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Experimental Investigation On The Mechanical Properties Of Flax, E-Glass And Carbon Fabric Reinforced Hybrid Epoxy Resin Composites

机译:亚麻,E-玻璃和碳织物增强杂交环氧树脂复合材料力学性能的实验研究

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An advanced hybrid composite with epoxy as resin and reinforcing E-Glass, carbon and flax as twill layered fabric composites and also study experimentally the effect of the stacking sequence on tensile, flexural and impact properties. Hybrid composite materials are generally used in aerospace industries, defence, automobile spare parts, and bicycle frames, engineering application increasing demand for special material lead to new invertion natural and synthetic fiber reinforced composite are replacing convemotional materials as natural fiber are cheap and biodegradable they have high specific properties and low density in the work hybrid composites are fabricated with flax, corbon and E-Glass fabric twill as reinforced materials with epoxy resin as matrix. All the laminates were made with a total of three different fabric, by varying the number and position of E-glass layers so as to obtain five different stacking sequences. Composites were manufactured using vacuum bagging method. Hybrid Composite samples manufacturing and testing were carried out as per ASTM standards. The results showed that the natural, synthetic fibric and epoxy resin hybrid composite give optimistic results when compared with the neat resin.
机译:具有环氧树脂的先进的杂合复合材料,作为树脂,加强E-玻璃,碳和亚麻,作为斜纹层状织物复合材料,并在实验上研究堆叠序列对拉伸,弯曲和冲击性能的影响。混合复合材料通常用于航空航天行业,防御,汽车零配件和自行车框架,工程应用越来越多的特殊材料需求导致新的倒置天然和合成纤维增强复合材料正在更换临床材料,因为天然纤维是便宜的,可生物降解它们具有便宜和可生物降解的竞争材料工作混合复合材料中的高特殊性能和低密度用亚麻,金属氧化物和电子玻璃织物斜纹斜面制成,用环氧树脂作为基质的增强材料。通过改变电子玻璃层的数量和位置,通过共三种不同的织物制成所有层压板,以获得五种不同的堆叠序列。复合材料是使用真空袋制备方法制造的。杂化复合样品制造和测试根据ASTM标准进行。结果表明,与纯树脂相比,天然,合成纤维和环氧树脂杂化复合材料具有乐观的效果。

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