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Dynamics of a large scale rigid-flexible multibody system composed of composite laminated plates

机译:复合材料层合板的大型刚柔多体系统动力学

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摘要

A novel computational approach for the dynamic analysis of a large scale rigid-flexible multibody system composed of composite laminated plates is proposed. The rigid parts in the system are described through the Natural Coordinate Formulation (NCF) and the flexible bodies in the system are modeled via the finite elements of Absolute Nodal Coordinate Formulation (ANCF), which can lead to a constant mass matrix for the derived system equation of motion. For modeling composite laminated plates accurately, a new composite laminated plate element of ANCF is proposed and the corresponding efficient formulations for evaluating both the elastic force and its Jacobian of the element are derived from the first Piola-Kirchhoff stress tensor. To improve computational efficiency, the sparse matrix technology and graph theory are used to solve the huge set of linear algebraic equations in the process of integrating the equations of motion by using the generalized-a method, and an OpenMP based parallel scheme is also introduced. Finally, the effectiveness of the proposed approach is validated through two numerical examples. One is the static simulation of a single composite laminated plate under gravity and the other is the dynamic simulations of unfolding process of a satellite system with a pair of complicated antennas.
机译:提出了一种新型的由复合叠层板组成的大型刚柔多体系统动力学分析的计算方法。通过自然坐标公式(NCF)描述系统中的刚性零件,并通过绝对节点坐标公式(ANCF)的有限元对系统中的柔性体进行建模,这可以得出派生系统的质量矩阵恒定运动方程。为了精确地对复合叠层板进行建模,提出了一种新型的ANCF复合叠层板单元,并从第一个Piola-Kirchhoff应力张量推导了相应的有效公式来评估该单元的弹力及其雅可比关系。为了提高计算效率,在利用运动广义方程积分运动方程的过程中,采用稀疏矩阵技术和图论来求解庞大的线性代数方程组,并引入了基于OpenMP的并行方案。最后,通过两个数值例子验证了所提方法的有效性。一个是单个复合层压板在重力作用下的静态模拟,另一个是带有一对复杂天线的卫星系统展开过程的动态模拟。

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