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Physical, Mechanical, and Water Absorption Behavior of Coir/Glass Fiber Reinforced Epoxy Based Hybrid Composites

机译:椰壳纤维/玻璃纤维增​​强环氧树脂基杂化复合材料的物理,机械和吸水行为

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Fiber reinforced polymer composites has been used in a variety of application because of their many advantages such as relatively low cost of production, easy to fabricate, and superior strength compare to neat polymer resins. Reinforcement in polymer is either synthetic or natural. Synthetic fiber such as glass, carbon, etc. has high specific strength but their fields of application are limited due to higher cost of production. Recently there is an increase interest in natural composites which are made by reinforcement of natural fiber. In this connection, an investigation has been carried out to make better utilization of coconut coir fiber for making value added products. The objective of the present research work is to study the physical, mechanical, and water absorption behavior of coir/ glass fiber reinforced epoxy based hybrid composites. The effect of fiber loading and length on mechanical properties like tensile strength, flexural strength, and hardness of composites is studied. The experimental results reveal that the maximum strength properties is observed for the composite with 10 wt% fiber loading at 15 mm length. The maximum flexural strength of 63 MPa is observed for composites with 10 wt% fiber loading at 15 mm fiber length. Similarly, the maximum hardness value of 21.3 Hv is obtained for composites with 10 wt% fiber loading at 20 mm fiber length. Also, the surface morphology of fractured surfaces after tensile testing is examined using scanning electron microscope (SEM).
机译:与纯聚合物树脂相比,纤维增强聚合物复合材料具有许多优点,例如相对较低的生产成本,易于制造以及强度高等优点,因此已被用于各种应用中。聚合物中的增强是合成的或天然的。诸如玻璃,碳等的合成纤维具有高的比强度,但是由于较高的生产成本,其应用领域受到限制。最近,人们对通过增强天然纤维制成的天然复合材料的兴趣日益增加。在这方面,已经进行了研究以更好地利用椰子椰壳纤维来制造增值产品。本研究工作的目的是研究椰壳纤维/玻璃纤维增​​强的环氧树脂基杂化复合材料的物理,机械和吸水性能。研究了纤维负载和长度对机械性能(如复合材料的拉伸强度,弯曲强度和硬度)的影响。实验结果表明,在纤维长度为15 mm的情况下,纤维含量为10 wt%时,复合材料具有最大的强度性能。对于纤维长度为15 mm的纤维负载量为10 wt%的复合材料,观察到最大弯曲强度为63 MPa。类似地,对于纤维长度为20 mm的纤维负载量为10 wt%的复合材料,其最大硬度值为21.3 Hv。另外,使用扫描电子显微镜(SEM)检查拉伸试验后的断裂表面的表面形态。

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