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Finite element formulation for modeling sliding cable elements

机译:用于建模滑动电缆元件的有限元公式

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摘要

"Sliding cable elements" are developed to solve the general problem of constraining a string of cable elements to continuously pass through a prescribed moving node. These elements can be used for a wide variety of applications and in the current work are used to model various features in parachute systems. The principle of virtual work and total Lagrange formulation are used to derive the element internal force vector, tangent stiffness matrix, and time-dependent mass matrix and body forces. The element equations are implemented in a geometrically nonlinear, transient implicit finite element program. A searching algorithm is developed to track the relative movement of the elements, which is performed each iteration prior to formulation of the element equations. Two problems with analytical solutions are performed to validate the mechanical behavior of the new element and the searching algorithm. Several examples are presented where the sliding cable elements are used in parachute systems.
机译:开发“滑动电缆元件”以解决约束一束电缆元件以连续穿过指定的移动节点的一般问题。这些元素可用于多种应用,并且在当前工作中用于对降落伞系统中的各种特征进行建模。使用虚拟功和总拉格朗日公式的原理来导出单元内力矢量,切线刚度矩阵以及随时间变化的质量矩阵和体力。元素方程是在几何非线性瞬态隐式有限元程序中实现的。开发了一种搜索算法来跟踪元素的相对运动,该算法在公式化元素方程式之前的每次迭代中执行。使用解析解决方案执行两个问题,以验证新元素和搜索算法的机械性能。提出了几个示例,其中在降落伞系统中使用了滑动电缆元件。

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