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A reduced order model based on sector mistuning for the dynamic analysis of mistuned bladed disks

机译:基于扇形迷雾器动态分析的狭窄碎片磁盘动态分析的阶数模型

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摘要

In this paper, a pre-existing reduction technique suitable for the analysis of mistuned bladed disk dynamics, the Component Mode Mistuning technique (CMM), originally developed exclusively for the use of blade frequency mistuning pattern, is extended in order to allow for the introduction of a sector frequency mistuning pattern. If either mistuning is not confined to the blades (i.e. blades-to-disk interface mistuning), or the blades can not be removed from the bladed disk (i.e. integral bladed disks), sector mistuning rather than blade mistuning is a more suitable choice to perturb the tuned system. As a consequence, the extension of the original technique is referred as Integral Mode Mistuning (IMM). After a theory review of the original technique, the modifications leading to the IMM are described. Finally, the proposed IMM technique is validated in terms of both modal parameters estimation and forced response calculation, by means of a dummy bladed disk developed at Politecnico di Torino.
机译:在本文中,适用于分析雾化磁盘动力学,组件模式迷雾技术(CMM)的预先存在的减少技术,最初是专门用于使用刀片频率迷雾模式的,以便允许引入扇区频率迷雾模式。如果迷雾不限于刀片(即刀片到盘界面迷雾),或者刀片不能从叶片磁盘(即整体叶片磁盘),扇区迷雾而不是刀片迷雾是更适合的选择扰乱了调谐系统。结果,原始技术的扩展被称为整体模式迷雾(IMM)。在原始技术的理论审查之后,描述了导致IMM的修改。最后,通过在PoliteCnico di Tiino开发的虚拟叶片磁盘,在模态参数估计和强制响应计算方面验证了所提出的IMM技术。

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