Curaua纤维/Babool木颗粒增强聚酯杂化复合材料的力学性能

A. Jose, R. Suthan, A. Rao, P. Aurtherson, K. Ajan, D. S. Jenaris
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引用次数: 0

摘要

研究人员通过开发新型环保材料来满足工程材料的需求。天然纤维复合材料是合成材料的替代品。研究了库拉瓦纤维增强聚酯(CFRP)复合材料的力学性能,以及库拉瓦纤维与巴布尔木颗粒(BWP)的复合性能。为了测试拉伸强度和弯曲强度,复合材料样品采用手铺法,使用不同数量的curaua纤维(CF)和babool木颗粒以1:1的比例制作。结果表明:在弱化前,复合材料试样的抗拉强度和抗弯强度均提高了40%以上;与重量为40% (CF20/BWP20)的复合材料相比,纯树脂制备的复合材料的拉伸强度和弯曲强度分别提高了93.42%和86.4%。混合复合材料的拉伸和弯曲模量值增加了50%,但不太成功(CF25和BWP25)。利用扫描电镜对破碎后的复合材料试样的断裂机理进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical characterization of Curaua fiber/Babool wood particle reinforced polyester hybrid composite
The researchers are in the situation to satisfy the demand for engineering materials by developing novel eco-friendly materials. The natural fiber composites are the substitutes for the synthetic material. The mechanical properties of curaua fiber-reinforced polyester (CFRP) composites were investigated, as well as the effects of curaua fibre infusion with Babool Wood particles (BWP). The composite specimens were fabricated using a hand lay-up approach using varying amounts of curaua fibres (CF) and babool wood particles in a 1:1 ratio in order to test the tensile strength and flexural strength. The results demonstrated that before weakening, the tensile strength and flexural strength of the composite samples rose by up to 40% for hybrid reinforcements. Comparing samples made of pure resin to those made of the composite at 40 weight percent (CF20/BWP20), the tensile and bending strengths of the composite are improved by 93.42% and 86.4%, respectively. The tensile and flexural modulus values of the hybrid composites increased by up to 50% fiber, but less successfully (CF25 and BWP25). The fracture mechanism of the shattered composite samples was examined using scanning electron microscopy.
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来源期刊
Current Materials Science
Current Materials Science Materials Science-Materials Science (all)
CiteScore
0.80
自引率
0.00%
发文量
38
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