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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >A finite deformation continuum modelling framework for curvature effects in fibre-reinforced nanocomposites
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A finite deformation continuum modelling framework for curvature effects in fibre-reinforced nanocomposites

机译:纤维增强纳米复合材料曲率效应的有限变形连续体建模框架

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摘要

Motivated by experimental findings on one-dimensional nano-materials, this contribution focusses on the elaboration of a fibre curvature based higher-order gradient contribution to the stored energy function in a finite deformation setting. The presented approach is based on the fundamental theoretical developments for fibre-reinforced composites presented by Spencer and Soldatos (2007), which take into account the fibre-bending stiffness in addition to the directional dependency induced by the fibres. A mixed-type finite element formulation is then used for the solution of the resulting system of coupled partial differential equations. A specific form of the stored energy function is introduced such that well-interpretable contributions to the stress- and the couple stress tensor are obtained. It is shown that this framework may, in principle, account for fibres of different diameters and induces a natural length scale into the model. Such continuum theory covering size-effects is of special interest since experiments for different materials suggest significant size-effects at small length scales.
机译:受一维纳米材料实验发现的推动,这一贡献集中于阐述基于纤维曲率的高阶梯度对有限变形设置中的储能函数的贡献。所提出的方法是基于Spencer和Soldatos(2007)提出的纤维增强复合材料的基本理论发展,除了纤维诱导的方向依赖性外,还考虑了纤维的弯曲刚度。然后,将混合类型的有限元公式用于求解耦合的偏微分方程组的系统。引入存储能量函数的一种特定形式,以便获得对应力张量和耦合应力张量的可解释的贡献。结果表明,该框架原则上可以考虑不同直径的纤维,并在模型中引入自然长度尺度。由于涉及不同材料的实验表明,在较小的长度范围内存在明显的尺寸效应,因此涉及尺寸效应的这种连续体理论特别受关注。

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