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A finite element/quaternion/asymptotic numerical method for the 3D simulation of flexible cables

机译:柔性电缆3D模拟的有限元/四元数/渐近数值方法

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In this paper, a method for the quasi-static simulation of flexible cables assembly in the context of automotive industry is presented. The cables geometry and behavior encourage to employ a geometrically exact beam model. The 3D kinematics is then based on the position of the centerline and on the orientation of the cross-sections, which is here represented by rotational quaternions. Their algebraic nature leads to a polynomial form of equilibrium equations. The continuous equations obtained are then discretized by the finite element method and easily recast under quadratic form by introducing additional slave variables. The asymptotic numerical method, a powerful solver for systems of quadratic equations, is then employed for the continuation of the branches of solution. The originality of this paper stands in the combination of all these methods which leads to a fast and accurate tool for the assembly process of cables. This is proved by running several classical validation tests and an industry-like example.
机译:本文提出了一种在汽车行业中对柔性电缆组件进行准静态仿真的方法。电缆的几何形状和行为鼓励采用几何精确的梁模型。然后,3D运动学基于中心线的位置和横截面的方向,在此由旋转四元数表示。它们的代数性质导致平衡方程的多项式形式。然后,通过有限元方法将获得的连续方程离散化,并通过引入附加的从属变量轻松地将其转换为二次形式。渐近数值方法是二次方程组的有力求解器,然后被用来继续求解分支。本文的独创性在于所有这些方法的结合,从而为电缆的组装过程提供了一种快速而准确的工具。通过运行几个经典的验证测试和一个类似行业的示例可以证明这一点。

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