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Investigation of mechanical properties for coconut coir and tamarind fiber reinforced composite materials

机译:椰子益发型和罗望子纤维增强复合材料力学性能研究

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Now a day's fiber reinforced composite materials plays a dominant role for variety of applications due their high specific strength and modulus. The composite materials are prepared in three different combination of fiber and epoxy resin. The first combination is epoxy 60%, coir 30% and tamarind 10%, second combination is epoxy 60%, coir 20% and tamarind 20% and the third combination epoxy 60%, coir 10% and tamarind 30%. The fiber which serves as a reinforcement in reinforced plastic material is usually synthetic or natural. The literature studies shows that synthetic fibers such as glass, carbon etc., have been used in fiber-reinforced plastics. The composite materials are tested by various testing like impact test, hardness test and tensile test for different combination composite materials. From the test results the mechanical properties like elongation, hardness and load carrying capacity of these composite materials are evaluated. The results clearly indicate that the inclusion of natural fibers improves the load bearing capacity. It is found that flexural strength (maximum load carrying capacity 9.1kN with a deflection of 16.8mm) for specimen at coir 10% and tamarind 30% was better among all combination. The tensile strength (8.35kN with deflection of 9.014mm) for specimen at coir 30% and tamarind 10% was better among all combination. The impact test result shows that impact strength (76) for specimen at coir 10% and tamarind 30% was better among all combination. By comparing all the three combination of composite material, the third combination (epoxy 60%, coir 10% and tamarind 30%) of composite material have good mechanical properties is showed.
机译:现在,一天的纤维增强复合材料对于由于其高特异性强度和模量而在各种应用中起主要作用。复合材料以三种不同的纤维和环氧树脂组合制备。第一种组合是环氧60%,第30%和罗马指南10%,第二组合是环氧60%,第20%和罗望子林20%,第三组合环氧树脂60%,椰子10%和罗兰林30%。用作增强塑料材料的加强件的纤维通常是合成的或自然的。文献研究表明,合成纤维如玻璃,碳等已用于纤维增强塑料。复合材料通过各种试验测试,如冲击试验,硬度试验和不同组合复合材料的拉伸试验。从测试结果评估这些复合材料的伸长率,硬度和承载能力等机械性能。结果清楚地表明,包含天然纤维的含量可提高承载能力。结果发现,在彼得10%和罗马林的标本下标本的弯曲强度(最大载荷容量为16.8mm的16.8mm)30%在所有组合中更好。在彼得30%和罗马林的标本中标本的拉伸强度(8.35kn偏转9.014mm),在所有组合中都会更好。冲击试验结果表明,在10%和罗望子的标本中的样品的冲击强度(76)在所有组合中都越好。通过比较复合材料的所有三种组合,复合材料的第三组合(环氧60%,第10%和Tamarind 30%)具有良好的机械性能。

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