化工基聚合物领域的先进技术的出现给人类带来了许多好处。它证实,由于用于一次性物品的不可降解塑料材料,生态系统受到了相当大的干扰和破坏。本文介绍了一种生态友好、易于降解的混合生物复合材料的应用。杂化生物复合材料具有良好的生态友好性和可降解性。本文以香蕉纤维和剑麻纤维为材料,以聚乳酸为基体,进行了杂化生物复合材料的制备。样品在经过纤维处理和没有经过纤维处理的情况下制成,它们的力学性能,如拉伸、弯曲和冲击,按照标准测试程序进行评估。实验结果表明,处理后的纤维比纯聚乳酸和未经处理的生物复合纤维具有更好的力学性能。化学处理还通过去除木质素和半纤维素来改善纤维与基质的相互作用,从而使纤维与基质更好地结合。未经处理的香蕉/剑麻纤维增强PLA生物复合材料和处理后的香蕉/剑麻纤维增强PLA生物复合材料的SEM显微照片清楚地显示了纤维-基质界面粘附的程度。
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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