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Modal Identification of Output-Only Systems of Composite Discs Using Zernike Modes and MAC

机译:使用Zernike模式和MAC的复合光盘仅输出系统的模态识别

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摘要

The analysis of the structural dynamic behaviour of composite rotor–discs by a valid description of the eigenfrequencies and mode shapes can provide significant information for action-taking before a failure occurs. Specifically, vibration-based diagnostic methods, which are able to take into consideration the interdependencies and sequential changes of the modal properties could benefit from such an analysis. Here, on the example of composite rotors, a correlation method for experimentally determined mode shapes is developed. For this purpose the Zernike polynomials are used to enhance the identification of mode shapes. Furthermore, the modal assurance criterion (MAC) in combination with the frequency response criterion and a data processing approach are applied in order to characterize changing modal properties of composite rotors. In addition, the developed algorithms can be further extended in order to simplify the experimental evaluation of the complex dynamic behaviour of composite structures.
机译:通过有效地描述本征频率和振型,对复合转子盘的结构动力学行为进行分析,可以为故障发生前的采取行动提供重要信息。具体而言,能够考虑模态特性的相互依赖性和顺序变化的基于振动的诊断方法可以从这种分析中受益。在此,以复合转子为例,开发了一种通过实验确定模态形状的相关方法。为此,Zernike多项式用于增强模式形状的识别。此外,模态保证准则(MAC)与频率响应准则和数据处理方法相结合,用于表征复合材料转子的模态特性变化。此外,可以进一步扩展已开发的算法,以简化对复合结构的复杂动力行为的实验评估。

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