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Graphene Reinforced Natural Fiber Nanocomposites for Structural Applications

机译:石墨烯增强天然纤维纳米复合材料用于结构应用

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An attempt has been made to develop novel polymer based nano composite material reinforced with natural fibre,synthetic fillers at both micro and nano-levels with increased performance in terms of mechanical properties. This work involves development of a new nano-composite material consisting of L-12 epoxy resin,graphene at nano,hemp fibres at micro levels. The percentage composition of hemp fibres is varied from 0.3%,0.5% and 0.7% by weight of the holding matrix,A fixed dosage of graphene nano particle of 0.3wt% of holding matrix is taken. A suitable surface modification method is employed for natural fibre treatment in order to adhere the nano-particles,this paper shall be dealing with the surface adhesion by corona method. Surfactants like NaOH and KMnCU were applied on the fibres. Fibers used as a reinforcement with epoxy to form composite material to enhance the adhesion between the fillers and holding matrix alkalisation. To determine interferential adhesion and homogeneous distribution of fibres in the holding matrix Spectroscopic analysis such as Fourier transform infrared(FTIR)and scanning electron microscope(SEM)were conducted. Mechanical testing like tensile and three-point bending tests were carried out. Among the varied 0.5% of NaOH and KMn04 treated hemp containing graphene has given optimistic results as compared to other dosage levels.
机译:已经尝试开发具有天然纤维的新型聚合物的基于聚合物的纳米复合材料,在微观和纳米水平上,在机械性能方面具有增加的性能。这项工作涉及开发由L-12环氧树脂,纳米石墨烯,Micro水平的HEMP纤维组成的新的纳米复合材料。大麻纤维的百分比组成从保持基质的重量0.3%,0.5%和0.7重量%变化,拍摄了0.3wt%的保持基质的石墨烯纳米颗粒的固定剂量。采用合适的表面改性方法用于天然纤维处理,以粘附纳米颗粒,本文应处理Corona方法的表面粘附。纤维上施加如NaOH和KMNCU等表面活性剂。用作环氧树脂的增强纤维形成复合材料,以增强填料之间的粘附性和保持基质碱化。为了确定诸如傅里叶变换红外(FTIR)和扫描电子显微镜(SEM)的保持基质光谱分析中的纤维的干扰粘附和均匀分布。进行机械测试,如拉伸和三点弯曲试验。不同的0.5%NaOH和KMn04处理的大麻含有石墨烯的含量与其他剂量水平相比具有乐观的结果。

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