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Design of a planar multibody dynamic system with ANCF beam elements based on an element-wise stiffness evaluation procedure

机译:基于元素刚度评估程序的ANCF光束元件的平面多体动态系统设计

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摘要

The absolute nodal coordinate formulation (ANCF) has been widely applied for large deformation analysis in flexible multibody dynamics. Although the formulation led to stable solutions for time integration under large rotations and deformations, excessive time consumption was recorded. The nonlinear relationship between the deformation and the internal force accounted for repeated adjustment to the force equilibrium state as the structure deformed. In this research, an equivalent model of the ANCF beam structure was constructed. The stiffness evaluation method was applied in an clement-wise manner. In this model, the irrelevant parts were separated from those that relate to the displacements and design parameters enabling efficient updates of internal forces to achieve force equilibrium. Therefore, by using this model, optimization problems, in which displacements as well as design parameters keep changing can be efficiently approached. To verify the proposed method, two examples of optimization problems related to a fire-falling pendulum and a slider-crank mechanism are demonstrated.
机译:绝对节点坐标配方(ANCF)已广泛应用于柔性多体动力学中的大变形分析。虽然配方导致在大型旋转和变形下的时间集成稳定的解决方案,但记录过量消耗。变形与内部力之间的非线性关系占用于结构变形的力平衡状态的重复调整。在该研究中,构建了ANCF光束结构的等效模型。刚度评估方法以克莱门特方式应用。在该模型中,不相关的部件与涉及的位移和设计参数有关的那些,从而有效地更新内部力以实现力平衡。因此,通过使用该模型,优化问题,其中可以有效地接近位移以及设计参数继续变化。为了验证所提出的方法,证明了与灭火摆锤和滑块曲柄机构相关的优化问题的两个示例。

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