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Vibration and flutter of mistuned bladed-disk assemblies

机译:误叶片盘组件的振动和颤动

摘要

An analytical model for investigating vibration and flutter of mistuned bladed disk assemblies is presented. This model accounts for elastic, inertial and aerodynamic coupling between bending and torsional motions of each individual blade, elastic and inertial couplings between the blades and the disk, and aerodynamic coupling among the blades. The disk was modeled as a circular plate with constant thickness and each blade was represented by a twisted, slender, straight, nonuniform, elastic beam with a symmetric cross section. The elastic axis, inertia axis, and the tension axis were taken to be noncoincident and the structural warping of the section was explicitly considered. The blade aerodynamic loading in the subsonic and supersonic flow regimes was obtained from two-dimensional unsteady, cascade theories. All the possible standing wave modes of the disk and traveling wave modes of the blades were included. The equations of motion were derived by using the energy method in conjunction with the assumed mode shapes for the disk and the blades. Continuities of displacement and slope at the blade-disk junction were maintained. The equations were solved to investigate the effects of blade-disk coupling and blade frequency mistuning on vibration and flutter. Results showed that the flexibility of practical disks such as those used for current generation turbofans did not have a significant influence on either the tuned or mistuned flutter characteristics. However, the disk flexibility may have a strong influence on some of the system frequencies and on forced response.
机译:提出了用于研究雾化叶片盘组件振动和颤动的分析模型。该模型考虑了每个单独叶片的弯曲和扭转运动之间的弹性,惯性和空气动力耦合,叶片与圆盘之间的弹性和惯性耦合以及叶片之间的空气动力耦合。将圆盘建模为厚度恒定的圆形板,每个叶片由具有对称横截面的扭曲,细长,笔直,不均匀的弹性梁表示。弹性轴,惯性轴和张力轴是不重合的,并且明确考虑了截面的结构变形。从二维非定常级联理论获得了亚音速流和超音速流状态下的叶片气动载荷。包括了磁盘的所有可能的驻波模式和叶片的行波模式。运动方程是通过使用能量方法并结合磁盘和叶片的假定模式形状而得出的。叶片-磁盘连接处的位移和斜率保持连续。求解方程,以研究叶片-磁盘耦合和叶片频率失谐对振动和颤动的影响。结果表明,实用磁盘的灵活性(例如用于当前代涡扇风扇的磁盘)对调谐或颤动的颤振特性均没有显着影响。但是,磁盘的灵活性可能会对某些系统频率和强制响应产生重大影响。

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  • 作者

    Kaza K. R. V.; Kielb R. E.;

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  • 年度 1984
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