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Development and characterization of hi gh performance nano-hybrid GFRE composites for structural applications

机译:高性能纳米结构GFRE复合材料的开发与表征

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The objective of this work is to enhance the mechanical properties of unidirectional [0]_8 and quasi-isotropic [0/±45/90]_s glass-fiber-reinforced composites by ultrasonically dispersing alumina-nanoparticles in epoxy matrix. The well dispersed alumina-nanoparticles in epoxy resin significantly improved the mechanical properties of alumina-nanocomposites. Results from fracture characterizations of the nano-hybridized unidirectional laminates with different off-axis angles showed high improvements in the interfacial bond strength between nanophased epoxy and glass fiber. Therefore, the flexural strength, modulus, and fracture toughness of quasi-isotropic laminate are significantly improved. Results from free vibration tests showed that the beam free length has high effects on the natural frequencies and the both have insignificant effect on the storage moduli of the composite laminates. For the investigated materials, the storage moduli correlated well (R~2 = 0.99962) with the flexural moduli. The damping ratios of the nano-hybridized quasi-isotropic and unidirectional laminates are improved by 62% and 60%, respectively. These improvements, which were achieved through conventional processing, are essentially for developing the structural components of automotive and aerospace industry.
机译:这项工作的目的是通过将氧化铝-纳米粒子超声分散在环氧树脂基体中来增强单向[0] _8和准各向同性[0 /±45/90] _s玻璃纤维增​​强复合材料的机械性能。环氧树脂中分散良好的氧化铝-纳米颗粒显着改善了氧化铝-纳米复合材料的机械性能。来自具有不同偏轴角的纳米杂化单向层压材料的断裂特征的结果表明,纳米相环氧树脂和玻璃纤维之间的界面粘合强度有了很大的提高。因此,准各向同性层压板的弯曲强度,模量和断裂韧性得到显着改善。自由振动试验的结果表明,自由束长度对固有频率有很大影响,而两者对复合材料层合板的储能模量影响不大。对于所研究的材料,储能模量与弯曲模量相关性很好(R〜2 = 0.99962)。纳米杂化准各向同性和单向层合板的阻尼比分别提高了62%和60%。这些改进是通过常规工艺实现的,主要用于开发汽车和航空航天工业的结构部件。

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