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Finite element simulation of the mechanical behaviour of synthetic braided ropes and validation on a tensile test

机译:合成编织绳力学行为的有限元模拟及拉伸试验验证

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摘要

A finite element approach to the mechanical behaviour of braided ropes at the scale of their internal components is proposed in this paper. The ropes considered are composed of a few tens of textile yarns, twisted into strands, which are then braided together. The approach aims at determining the mechanical equilibrium of such structures, viewed as assemblies of yarns undergoing large displacements and developing contact-friction interactions. To solve this equilibrium within a quasi-static framework, and using an implicit solution scheme, each yarn of the rope is represented by a finite strain beam model, and special emphasis is put on the detection and modelling of contact-friction interactions between yarns. The approach is used first to determine the unknown initial configuration of the rope, starting from an arbitrary configuration and using contact interactions together with information from the selected braid pattern, to determine the braided structure as the solution of a mechanical equilibrium. Comparisons are made with experimental data on this initial geometry. Tensile test experiments were performed to characterize the mechanical response of both the elementary yarns and the braided rope. These tests were simulated with the model, and results are compared with experiment. Sensitivity analyses on design parameters showing the abilities of the model are reported.
机译:提出了一种在内部构件规模上对编织绳的力学行为进行有限元分析的方法。所考虑的绳索由几十根纺织纱线组成,这些纱线被捻成股,然后编织在一起。该方法旨在确定此类结构的机械平衡,将其视为经受大位移并形成接触摩擦相互作用的纱线组件。为了在准静态框架内解决此平衡问题,并使用隐式求解方案,绳索的每根纱线都由有限应变梁模型表示,并且特别着重于纱线之间接触摩擦相互作用的检测和建模。该方法首先用于确定绳索的未知初始配置,该方法从任意配置开始,并使用接触相互作用以及来自所选编织图案的信息,以确定编织结构作为机械平衡的解决方案。与该初始几何形状的实验数据进行了比较。进行拉伸测试实验以表征基本纱线和编织绳的机械响应。使用模型对这些测试进行了仿真,并将结果与​​实验进行了比较。报告了对设计参数的敏感性分析,以显示模型的功能。

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