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Mechanical and Water Intake Properties of Banana-Carbon Hybrid Fiber Reinforced Polymer Composites

机译:香蕉碳杂化纤维增强聚合物复合材料的机械和水进气性能

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The concern for the environmental pollution and the prevention of resources has attracted researchers to develop new eco-friendly green materials based on sustainability principles. In this experimental study, there are six different composite samples were fabricated by using banana and carbon fibers with epoxy resin matrix. The mechanical properties such as tensile strength, flexural strength, impact strength, and water uptake properties of these composites have been evaluated. The composites reinforced with pure carbon fibers can hold the maximum tensile strength of 288.03 MPa, flexural strength of 3.12 kN, impact strength of 4.58 J and water intake percentage of 62.3%. Whereas the composites reinforced with carbon and banana fibers can withstand the maximum tensile strength of 277.06 MPa, flexural strength of 3.07 kN, impact strength of 4.36 J and water intake percentage of 70%. The finite element analysis has been carried out to predict the mechanical properties of the composites by using ANSYS 15.0. The experimental results are compared with the predicted values and have found that, there is a high correlation occurs between the results. Scanning electron microscopy (SEM) analysis is carried out to study the fiber matrix interfaces and analyse the structure of the fractured and water absorbed surfaces.
机译:对环境污染和防止资源的关注引起了研究人员,以基于可持续性原则开发新的环保绿色材料。在该实验研究中,通过使用香蕉和具有环氧树脂基质的碳纤维来制造六种不同的复合样品。已经评估了这些复合材料的抗拉强度,弯曲强度,冲击强度和水吸收性能的机械性能。用纯碳纤维增强的复合材料可以保持288.03MPa的最大抗拉强度,弯曲强度为3.12 kN,冲击强度为4.58 J和水摄入量为62.3%。而用碳和香蕉纤维加强的复合材料可以承受277.06MPa的最大抗拉强度,弯曲强度为3.07 kN,冲击强度为4.36秒,水摄入量为70%。已经进行了有限元分析以通过使用ANSYS 15.0来预测复合材料的机械性能。将实验结果与预测值进行比较,并且发现结果发生了高相关。进行扫描电子显微镜(SEM)分析,以研究纤维基质接口并分析破裂和吸水表面的结构。

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