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Free transverse vibration of rotating blades in a bladed disk assembly

机译:叶片式磁盘组件中旋转叶片的自由横向振动

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摘要

This paper investigates the natural frequency of free transverse vibration of blades in rotating disks to examine the relationship of natural frequencies, blade stiffness and nodal diameters to study how neighboring blades react upon each other and affect blade natural frequency. With the use of elastic hinge theory and a cantilever beam model subjected to either a transverse concentrated force or a bending moment at the free end, the force-deflection stiffness/moment-rotation stiffness of the beam have been developed. Thereafter, the reaction forces and moments from the neighboring blades have been determined without the need for an exact solution of large deformation of cantilever beams including geometrical nonlinearity effects. With the use of the energy conservation principle and modal theory, the natural frequency of free transverse vibration of blades in rotating disks has been determined for any nodal diameter. A comparison of the analytical and finite element solutions for a bladed disk with uniform aerofoils shows that the analytical method presented in this paper is accurate.
机译:本文研究了旋转盘中叶片自由横向振动的固有频率,以检查固有频率,叶片刚度和节点直径之间的关系,以研究相邻叶片之间如何相互反应并影响叶片固有频率。利用弹性铰链理论和悬臂梁模型,其在自由端受到横向集中力或弯曲力矩的作用,已开发出梁的力-偏转刚度/力矩-转动刚度。此后,无需精确解决悬臂梁大变形(包括几何非线性效应)的问题,即可确定来自相邻叶片的反作用力和力矩。利用能量守恒原理和模态理论,已经确定了任何节点直径下旋转盘中叶片自由横向振动的固有频率。对翼型均匀的叶片盘的解析和有限元解的比较表明,本文提出的分析方法是准确的。

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  • 来源
    《Acta Mechanica》 |2012年第7期|p.1385-1396|共12页
  • 作者

    R. Luo;

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  • 正文语种 eng
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