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Vibration of the rotating rectangular orthotropic Mindlin plates with an arbitrary stagger angle

机译:旋转矩形原位思维板的振动,具有任意错开的角度

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摘要

In this article, the vibration analysis of rotating moderately thick cantilever orthotropic plate is analytically investigated. Based on the first order shear deformation plate theory, the partial differential equations of motion are derived using Hamilton's principle. The centrifugal inertia forces and Coriolis effects due to the rotation are all considered. The analytical approaches, both extended Kantorovich method and extended Galerkin method, are employed to obtain the solution of the problem. Results obtained by these two methods are compared with those available in the open literature and good agreements are observed. The effects of various parameters, individually or in combination, on the vibrational behaviors are analyzed in detail. From the studies, it is found that in the rotating plates, when the stiffness ratio increases, the crossing/veering phenomenon occurs in the lower mode orders and/or rotation speeds. The results show that for each stiffness ratio, the effect of hub radius ratio is more significant on the out-of-plane mode frequencies than on the in-plane ones.
机译:在本文中,分析了旋转中等厚悬臂正向旋转板的振动分析。基于第一阶剪切变形板理论,使用汉密尔顿原则来源的局部微分方程。旋转引起的离心惯性力和科里奥利效应都是考虑的。分析方法,包括扩展的Kantorovich方法和扩展的Galerkin方法,用于获得问题的解决方案。通过这两种方法获得的结果与开放文学中可用的结果进行比较,并且观察到良好的协议。详细地分析了各种参数,单独地或组合地对振动行为的影响。从研究来看,发现在旋转板中,当刚度比增加时,穿过/转向现象在较低模式订单和/或旋转速度中发生。结果表明,对于每个刚度比,集线器半径比的效果在平面外模式频率比在面内模式中更为显着。

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