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Homogenization of helical beam-like structures: application to single-walled carbon nanotubes

机译:螺旋形束状结构的均质化:应用于单壁碳纳米管

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摘要

This work is devoted to the computation of axial stiffness of helical beam-like structures. Starting from the homogenization theory of periodic slender domains and taking benefit of the property of helical symmetry, the overall elastic behavior can be obtained from the solution of three-dimensional problems posed on a reduced basic cell. The mechanical analysis of this reduced basic cell performed using a concise FE model allows therefore to compute easily the anisotropic beam homogenized stiffness coefficients. The accuracy and usefulness of this approach is demonstrated by comparisons with reference solutions and large FE model results for two numerical volume structure examples: a wire spring and a stranded “6 + 1” rope. The homogenization procedure is then applied to single-walled carbon nanotubes and it is shown from the two helical symmetries that their basic cell can be reduced to three beam elements.
机译:这项工作致力于计算螺旋形梁状结构的轴向刚度。从周期性细长域的均质化理论出发,并利用螺旋对称性的特性,可以从对还原的基本单元上的三维问题的求解中获得整体弹性行为。因此,使用简洁的有限元模型对该简化的基本单元进行机械分析,因此可以轻松计算出各向异性梁的均化刚度系数。通过与参考解决方案进行比较以及两个有限体积数值示例的大型有限元模型结果进行了比较,证明了该方法的准确性和实用性:钢丝弹簧和绞合的“ 6 +1”绳索。然后将均质化程序应用于单壁碳纳米管,从两个螺旋对称性可以看出,它们的基本单元可以简化为三个束单元。

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