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Multiscale modelling of graphene platelets-based nanocomposite materials

机译:石墨烯薄片基纳米复合材料的多尺度建模

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This work presents a multiscale framework for the elasto-plastic response of platelets-like inclusions reinforced nanocomposite materials. The solution of the heterogeneous material problem is solved by a kinematic integral equation. An imperfect interface is introduced between the particles and the matrix through a linear spring model LSM, leading to a modified Eshelby's tensor. The interfacial contribution, related to the strain concentration tensor within each material phase and inside the average strain field, is described by a modified Mori-Tanaka scheme. The non-linear response is established in the framework of the J(2) flow rule. An expression of the algorithmic tangent operator for each phase is obtained and used as an uniform modulus for homogenisation purpose. Numerical results are conducted on graphene platelets GPL-reinforced polymer PA6 composite for several design parameters such as GPL volume fraction, aspect ratio and the interfacial compliance. These results clearly highlight the impact of the aspect ratio as well as the volume fraction by a softening-in the overall response when imperfection is considered at the interface. Finally, a multiscale simulation is performed on a three bending specimen showing the capability of the developed constitutive equations to be implemented in a finite element FE code. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作为血小板状夹杂物增强的纳米复合材料的弹塑性响应提供了一个多尺度框架。运动学积分方程可以解决非均质材料问题。通过线性弹簧模型LSM,在粒子和基质之间引入了不完善的界面,从而导致了修改后的Eshelby张量。界面贡献与每个材料相内和平均应变场内的应变浓度张量有关,通过改进的Mori-Tanaka方案进行描述。在J(2)流规则的框架中建立非线性响应。获得每个相的算法切线算子的表达式,并将其用作用于均质化的均匀模量。对石墨烯血小板GPL增强的聚合物PA6复合材料进行了一些设计参数(例如GPL体积分数,纵横比和界面柔度)的数值结果。这些结果清楚地表明,当在界面处考虑缺陷时,整体响应的软化会影响长宽比以及体积分数的影响。最后,在三个弯曲试样上进行了多尺度模拟,显示了所开发的本构方程可以在有限元有限元代码中实现的能力。 (C)2017 Elsevier Ltd.保留所有权利。

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