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Multiscale Analysis of Delamination of Carbon Fiber-Epoxy Laminates with Carbon Nanotubes

机译:碳纳米管对碳纤维-环氧层压板分层的多尺度分析

摘要

A multi-scale analysis is presented to parametrically describe the Mode I delamination of a carbon fiber/epoxy laminate. In the midplane of the laminate, carbon nanotubes are included for the purposes of selectively enhancing the fracture toughness of the laminate. To analyze carbon fiber epoxy carbon nanotube laminate, the multi-scale methodology presented here links a series of parameterizations taken at various length scales ranging from the atomistic through the micromechanical to the structural level. At the atomistic scale molecular dynamics simulations are performed in conjunction with an equivalent continuum approach to develop constitutive properties for representative volume elements of the molecular structure of components of the laminate. The molecular-level constitutive results are then used in the Mori-Tanaka micromechanics to develop bulk properties for the epoxy-carbon nanotube matrix system. In order to demonstrate a possible application of this multi-scale methodology, a double cantilever beam specimen is modeled. An existing analysis is employed which uses discrete springs to model the fiber bridging affect during delamination propagation. In the absence of empirical data or a damage mechanics model describing the effect of CNTs on fracture toughness, several tractions laws are postulated, linking CNT volume fraction to fiber bridging in a DCB specimen. Results from this demonstration are presented in terms of DCB specimen load-displacement responses.
机译:提出了一种多尺度分析,以参数方式描述碳纤维/环氧树脂层压板的I型分层。在层压板的中平面中,为了选择性地提高层压板的断裂韧性,包括碳纳米管。为了分析碳纤维环氧碳纳米管层压板,这里介绍的多尺度方法将一系列参数化以各种长度尺度进行,这些尺度范围从原子性到微机械性到结构性。在原子尺度上,分子动力学模拟是与等效的连续体方法结合起来进行的,以开发本层压材料组件分子结构的代表体积元素的本构特性。然后将分子水平的本构结果用于Mori-Tanaka微力学中,以开发环氧-碳纳米管基质系统的整体性能。为了证明这种多尺度方法的可能应用,对双悬臂梁样本进行了建模。使用现有分析,该分析使用离散弹簧来模拟分层传播过程中的光纤桥接效应。在没有经验数据或描述CNT对断裂韧性影响的破坏力学模型的情况下,假定了几种牵引定律,将CNT的体积分数与DCB样品中的纤维桥接联系在一起。该演示的结果以DCB试样的载荷-位移响应表示。

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