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Physical, Mechanical and Water Absorption Behaviour of Coir Fiber Reinforced Epoxy Composites Filled With A12O3 Particulates

机译:基因纤维增强环氧复合材料的物理,机械和吸水行为填充A12O3颗粒

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The objective of the present work is to study the physical, mechanical and water absorption behaviour of coir fiber reinforced epoxy composites filled with A12O3 particulates. Composites with different compositions were prepared by varying the length of the fiber and content of fiber using hand lay-up technique. The experimental investigation reveals that the properties of composite increases with the incorporation of A12O3 particulates. It is observed that the density of composites increases with increase in fiber content, while a decrease in density is observed with increase in fiber length. The strength properties of the composites increases with the increase in fiber content up to 15 wt.% and 12mm fiber length, however further increase in fiber length and fiber content the value decreases. The maximum tensile strength of 25.71MPa, flexural strength of 29.75MPa and impact strength of 14.76kJ/m2 is obtained for composites withl2 mm fiber length and 15 wt.% of fiber content. The hardness and tensile modulus, on the other hand, increases with increase in fiber length and fiber content. The maximum hardness value of 19.52HV and tensile modulus of 3.412GPa is obtained for composites with 15mm fiber length and 20 wt.% of fiber content. Finally, morphological analysis is also carried out using scanning electron microscope (SEM) to study the fracture behaviour of the composite samples.
机译:本作研究的目的是研究填充有A12O3颗粒的基因纤维增强环氧树脂复合材料的物理,机械和吸水性。通过使用手叠层技术改变纤维的长度和纤维含量的长度来制备具有不同组成的复合材料。实验研究表明,复合材料的性能随着A12O3颗粒的掺入而增加。观察到复合材料的密度随比纤维含量的增加而增加,而纤维长度的增加观察到密度的降低。复合材料的强度特性随着纤维含量的增加而增加,高达15重量%。%和12mm纤维长度,但纤维长度和纤维含量的进一步增加,该值降低。 25.71MPa的最大抗拉强度,弯曲强度为29.75MPa和14.76kJ / m 2的冲击强度,用于2mM纤维长度和15wt%的复合材料。纤维含量的%。另一方面,硬度和拉伸模量随比纤维长度和纤维含量的增加而增加。为具有15mm纤维长度的复合材料和20重量%的纤维含量的复合材料获得19.52HV的最大硬度值和3.412GPa的拉伸模量。最后,使用扫描电子显微镜(SEM)还进行形态学分析,以研究复合样品的断裂行为。

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