Vibration-based methods for damage detection of structures are researched extensively among the academic community. Yet only limited success in practice has been reported. A major hurdle is understood to be the discrepancy between the assumed availability of pertinent modal data and the measurability of such data from actual experiments. However, dedicated critical studies into the practicality and limitation of modal testing for structural damage detection are scarce. This paper presents a laboratory investigation, along with finite-element (FE) analysis, into the extent to which modal frequencies and mode shapes may be measured in a plate-like structure and their general sensitivities to different levels of damage. The order of measurable modes and the measurement accuracy are assessed on the basis of the actual measurement in conjunction with FE predictions. Changes in the measured modal properties are examined in light of the pattern and severity of damage. Results indicate that with a typical modal testing it is possible to obtain the first 5–6 modes for a plate structure with sufficient accuracy in the frequencies but with a gross error of around 10% in the mode shapes. Using solely a few measurable natural frequencies will be insufficient to identify the occurrence and the degree of crack-induced damage. Mode shapes can be more indicative of local damage in a plate, especially when it involves an edge crack.
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June 2012
Research Article|
June 01 2012
A benchmark study of dynamic damage identification of plates Available to Purchase
Daniel Currie, MEng;
Daniel Currie, MEng
Graduate Engineer
URS Scott Wilson, London, UK
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Nicola Petrie, MEng;
Nicola Petrie, MEng
Graduate Engineer
Ramsay & Chalmers (Aberdeen), Aberdeen, UK
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Lei Mao, MSc;
Lei Mao, MSc
PhD Candidate
Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, Edinburgh, UK
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Yong Lu, PhD, CEng, FICE
Yong Lu, PhD, CEng, FICE
Professor
Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, Edinburgh, UK
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Publisher: Emerald Publishing
Revision Received:
October 29 2010
Accepted:
April 14 2011
Online ISSN: 1755-0785
Print ISSN: 1755-0777
ICE Publishing: All rights reserved
2012
Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics (2012) 165 (2): 103–118.
Article history
Revision Received:
October 29 2010
Accepted:
April 14 2011
Citation
Currie D, Petrie N, Mao L, Lu Y (2012), "A benchmark study of dynamic damage identification of plates". Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics, Vol. 165 No. 2 pp. 103–118, doi: https://doi.org/10.1680/eacm.10.00038
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