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Compact, Generalized Component Mode Mistuning Representation for Modeling Bladed Disk Vibration

机译:紧凑,通用的组件模式错误表示法,用于对刀片式磁盘振动进行建模

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摘要

New techniques are presented for generating reduced-order models of the vibration of mistimed bladed disks from parent finite element models. A novel component-based modeling framework is developed by partitioning the system into a tuned bladed disk component and virtual blade mistuning components. The mistuning components are denned by the differences between the mistimed and tuned blade mass and stiffness matrices. The mistuned-system model is assembled with a component mode synthesis technique, using a basis of tuned-system normal modes and attachment modes. The formulation developed is general and can be applied to any mistuned bladed disk, including those with large geometric mistuning (e.g., severe blade damage). In the case of small (i.e., blade frequency) mistuning, a compact reduced-order model is derived by neglecting the attachment modes. For this component mode mistuning model, the blade mistuning is projected first onto the component modes of a tuned, cantilevered blade, and then projected again onto the tuned-system normal modes via modal participation factors. In this manner, several natural frequencies of each mistuned blade can be used to capture systematically the effects of the complex physical sources of mistuning. A numerical validation of the developed methods is performed for both large and small mistuning cases using a finite element model of an industrial rotor.
机译:提出了用于从父级有限元模型生成错误定时的叶片盘振动的降阶模型的新技术。通过将系统划分为调整后的刀片磁盘组件和虚拟刀片停产组件,可以开发出基于组件的新型建模框架。时差和调整后的叶片质量和刚度矩阵之间的差异决定了失速组件。雾化系统模型是利用组件模式综合技术,以调谐系统正常模式和附着模式为基础组装而成的。所开发的配方是通用的,可以应用于任何雾化的叶片盘,包括那些具有大的几何雾化(例如,严重的叶片损坏)的叶片。在小的(即,叶片频率)失谐的情况下,通过忽略附着模式来导出紧凑的降阶模型。对于此组件模式失谐模型,首先将叶片失谐投影到已调整的悬臂叶片的组件模上,然后再通过模态参与因子再次将其投影到已调整系统的正常模式上。以这种方式,每个被搅动的叶片的几个固有频率可以用来系统地捕获复杂的搅动物理源的影响。使用工业转子的有限元模型,对大型和小型雾化情况进行了开发方法的数值验证。

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