How intrusive are accelerometers for measuring nonlinear vibrations? A case study on a compressor blade subjected to vibro-impact dynamics

IF 1.9 4区 工程技术 Q2 ACOUSTICS Journal of Vibration and Acoustics-Transactions of the Asme Pub Date : 2021-12-23 DOI:10.1115/1.4053357
Lukas Woiwode, Florian Müller, J. Gross, M. Scheel, M. Krack
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Abstract

A characteristic feature of nonlinear vibrations is the energy transfer among different parts or modes of a mechanical system. Moreover, nonlinear vibrations are often non-periodic, even at steady state. To analyze these phenomena experimentally, the vibration response must be measured at multiple locations in a time-synchronous way. For this task, piezoelectric accelerometers are by far the most popular technology. While the effect of attached sensors on linear vibration properties is well-known (mass loading in particular), the purpose of the present work is to assess their intrusiveness on nonlinear vibrations. To this end, we consider a compressor blade that undergoes impacts near the tip for sufficiently large vibrations. We consider two configurations, one in which five triaxial piezoelectric accelerometers are glued to the blade surface and one without sensors attached. In both configurations, the vibration response is measured using a multi-point laser Doppler vibrometer. In the linear case without impacts, the lowest-frequency bending mode merely sees the expected slight frequency shift due to mass loading. In the nonlinear vibro-impact case, unexpectedly, the near-resonant response to harmonic base excitation changes severely both quantitatively and qualitatively. In particular, pronounced strongly modulated responses and period doubling are observed only in the case without attached sensors. We conjecture that this is due to a considerable increase of damping, caused by the sensor cables, affecting mainly the higher-frequency modes.
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加速度计对测量非线性振动有多重要?压气机叶片振动冲击动力学的实例研究
非线性振动的一个特征是机械系统的不同部件或模态之间的能量传递。此外,非线性振动通常是非周期性的,即使在稳态下也是如此。为了对这些现象进行实验分析,必须在多个位置以时间同步的方式测量振动响应。对于这项任务,压电加速度计是迄今为止最流行的技术。虽然附加传感器对线性振动特性的影响是众所周知的(特别是质量载荷),但本工作的目的是评估它们对非线性振动的侵入性。为此,我们考虑一个压气机叶片,它在叶尖附近受到冲击,产生足够大的振动。我们考虑了两种结构,一种是将五个三轴压电加速度计粘在叶片表面,另一种是不附加传感器。在这两种配置中,振动响应是使用多点激光多普勒振动计测量的。在没有冲击的线性情况下,由于质量加载,最低频率弯曲模式仅看到预期的轻微频率移位。在非线性振动冲击情况下,谐波基激励下的近共振响应在数量和质量上都发生了严重的变化。特别是,只有在没有附加传感器的情况下,才能观察到明显的强调制响应和周期加倍。我们推测,这是由于传感器电缆引起的阻尼显著增加,主要影响高频模态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.20
自引率
11.80%
发文量
79
审稿时长
7 months
期刊介绍: The Journal of Vibration and Acoustics is sponsored jointly by the Design Engineering and the Noise Control and Acoustics Divisions of ASME. The Journal is the premier international venue for publication of original research concerning mechanical vibration and sound. Our mission is to serve researchers and practitioners who seek cutting-edge theories and computational and experimental methods that advance these fields. Our published studies reveal how mechanical vibration and sound impact the design and performance of engineered devices and structures and how to control their negative influences. Vibration of continuous and discrete dynamical systems; Linear and nonlinear vibrations; Random vibrations; Wave propagation; Modal analysis; Mechanical signature analysis; Structural dynamics and control; Vibration energy harvesting; Vibration suppression; Vibration isolation; Passive and active damping; Machinery dynamics; Rotor dynamics; Acoustic emission; Noise control; Machinery noise; Structural acoustics; Fluid-structure interaction; Aeroelasticity; Flow-induced vibration and noise.
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