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首页> 外文期刊>The Journal of the Acoustical Society of America >Modeling, vibration, and stability of elastically tailored composite thin-walled beams carrying a spinning tip rotor
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Modeling, vibration, and stability of elastically tailored composite thin-walled beams carrying a spinning tip rotor

机译:带有旋转尖端转子的弹性定制复合薄壁梁的建模,振动和稳定性

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摘要

The problems of the mathematical modeling, eigenvibration, and stability of cantilevered thin-walled beams carrying a spinning rotor at its tip are investigated. The structure modeled as a thin-walled beam encompasses nonclassical features such as anisotropy, transverse shear, and secondary warping, and in this context, a special ply-angle configuration inducing a structural coupling between flapping-lagging-transverse shear is implemented. The implications of combined gyroscopic effects and conservative force upon the free vibration and stability of this structural system are revealed and a number of pertinent conclusions are outlined. Among others, it is shown that the judicious implementation of the tailoring technique can yield dramatic enhancements of both the vibrational and stability behavior of the system.
机译:研究了在其尖端装有旋转转子的悬臂薄壁梁的数学建模,本征振动和稳定性问题。建模为薄壁梁的结构包含非经典特征,例如各向异性,横向剪切和二次翘曲,在这种情况下,实现了一种特殊的帘布层角度配置,可引起拍动-滞后-横向剪切之间的结构耦合。揭示了组合陀螺效应和保守力对该结构系统的自由振动和稳定性的影响,并概述了许多相关结论。除其他外,表明了裁缝技术的明智实施可以显着增强系统的振动和稳定性。

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