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COARSE-GRAINED MODELING AND SIMULATION OF NANOSCALE SYSTEMS BASED ON DISCRETE HYPER-ELASTIC MODEL

机译:基于离散超弹性模型的纳米尺度系统的粗粒度建模与仿真

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The subject of developing equivalent continuum models from the atomistic models has attracted significant attention in recent years. An outstanding issue in extending the continuum model to smaller scales is the size effect. Such a size effect is intimately related to the discrete nature of the atomic structure and nonlocal interaction among the atoms. In many of the existing continuum approaches, discrete variables are introduced in the constitutive model to account for these non-continuum effects. In this paper, we present a discrete hyper-elasticity model as an alternative. Our approach, however, is fundamentally different from the conventional approach in that it treats the concept of deformation mapping in the discrete sense. The resulting deformation measure is referred to as spatial secant and the corresponding material model is called the spatial secant model. We then formulate the potential energy density functional and derive stress-like measure based on the spatial secant. After a brief description on the formulation and its comparison with the classical hyper-elastic model, we show the application of this model to both low-dimensional carbon nanostructures and general three-dimensional nanostructures. The concept of geometric-exact mapping is discussed through the examples. Comparisons with full-scale molecular mechanics simulations are made to illustrate the robustness of this approach.
机译:从原子模型开发等效连续体模型的主题近年来引起了极大的关注。将连续体模型扩展到较小比例时,一个突出的问题是尺寸效应。这种尺寸效应与原子结构的离散性质以及原子之间的非局部相互作用密切相关。在许多现有的连续谱方法中,本构模型中引入了离散变量以说明这些非连续谱的影响。在本文中,我们提出了一种离散的超弹性模型作为替代方案。但是,我们的方法与常规方法从根本上不同之处在于,它在离散意义上处理了变形映射的概念。所得的变形量度称为空间割线,相应的材料模型称为空间割线模型。然后,我们公式化势能密度函数,并基于空间割线得出类似应力的测度。在简要介绍了配方并将其与经典超弹性模型进行比较之后,我们展示了该模型在低维碳纳米结构和一般三维纳米结构中的应用。通过示例讨论了几何精确映射的概念。进行了与完整分子力学模拟的比较,以说明此方法的鲁棒性。

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