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Parametric instability of a Jeffcott rotor with rotationally asymmetric inertia and transverse crack

机译:具有旋转不对称惯性和横向裂纹的Jeffcott转子的参数不稳定性

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Both the rotationally asymmetric inertia and transverse crack frequently appear in the rotor system. The parametric excitations induced by this two features cause instability and severe vibration under certain operating conditions. Thus, the parametric instability of a Jeffcott rotor with asymmetric disk and open transverse crack is studied analytically. The vibration equations of four degrees-of-freedom of the system are established, and the stiffness coefficients of cracked rotor shaft are derived based upon the compliance method and strain energy release rate method. Then, utilizing the harmonic balance method and Taylor expansion technique, the unstable widths of simple and combination instability regions (SIR and CIR) are solved approximately. For a practical rotor system, the approximate unstable widths are verified by the Floquet numerical analysis. The effects of crack depth and position upon the unstable widths are discussed, and the conditions for zero unstable points (ZUPs) are given: Besides the asymmetric angle should be π/2 (for SIR) or 0 (for CIR), the relationships between the inertia asymmetry and crack parameters (depth and position) are also presented analytically. These results would be useful for crack detection and instability control of the asymmetric rotor-bearing system.
机译:转子系统中经常出现旋转不对称的惯性和横向裂纹。在某些操作条件下,这两个特征引起的参量激励会导致不稳定和剧烈振动。因此,分析性地研究了具有非对称圆盘和横向裂纹的Jeffcott转子的参数不稳定性。建立了系统四自由度的振动方程,并基于柔度法和应变能释放率法推导了裂纹转子轴的刚度系数。然后,利用谐波平衡法和泰勒展开技术,大致解决了简单和组合不稳定区域(SIR和CIR)的不稳定宽度。对于实际的转子系统,通过Floquet数值分析验证了近似的不稳定宽度。讨论了裂纹深度和位置对不稳定宽度的影响,并给出了零不稳定点(ZUPs)的条件:除非对称角应为π/ 2(对于SIR)或0(对于CIR)外,两者之间的关系分析性地给出了惯性不对称和裂纹参数(深度和位置)。这些结果对于非对称转子轴承系统的裂纹检测和失稳控制将是有用的。

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