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Non-linear dynamic response of a rotating radial Timoshenko beam with periodic pulse loading at the free-end

机译:自由端具有周期性脉冲负载的旋转径向Timoshenko梁的非线性动力响应

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摘要

Consideration is given to the dynamic response of a Timoshenko beam under repeated pulse loading. Starting with the basic dynamical equations for a rotating radial cantilever Timoshenko beam clamped at the hub in a centrifugal force field, a system of equations are derived for coupled axial and lateral motions which includes the transverse shear and rotary inertia effects, as well. The hyperbolic wave equation governing the axial motion is coupled with the flexural wave equation governing the lateral motion of the beam through the velocity-dependent skew-symmetric Coriolis force terms. In the analytical formulation, Rayleigh-Ritz method with a set of sinusoidal displacement shape functions is used to determine stiffness, mass and gyroscopic matrices of the system. The tip of the rotating beam is subjected to a periodic pulse load due to local rubbing against the outer case introducing Coulomb friction in the system. Transient response of the beam with the tip deforming due to rub is discussed in terms of the frequency shift and non-linear dynamic response of the rotating beam. Numerical results are presented for this vibro-impact problem of hard rub with varying coefficients of friction and the contact-load time. The effects of beam tip rub forces transmitted through the system are considered to analyze the conditions for dynamic stability of a rotating blade with intermittent rub.
机译:考虑了在重复脉冲负载下蒂莫申科光束的动态响应。从在离心力场中夹紧在轮毂上的旋转径向悬臂Timoshenko梁的基本动力学方程开始,导出了一个方程组,用于耦合轴向和横向运动,还包括横向剪切力和旋转惯性效应。通过依赖于速度的斜对称科里奥利力项,控制轴向运动的双曲波方程与控制梁的横向运动的弯曲波方程耦合。在分析公式中,使用具有一组正弦位移形状函数的Rayleigh-Ritz方法来确定系统的刚度,质量和陀螺仪矩阵。由于对外壳的局部摩擦,旋转梁的尖端承受周期性的脉冲负载,从而在系统中引入库仑摩擦。关于梁由于摩擦而变形的瞬态响应,从频移和旋转梁的非线性动态响应方面进行了讨论。给出了具有可变摩擦系数和接触负载时间的硬摩擦的振动冲击问题的数值结果。考虑通过系统传输的梁尖摩擦力的影响,以分析具有间歇摩擦的旋转叶片的动态稳定性条件。

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