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RESONANCE SUPPRESSION IN MULTI-DOF ROTATING FLEXIBLE STRUCTURES USING ORDER-TUNED ABSORBERS

机译:阶调吸收器在多自由度旋转柔性结构中的共振抑制

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摘要

This paper considers the dynamic response and order-tuning of vibration absorbers fitted to a rotating flexible structure under traveling wave (TW) engine order excitation. Of specific interest is the extension of previous results on the so-called no-resonance zone, that is, a region in linear tuning parameter space in which the coupled structure/absorber system does not experience resonance over all rotation speeds. The no-resonance feature was shown to exist for cyclic rotating structures with one structural and one absorber degree-of-freedom (DOF) per sector. This work uses a higher-fidelity structural model to investigate the effects of higher modes on the cyclically-coupled system. It is shown that the no-resonance zone is replaced by a resonance-suppression zone in which one structural mode is suppressed, but higher-order resonances still exist with the addition of the absorbers. The results are general, in the sense that one vibration mode can be eliminated using a set of identically-tuned absorbers on a rotating structure with arbitrarily many DOFs per sector.
机译:本文考虑了在行波(TW)发动机阶次激励下安装在旋转柔性结构上的减振器的动态响应和阶调。特别令人感兴趣的是先前结果在所谓的无共振区上的扩展,即在线性调谐参数空间中的区域,其中耦合结构/吸收器系统在所有转速下均未经历共振。结果表明,对于每个扇区具有一个结构和一个吸收器自由度(DOF)的循环旋转结构,存在无共振特征。这项工作使用了更高保真度的结构模型来研究更高模态对循环耦合系统的影响。结果表明,无共振区被共振抑制区取代,在该共振抑制区中一种结构模式被抑制,但是随着吸收体的加入,高阶共振仍然存在。结果是一般的,从某种意义上说,可以在旋转结构上使用一组相同调谐的吸收器来消除一个振动模式,每个扇区具有任意多个自由度。

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