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Experimental Evaluation for Mechanical Property of Unidirectional Banana Reinforced Polyester Composites

机译:单向香蕉增强涤纶复合材料力学性能实验评价

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Development of composite materials requires reinforcement and matrix in which fiber is finest suitable material for reinforcement which improves properties of materials. The use of high strength fiber leads to birth of advanced composites, which are mainly used, for high strength application or aerospace application. However, the use of medium strength and low strength fiber available in nature are also having enough potential for other application where high strength are not critical but it can provide a feasible range of alternative materials to suitable conventional material. Several billion tons of fillers and reinforcements are used annually in the plastics industry, and there is a huge potential market for recyclable, energy efficient and more environmentally friendly composite materials. The present work examines the different types of natural fiber available for the development potential composites. The attempts are already made for jute, flax and sisal natural fibers provides data from literature but there is lack of experimental data availability for unidirectional natural fiber composite like cotton, pineapple, banana fiber reinforced unidirectional composite. It is decided to carry out the systematic experimental study for the effect of volume fraction of reinforcement on longitudinal strength as well as elastic modulus using developed mould-punch set up and testing aids. The testing is carried out as per ASTM D3039/3039M-08. Specimen failure inspection was carried out through Scanning Electron Microscope (Model: Hitachi S-3400N). The comparative assessment of obtained experimental results with predictive models forms an equally important constituent of present work.
机译:复合材料的发展需要加强和基质,其中纤维是最好的合适的材料用于加强其改善的材料性能。使用高强度纤维导致高强度应用或航空航天应用的先进复合材料的出生。然而,使用中等强度和低强度纤维的使用也具有足够的潜力对于高强度不是关键的其他应用,但它可以为合适的常规材料提供可行的替代材料。在塑料行业中每年使用数十亿吨填料和增强剂,并且有巨大的可回收,节能和更环保的复合材料潜在市场。目前的工作检查了可用于开发潜在复合材料的不同类型的天然光纤。该尝试已经为黄麻,亚麻和剑麻天然纤维提供了来自文献的数据,而是缺乏棉花,菠萝,香蕉纤维增强单向复合材料的单向天然纤维复合材料的实验数据可用性。决定对纵向强度的纵向强度的体积分数和弹性模量进行系统实验研究,使用开发的模具冲孔设定和测试助剂。该测试根据ASTM D3039 / 3039M-08进行。通过扫描电子显微镜进行样品失效检查(型号:Hitachi S-3400N)进行。通过预测模型获得实验结果的比较评估形成了现在工作的同样重要的组成部分。

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