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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Stability and vibration of a rotating circular plate subjected to stationary in-plane edge loads
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Stability and vibration of a rotating circular plate subjected to stationary in-plane edge loads

机译:承受固定平面内边缘载荷的旋转圆盘的稳定性和振动

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摘要

This paper predicts transverse vibration and stability of a rotating circular plate subjected to stationary, in-plane, concentrated edge loads. First of all, the equation of motion is discretized in a plate-based coordinate system resulting in aset of coupled Hill's equations. Through use of the method of multiple scales, stability of the rotating plate is predicted in closed form in terms of the rotational speed and the in-plane edge loads. The asymmetric membrane stresses resulting from thestationary in-plane edge loads will transversely excite the rotating plates to single-mode parametric resonances as well as combination resonances at supercritical speed. In addition, introduction of plate damping will suppress the parametric instabilitywhen normalized edge loads are small. Moreove, the radial in-plane edge load dominates the rotational speed at which the instability occurs, and the tangential in-plane edge load dominates the width of the instability zones.
机译:本文预测了旋转圆板在静态,平面内集中边缘载荷下的横向振动和稳定性。首先,运动方程在基于板的坐标系中离散化,从而产生一组耦合的Hill方程。通过使用多尺度方法,可以根据转速和平面内边缘载荷以封闭形式预测旋转板的稳定性。由固定的平面内边缘载荷引起的不对称膜应力将横向激励旋转板产生单模参数共振以及超临界速度下的组合共振。另外,当归一化边缘载荷较小时,引入板阻尼将抑制参数不稳定性。此外,径向平面边缘载荷主导了发生不稳定性的旋转速度,而切线平面边缘载荷主导了不稳定性区域的宽度。

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