Rotating Machinery, Hybrid Test Methods, Vibro-Acoustics & Laser Vibrometry, Volume 8

15 Investigation of Notch-Type Damage Identification by Using a Continuously Scanning Laser Doppler Vibrometer System 151 13. Wahab, M.A., De Roeck, G.: Damage detection in bridges using modal curvatures: application to a real damage scenario. J. Sound Vib. 226(2), 217–235 (1999) 14. Sampaio, R., Maia, N., Silva, J.: Damage detection using the frequency-response-function curvature method. J. Sound Vib. 226(5), 1029–1042 (1999) 15. Ratcliffe, C.P.: A frequency and curvature based experimental method for locating damage in structures. J. Vib. Acoust. 122(3), 324–329 (2000) 16. Yoon, M.-K., Heider, D., Gillespie, Jr., J.W., Ratcliffe, C.P., Crane, R.M.: Local damage detection with the global fitting method using mode shape data in notched beams. J. Nondestruct. Eval. 28(2), 63–74 (2009) 17. Xu, Y., Zhu, W., Liu, J., Shao, Y.: Identification of embedded horizontal cracks in beams using measured mode shapes. J. Sound Vib. 333(23), 6273–6294 (2014) 18. Chen, D., Xu, Y., Zhu, W.: Damage identification of beams using a continuously scanning laser doppler vibrometer system. J. Vib. Acoust. 138(5), 05011 (2016) 19. Sazonov, E., Klinkhachorn, P.: Optimal spatial sampling interval for damage detection by curvature or strain energy mode shapes. J. Sound Vib. 285(4), 783–801 (2005)

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