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A multi-director continuum beam finite element for efficient analysis of multi-layer strand cables

机译:一种多主导连续梁有限元,用于高效分析多层钢绞线

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This study presents a multi-director continuum beam finite element developed for efficient analysis of multi-layer strand cables. The beam element is derived from the continuum mechanics based beam for-mulation incorporating multi-directors and cross-sectional elements to describe the helical geometries of wires that constitute the strand cables. The main advantage of the present continuum beam formulation is that complex geometries of strand cable and inter-wire motions can be addressed in the framework of the beam kinematics regardless of the numbers of layers and subordinate helical wires. This approach enables simple modeling together with efficient analysis, and allows both geometric and material non-linearities to be considered. In addition to its excellent accuracy, the proposed beam element model requires a significantly reduced number of degrees of freedom compared to conventional three-dimensional solid finite element models for cable analysis. Through several numerical examples, the pre-dictive ability of the proposed beam model is demonstrated. (c) 2021 Elsevier Ltd. All rights reserved.
机译:本研究介绍了一种多主导连续梁有限元,用于高效分析多层钢绞线。梁元件源自基于连续的基于梁的梁,其包括多导体和横截面元件,以描述构成股线电缆的线的螺旋形状。本发明的连续梁配方的主要优点是,无论层和从属螺旋线的数量如何,都可以在光束运动学的框架中寻址股线电缆和线间运动的复杂几何图。这种方法可以实现简单的建模与有效的分析,并允许考虑几何和材料非线性。除了其优异的精度之外,与传统的三维固体有限元模型相比,所提出的光束元件模型需要显着减少的自由度,用于电缆分析。通过若干数值示例,证明了所提出的梁模型的预测性能力。 (c)2021 elestvier有限公司保留所有权利。

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