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A multiscale model to study the enhancement in the compressive strength of multi-walled CNT sheet overwrapped carbon fiber composites

机译:多尺度模型,用于研究多壁CNT片材超包碳纤维复合材料抗压强度的增强

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The high tensile strength of polymer matrix composites is derived primarily from the high strength of the carbon fibers embedded in the polymer matrix. However, their compressive strength is generally much lower due to the fact that under compression, the fibers tend to fail through micro-buckling well before compressive fracture occurs. In this work, we consider multi-walled carbon nanotube (MWNT) sheets wrapped around carbon fiber at room temperature to improve fiber/matrix interfacial properties which, in turn, influences compressive strength of the composite. To investigate the effect of the wrapping of MWNT sheet on composite strength, Molecular Dynamics simulations were performed on an atomistic model of the interface region between the epoxy, carbon fiber and the scrolled MWNT sheets. The compressive strength of the unidirectional composite was computed using a novel hierarchical multi-scale model comprising of the rule of mixtures at the microscale, and the modified Argon's formula for composites at the macroscale. Model predictions were benchmarked through comparison with experimental data for different volume fractions of MWNT sheet.
机译:聚合物基质复合材料的高抗拉强度主要来自嵌入聚合物基质中的碳纤维的高强度。然而,由于在压缩下,它们的抗压强度通常是低得多,因为在压缩下,纤维在发生压缩骨折之前通过微屈曲良好地失效。在这项工作中,我们考虑在室温下缠绕在碳纤维周围的多壁碳纳米管(MWNT)片材,以改善纤维/基质界面性能,反过来影响复合材料的抗压强度。为了研究MWNT片材包装对复合强度的影响,对环氧树脂,碳纤维和滚动的MWNT片之间的界面区域的原子模型进行分子动力学模拟。使用一种新的分层多尺度模型来计算单向复合材料的压缩强度,所述分层多尺度模型包括微尺寸在Microscale处的混合物规则,以及Macroscale的复合材料的改进的氩气公式。通过与MWNT片材的不同体积分数的实验数据进行比较,模型预测是基准测试。

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