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Interface characteristics of carbon nanotube reinforced polymer composites using an advanced pull-out model

机译:使用先进拉拔模型的碳纳米管增强聚合物复合材料的界面特性

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摘要

An advanced pull-out model is presented to obtain the interface characteristics of carbon nanotube (CNT) in polymer composite. Since, a part of the CNT/matrix interface near the crack tip is considered to be debonded, there must present adhesive van derWaals (vdW) interactionwhich is generally presented in the form of Lennard-Jones potential. A separate analytical model is also proposed to account normal cohesive stress caused by the vdW interaction along the debonded CNT/polymer interface. Analytical solutions for axial and interfacial shear stress components are derived in closed form. The analytical result shows that contribution of vdW interaction is very significant and also enhances stress transfer potential of CNT in polymer composite. Parametric studies are also conducted to obtain the influence of key composite factors on bonded and debonded interface. The result reveals that the parameter dependency of interfacial stress transfer is significantly higher in the perfectly bonded interface than that of the debonded interface.
机译:提出了一种先进的拉拔模型,得到了碳纳米管(CNT)在聚合物复合材料中的界面特性。由于裂纹尖端附近的 CNT/基质界面的一部分被认为是脱粘的,因此必须存在粘附范德华 (vdW) 相互作用,通常以 Lennard-Jones 势的形式呈现。还提出了一个单独的分析模型来解释沿脱粘的CNT/聚合物界面的vdW相互作用引起的法向内聚应力。轴向和界面剪应力分量的解析解以封闭形式导出。分析结果表明,vdW相互作用的贡献非常显著,并且增强了CNT在聚合物复合材料中的应力传递潜力。此外,还进行了参数研究,以获得关键复合因素对键合和脱粘界面的影响。结果表明:完美粘结界面应力传递的参数依赖性显著高于解粘界面

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