Proposition of a single-degree-of-freedom experimental modal analysis method considering the effect of mode components close to the target mode

Author:

TAJIRI Daiki1,TAKEHARA Shinsuke1,MATSUBARA Masami1,KAWAMURA Shozo1

Affiliation:

1. Toyohashi University of Technology. Dept. of Mechanical Engineering

Publisher

Japan Society of Mechanical Engineers

Reference22 articles.

1. Anthony, D. K. and Simon, F., Accuracy and robustness of four basic single degree of freedom methods for determining the modal parameters of non-lightly damped systems, Journal of Sound and Vibration, Vol.331, No.24 (2012), pp.5191–5208.

2. Antunes, A. M., Ribeiro, P., Dias, J. and Akhavan, R. H., Modal analysis of a variable stiffness composite laminated plate with diverse boundary conditions: Experiments and modelling, Composite Structures, Vol.239, No.1 (2020), Paper No.111974.

3. Arai, M., Itagaki, D., Nishimura, M., Shimamura, Y. and Kobayashi, K., Evaluation of vibration damping for CFRP laminated beam using homogenization method, Transactions of the Japan Society for Computational Methods in Engineering, Vol.14 (2014), Paper No. 11-141206 (in Japanese).

4. Asher, G. W., A method of normal mode excitation utilizing admittance measurements, Proceedings National Specialists Meeting, IAS; Dynamics and Aeroelasticity (1985).

5. Chandra, N.H. and Sekhar, A.S., Swept sine testing of rotor-bearing system for damping estimation, Journal of Sound and Vibration, Vol.333, No.2 (2014), pp.604-620.

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1. Accuracy enhancement of modal analysis using higher-order residual terms;Mechanical Engineering Journal;2023

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