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Dynamics of a rotating beam with flexible root and flexible hub

机译:具有柔性根部和柔性轮毂的旋转梁的动力学

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摘要

A mathematical model for the nonlinear dynamics of a rotating beam with flexible root attached to a rotating hub with elastic foundation is developed. The model is developed based on the large planar and flexural deformation theory and the potential energy method to account for axial shortening due to bending deformation. In addition the exact nonlinear curvature is used in the system potential energy. The Lagrangian dynamics and the assumed mode method is used to derive the nonlinear coupled equations of motion hub rotation, beam tip deflection and hub horizontal and vertical displacements. The derived nonlinear model is simulated numerically and the results are presented and discussed for the effect of root flexibility, hub stiffness, torque type, torque period and excitation frequency and amplitude on the dynamic behavior of the rotating beam-hub and on its stability.
机译:建立了具有柔性根的旋转梁附接到具有弹性基础的旋转轮毂的非线性动力学的数学模型。该模型基于大型平面和弯曲变形理论以及势能方法开发,以解决由于弯曲变形而引起的轴向缩短的问题。此外,系统势能中使用了精确的非线性曲率。拉格朗日动力学和假定模式方法用于导出运动轮毂旋转,梁尖端偏转以及轮毂水平和垂直位移的非线性耦合方程。对导出的非线性模型进行数值模拟,并对根部挠性,轮毂刚度,转矩类型,转矩周期以及激励频率和振幅对旋转梁-轮毂的动力特性及其稳定性的影响进行了介绍和讨论。

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