首页> 外文期刊>Journal of Vibration and Acoustics >Suppression of Parametric Resonance in Cantilever Beam With a Pendulum (Effect of Static Friction at the Supporting Point of the Pendulum)
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Suppression of Parametric Resonance in Cantilever Beam With a Pendulum (Effect of Static Friction at the Supporting Point of the Pendulum)

机译:摆杆的悬臂梁参数共振的抑制(摆杆支点处的静摩擦力的影响)

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摘要

The dynamic response of a parametrically excited cantilever beam with a pendulum is theoretically and experimentally presented. The equation of motion and the associated boundary conditions are derived considering the static friction of the rotating motion at the supporting point (pivot) of the pendulum. It is theoretically shown that the static friction at the, pivot of the pendulum plays a dominant role in the suppression of parametric resonance. The boundary conditions are different between two states in which the motion of the pendulum is either trapped by the static friction or it is not. Because of this variation of the boundary conditions depending on the pendulum motion, the natural frequencies of the system are automatically and passively changed and the bifurcation set for the parametric resonance is also shifted, so that parametric resonance does not occur. Experimental results also verify the effect of the pendulum on the suppression of parametric resonance in the cantilever beam.
机译:理论上和实验上都给出了带有摆的参量激发悬臂梁的动力响应。考虑到摆锤的支撑点(枢轴)处旋转运动的静摩擦,可以得出运动方程式和相关的边界条件。从理论上可以看出,摆的枢轴处的静摩擦在抑制参数共振中起主要作用。边界条件在两种状态下是不同的,在这种状态下,摆的运动要么被静摩擦捕获要么不被静摩擦捕获。由于边界条件随摆运动的变化而变化,系统的固有频率会自动和被动地改变,并且用于参量谐振的分叉设置也会移动,从而不会发生参量谐振。实验结果还验证了摆对抑制悬臂梁参数共振的影响。

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