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Comparative Studies of Tensile Strength on Polyester Resin Matrix Composites with Planar and Random Orientation Fibers

机译:平面和随机取向纤维对聚酯树脂基复合材料拉伸强度的比较研究

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摘要

Composites have become the chosen material for new engineering materials specially in the areas of aerospace applications, military weapon and automotive components, due to its unique mechanical properties, like: high strength weigh ratio, extreme thermal shock resistance, low coefficient of thermal expansion, oxidation and wear resistance Polyester resin matrix composites reinforced with coconut fibers are being utilized as replacement synthetic fiber in fiberglass products. The high price of synthetic fiber, which is use as fiber reinforcement on fiberglass products, makes its products price become expensive. One alternative to reduce its prices is by replace fiber synthetic with other fiber, which have similar mechanical properties but cheaper and still not abandon regional potency. Coconut fiber are regional potency that still not used optimally, moreover they often considered as waste that doesn't have economic values. These research use experimental methods with control variables are percentage of coconut fiber and polyester resin by Planar and Random orientation fiber. Specimen testing makes by hand lay up fabrication. The research result shows that the optimum composition is on 40% fiber: 60% polyester resin, with value of tensile strength is 20.75 N/mm~2 and value of strain is 0,7% by planar orientation fibers, while optimum composition on random orientation is on 30% fiber: 70% polyester resin, with value of tensile strength is 30.73 N/mm~2 and value of strain is 1.4%.
机译:复合材料具有独特的机械性能,例如:高强度重量比,极高的抗热震性,低热膨胀系数,抗氧化性,已成为航空航天,军事武器和汽车零部件领域新工程材料的首选材料耐磨性椰子纤维增强的聚酯树脂基复合材料被用作玻璃纤维产品的替代合成纤维。合成纤维的高价格被用作玻璃纤维制品的纤维增强材料,使其产品价格变得昂贵。降低其价格的一种替代方法是用其他纤维替代合成纤维,这些纤维具有相似的机械性能,但价格更便宜,但仍不放弃区域效能。椰子纤维是尚未得到最佳利用的区域效能,此外,它们通常被视为没有经济价值的废物。这些研究使用控制变量为平面和随机取向纤维的椰子纤维和聚酯树脂的百分比作为控制变量的实验方法。样品测试是手工叠层制作的。研究结果表明,最佳取向成分为40%纤维:60%聚酯树脂,抗拉强度值为20.75 N / mm〜2,平面取向纤维的应变值为0.7%,而随机取向的最佳成分在30%的纤维上定向:70%的聚酯树脂,抗张强度值为30.73 N / mm〜2,应变值为1.4%。

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