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首页> 外文期刊>Journal of Vibration and Acoustics >A New Methodology for Modeling and Free Vibrations Analysis of Rotating Shaft Based on the Timoshenko Beam Theory
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A New Methodology for Modeling and Free Vibrations Analysis of Rotating Shaft Based on the Timoshenko Beam Theory

机译:基于Timoshenko梁理论的旋转轴建模与自由振动分析的新方法。

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摘要

The linear lateral free vibration analysis of the rotor is performed based on a new insight on the Timoshenko beam theory. Rotary inertia, gyroscopic effects, and shear deformations are included, but the torsion is neglected and a new dynamic model is presented. It is shown that if the total rotation angle of the beam cross section is considered as one of the degrees-of-freedom of the Timoshenko rotor, as is common in the literature, some terms are missing in the modeling of the global dynamics of the system. The total deflection of the beam cross section is divided into two steps, first the Euler angles relations are employed to establish the curved geometry of the beam due to the elastic deformation of the beam centerline and then the shear deformations was superposed on it. As a result of this methodology and the mutual interaction of shear and Euler angles some variable coefficient terms appeared in the kinetic energy of the system which makes the problem be classified as the parametrically excited systems. A linear coupled variable coefficient system of differential equations is derived while the variable coefficient terms have been missing in all previous studies in the literature. The free vibration behavior of parametrically excited system is investigated by perturbation method and compared with the common Rayleigh, Timoshenko, and higher-order shear deformable spinning beam models in the rotordynamics. The effects of rotating speed and slenderness ratio are studied on the forward and backward natural frequencies and the critical speeds of the system are examined. The study demonstrates that the shear and Euler angles interaction affects the high-frequency free vibrations behavior of the spinning beam especially for higher slenderness ratio and rotating speeds of the rotor.
机译:转子的线性横向自由振动分析是基于对Timoshenko梁理论的新见解而进行的。包括旋转惯性,陀螺效应和剪切变形,但忽略了扭转,提出了一个新的动力学模型。如图所示,如果将束横截面的总旋转角度视为蒂莫申科转子的自由度之一,那么通常在建模时就缺少一些术语。系统。梁截面的总挠度分为两步,首先利用欧拉角关系建立由于梁中心线的弹性变形而产生的弯曲几何形状,然后将剪切变形叠加在梁上。这种方法的结果以及剪切角和欧拉角之间的相互作用,使系统的动能中出现了一些可变系数项,从而使该问题被归类为参数激励系统。推导了线性耦合的变系数微分方程系统,而文献中所有先前的研究都缺少可变系数项。通过摄动方法研究了参数激励系统的自由振动行为,并将其与常见的瑞利,蒂莫申科和高阶剪切可变形旋转梁模型的转子动力学进行了比较。研究了转速和细长比对正向和反向固有频率的影响,并研究了系统的临界速度。研究表明,剪切角和欧拉角相互作用会影响旋转梁的高频自由振动行为,尤其是对于更高的细长比和转子转速而言。

著录项

  • 来源
    《Journal of Vibration and Acoustics》 |2016年第2期|021012.1-021012.13|共13页
  • 作者单位

    Department of Mechanical Engineering, Shahid Bahonar University of Kerman, Kerman 76169-133, Iran;

    Department of Mechanical Engineering, Shahid Bahonar University of Kerman, Kerman 76169-133, Iran;

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