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Effect of Coupling Agent on Mechanical Properties of Palm Petiole Nanofiber Reinforced Composite

机译:偶联剂对棕榈叶型纳米纤维增强复合材料力学性能的影响

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Composites have replaced conventional materials due to their advantages such as low cost, low density, high strength, etc. recently the research has been focused on natural fibers as a suitable replacement for synthetic fibers for reinforcement in composites. Hence, in this work, natural fiber is extracted from palm petiole and this fiber is investigated for reinforcement in epoxy polymer. The fiber is subjected to different chemical treatments for enhancing the surface wetting and Nano cellulose will also be extracted from the fiber. The composite will be fabricated by using handlay-up method by using 1%, 2%, 3% volume fraction of cellulose nanofiber in the epoxy resin. It is observed that the increase of the nanofiber in 3% volume fraction gives the good tensile, flexural and impact strength. So they obtained chemically treated cellulose nanofiber was treated with the amino propyl triethoxysilane and 3% of the silanesilane treated nano-fiber fabricated. Then the mechanical testings of this is compared with the 3% of chemically treated nano-fiber composite. The silane treated nanofiber gives the best results.
机译:复合材料由于其优点而取代了传统材料,例如低成本,低密度,高强度等。最近,该研究一直专注于天然纤维,作为合成纤维在复合材料中加固的合成纤维的合适替代品。因此,在这项工作中,从棕榈叶中提取天然纤维,并研究该纤维以加强环氧聚合物。对纤维进行不同的化学处理,用于增强表面润湿,也可以从纤维中提取纳米纤维素。通过在环氧树脂中使用1%,2%,3%的纤维素纳米纤维使用手持量方法,将通过使用单层方法制造复合材料。观察到3%体积分数中的纳米纤维的增加给出了良好的拉伸,弯曲和冲击强度。因此,通过氨基丙基三乙氧基硅烷和3%的硅烷硅烷处理的纳米纤维处理了化学处理过的纤维素纳米纤维。然后将其的机械测试与化学处理的纳米纤维复合材料的3%进行比较。硅烷处理的纳米纤维提供了最佳效果。

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