Structural Health Monitoring, Volume 5

31 Non-Model-Based Crack Identification Using Measured Mode Shapes 297 References 1. Doebling SW, Farrar CR, Prime MB (1998) A summary review of vibration-based damage identification methods. Shock Vib Dig 30:91–105 2. He K, Zhu WD (2010) Detection of damage and loosening of bolted joints in structures using changes in natural frequencies. ASNT Mater Eval 2010:721–732 3. He K, Zhu WD (2011) Damage detection of space frame structures with L-shaped beams and bolted joints using changes in natural frequencies. ASME J Vib Acoust 135:051001 (13 pages) 4. Friswell MI (2007) Damage identification using inverse methods. Philos Trans Math Phys Eng Sci 365:393–410 5. Surace C (2013) Damage assessment of structures using only post-damage vibration measurements. Key Eng Mater 569–570:11–22 6. Fan W, Qiao P (2011) Vibration-based damage identification methods: a review and comparative study. Struct Health Monit 10:83–111 7. Pandey AK, Biswas M, Samman MM (1991) Damage detection from changes in curvature mode shapes. J Sound Vib 145:321–332 8. Ratcliffe CP, Bagaria WJ (1998) Vibration technique for locating delamination in a composite beam. AIAA J 36:1074–1077 9. Ratcliffe CP (2000) A frequency and curvature based experimental method for locating damage in structures. J Vib Acoust 122:324–329 10. Yoon M-K, Heider D, Gillespie JW Jr, Ratcliffe CP, Crane RM (2009) Local damage detection with the global fitting method using mode shape data in notched beams. J Nondestruct Eval 38:63–74 11. Yoon M-K, Heider D, Gillespie JW Jr, Ratcliffe CP, Crane RM (2010) Local damage detection with the global fitting method using operating deflection shape data. J Nondestruct Eval 29:25–37 12. Szzonov E, Klinkhachorn P (2005) Optimal spatial sampling interval for damage detection by curvature or strain energy mode shapes. J Sound Vib 285:783–801 13. Cao M, Qiao P (2009) Novel Laplacian scheme and multiresolution modal curvatures for structural damage identification. Mech Syst Signal Process 23:1223–1242 14. Douka E, Loutridis S, Trochidis A (2003) Crack identification in beams using wavelet analysis. Int J Solids Struct 40:357–3569 15. Rucka M, Wilde K (2006) Application of continuous wavelet transform in vibration based damage detection method for beams and plates. J Sound Vib 297:536–550 16. Solis M, Algaba M, Galvin P (2013) Continuous wavelet analysis of mode shapes differences for damage detection. Mech Syst Signal Process 40:645–666 17. Zak A, Krawczuk M, Ostachowicz W (2000) Numerical and experimental investigation of free vibration of multilayer delaminated composite beams and plates. Comput Mech 26:309–315 18. Lee J (2000) Free vibration analysis of delaminated composite beams. Comput Struct 74:121–129 19. Shen M-HH, Grady JE (1992) Free vibrations of delaminated beams. AIAA J 30:1361–1370 20. Okafor AC, Chandrashekhara K, Jiang YP (1996) Delamination prediction in composite beams with built-in piezoelectric devices using modal analysis and neural network. Smart Mater Struct 5:338–347 21. Wang Q, Wu N (2002) Detecting the delamination location of a beam with a wavelet transform: an experimental study. Smart Mater Struct 20:01202 (7 pages) 22. Mallet S (1998) A wavelet tour of signal processing. Academic, London 23. Cao M, Cheng L, Su Z, Xu H (2012) A multi-scale pseudo-force model in wavelet domain for identification of damage in structural components. Mech Syst Signal Process 28:638–659 24. Ewins DJ (2000) Modal testing: theory, practice and application, 2nd edn. Research Studies Press, Hertfordshire 25. Nocedal J, Wright SJ (1999) Numerical optimization. Springer, New York 26. The Mathworks Inc. (2010) MATLAB user’s guide, Natick

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