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Piezoelectric-Based Vibration Reduction of Turbomachinery Bladed Disks via Resonance Frequency Detuning

机译:基于共振频率失谐的涡轮机械叶片圆盘基于压电的减振

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摘要

Piezoelectric-based resonance frequency detuning can alleviate unwanted vibration of turbomachinery blades, thus reducing the dangers of high-cycle fatigue while also decreasing the blade weight. This semiactive approach applies to structures that are subjected to frequency-sweep excitation and involves altering the structural stiffness (here, by switching the piezoelectric electrical boundary conditions) to avoid a resonant condition, thus limiting the blade response. Detuning requires two switches per resonance/excitation frequency crossing, including a switch back to the original the original state, many fewer than other semiactive approaches that require four switches per cycle of vibration. Resonance frequency detuning applies to any mode of vibration with a positive electromechanical coupling coefficient, and it provides the greatest normalized vibration reduction for slow sweeps, low damping, and high coupling coefficient. Yet even for a moderate sweep rate α = 10~(-4) and modal damping ζ = 0.1%, optimally detuning a structure with an electromechanical coupling coefficient k~2 = 10% provides the same vibration reduction as increasing either the sweep rate or modal damping by an order of magnitude. With a lower sweep rate α = 10~(-5) and modal damping ζ = 0.01%, detuning with a coupling coefficient of only k~2 = 3% provides equivalent vibration reduction as an order of magnitude increase in sweep rate or modal damping.
机译:基于压电的共振频率失谐可以减轻涡轮机械叶片的不希望有的振动,从而减少高周疲劳的危险,同时还可以减轻叶片的重量。这种半主动方法适用于经受扫频激励的结构,并且涉及更改结构刚度(此处通过切换压电电边界条件)以避免共振条件,从而限制了叶片响应。失谐在每个共振/激励频率交叉点需要两个开关,包括切换回原始状态,比其他半主动方法要少得多,而其他半主动方法每个振动周期需要四个开关。共振频率失谐适用于具有正机电耦合系数的任何振动模式,并且它为慢扫描,低阻尼和高耦合系数提供最大的归一化振动减小。即使对于中等扫掠率α= 10〜(-4)和模态阻尼ζ= 0.1%,以机电耦合系数k〜2 = 10%最佳地使结构失谐也能提供与增加扫掠率或增加振动相同的减振效果。模态阻尼一个数量级。在较低的扫掠率α= 10〜(-5)和模态阻尼ζ= 0.01%的情况下,仅以k〜2 = 3%的耦合系数进行失谐就可以等效地减少振动,因为扫掠率或模态阻尼的数量级增加了。

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