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The study of micromechanics models to epoxy resin composites filled by nano-rubber particles

机译:纳米橡胶颗粒填充环氧树脂复合材料的微力学模型研究

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Nanocomposites are provided with outstanding properties different from ordinary material—reinforcing and toughing, which have great potential and prospects. This paper has carried on some mechanics experiments of epoxy resin filled by nano-rubber particles through MTS, and have gained their mechanics properties. In the meanwhile, the basic theory and formulas of micromechanics are presented, and are applied to various rubber-reinforced epoxy resin composites to predict the overall modulus. At last, theoretical predictions are compared with experimental data for isotropic composites, it is found that experimental results are all higher than the Hashin-Shtrikman bounds for two-phase isotropic composite materials, so it is necessary for further take the nanoeffects of nanorubber particles into account.
机译:纳米复合材料具有不同于普通材料的出色性能-增强和增韧,具有巨大的潜力和前景。通过MTS进行了纳米橡胶颗粒填充环氧树脂的力学实验,并获得了力学性能。同时,介绍了微力学的基本原理和公式,并将其应用于各种橡胶增强的环氧树脂复合材料中,以预测其总模量。最后,将理论预测与各向同性复合材料的实验数据进行了比较,发现实验结果均高于两相各向同性复合材料的Hashin-Shtrikman界,因此有必要进一步将纳米橡胶颗粒的纳米效应纳入其中帐户。

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