Numerical calculation of guided wave disperse curve in helix wire based on semi-analytical finite element method

Zhou Fangjun, Wang Yuemin, Shen Chuanjun, Sun Fengrui
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Abstract

Disperse curve computation of guided wave in helix wire is complex but important for analysis of elastic wave propagation in steel strand and wire rope. Detailed analysis of physical model can hardly get analytic solution, while some usual simplification of model will lead to the loss of physical meaning. First a helical coordinate system is proposed in this paper. A semi-analytical finite element method is applied to elastodynamics equation for the calculation of wavenumbers. The displacement, strain and stress vectors are obtained by tensor analysis. And the relationship among them is deduced. The result shows the disperse behavior of guided wave in helix wire, which is depended on lay angle. That is different from straight wire, which is owed to its particular helix geometry structure.
基于半解析有限元法的螺旋导线导波弥散曲线数值计算
螺旋线导波的离散曲线计算是复杂的,但对分析弹性波在钢绞线和钢丝绳中的传播具有重要意义。对物理模型进行详细的分析很难得到解析解,而通常对模型进行的一些简化会导致物理意义的丧失。本文首先提出了一种螺旋坐标系。将半解析有限元法应用于弹性动力学方程的波数计算。通过张量分析得到位移、应变和应力矢量。并推导了它们之间的关系。结果表明,导波在螺旋导线中的分散特性与铺设角有关。这与直线不同,直线是由于其特殊的螺旋几何结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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