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Peridynamic 3D models of nanofiber networks and carbon nanotube-reinforced composites

机译:纳米纤维网络和碳纳米管增强复合材料的王动脉3D模型

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Here we employ a reformulation of the continuum mechanics theory,the peridynamic formulation (PF)in an integral form that,at the discretized level,resembles molecular dynamics (MD).The peridynamic theory is based on a continuum formulation and can capture nucleation and propagation of defects and discontinuities without ad-hoc assumptions or special treatments needed by classical continuum theory.We analyze nanofiber networks and CNT-reinforced polymer composites.We treat all crossovers contacts between fibers as perfect bonds.The use of repulsive short-range forces eliminates the need for complex contact detection algorithms.We generate the fibers as 3D curves with random orientation,with or without preferred directionality.We use an object-oriented code written in Fortran 90/95 to define the geometrical entities.The PF can capture the deformation and complex fracture behavior in fully 3D dynamic simulations,van der Waals forces are included in these calculations.The strength of the bonds between the polymer chains and the CNTs,as well as among the chains,is controllable.
机译:在这里,我们采用了连续形式的连续式制定(PF)的重构,即在离散水平,在离散水平上类似于分子动力学(MD)。逐句理论是基于连续的制剂,可以捕获成核和繁殖没有透视连续性理论所需的缺陷和不连续性的缺陷和不连续性。我们分析纳米纤维网络和CNT加强的聚合物复合材料。我们将纤维之间的所有交叉触点视为完美的粘合。排斥的短距离的使用消除了需要复杂的接触检测算法。我们生成纤维作为具有随机方向的3D曲线,有或没有优选的方向性。我们使用在Fortran 90/95中编写的面向对象的代码来定义几何实体.PF可以捕获变形和捕获变形和复杂的骨折行为在完全3D动态模拟中,van der Waals力量包括在这些计算中。B的强度聚合物链和CNT之间以及链中的CNT之间以及可控制的ond。

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