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Predicting Blade Stress Levels Directly From Reduced-Order Vibration Models of Mistuned Bladed Disks

机译:直接根据失调的刀片式磁盘的降阶振动模型直接预测刀片的应力水平

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摘要

The forced vibration response of bladed disks can increase dramatically due to blade mistuning, which can cause major durability and reliability problems in turbine engines. To predict the mistuned forced response efficiently, several reduced-order modeling techniques have been developed. However, for mistuned bladed disks, increases in blade amplitude levels do not always correlate well with increases in blade stress levels. The stress levels may be computed by postprocessing the reduced-order model results with finite element analysis, but this is cumbersome and expensive. In this work, three indicators that can be calculated directly from reduced-order models are proposed as a way to estimate blade stress levels in a straightforward, systematic, and inexpensive manner. It is shown that these indicators can be used to predict stress values with good accuracy relative to finite element results, even for a case in which the displacement and stress levels show different frequency response trends.
机译:叶片盘的不振动会极大地增加叶片盘的强制振动响应,这会在涡轮发动机中引起严重的耐用性和可靠性问题。为了有效地预测错误的强迫响应,已经开发了几种降阶建模​​技术。但是,对于雾化的刀片式磁盘,刀片振幅水平的增加并不总是与刀片应力水平的增加良好相关。可以通过对有限元分析的降阶模型结果进行后处理来计算应力水平,但这既麻烦又昂贵。在这项工作中,提出了可以直接从降阶模型中计算出的三个指标,以一种简单,系统和廉价的方式估算叶片应力水平。结果表明,即使在位移和应力水平显示出不同的频率响应趋势的情况下,这些指标也可用于相对于有限元结果以较高的精度预测应力值。

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