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Masters_Thesis_KeithVehorn_final format approved LW 7-24-13.pdf (1.43 MB)
ETD Abstract Container
Abstract Header
Vibro-Acoustic Modulation as a Baseline-Free Structural Health Monitoring Technique
Author Info
Vehorn, Keith A.
Permalink:
http://rave.ohiolink.edu/etdc/view?acc_num=dayton1374508274
Abstract Details
Year and Degree
2013, Master of Science (M.S.), University of Dayton, Mechanical Engineering.
Abstract
Structural health monitoring (SHM) methods are being explored as techniques to assess the integrity of mechanical, civil, and aerospace structures. Most of these methods detect or quantify damage by comparing current structural state measurements to stored baseline measurements collected from an undamaged structure. These baseline dependent methods assume that measured signals will not change when exposed to varying environmental and usage conditions. To avoid limitations of this assumption, baseline-free techniques such as vibro-acoustic modulation (VAM) are being explored. VAM is a nonlinear vibration technique in which the structure of interest is excited using a combination of specific frequencies and the response recorded. The VAM technique assumes that an undamaged structure can be represented by a linear system while the representation of a damaged structure must include nonlinearity. A nonlinearity is assumed to result in the generation of sideband responses. To demonstrate the use of VAM to detect fatigue cracking, experimental testing has been performed on existing damaged and undamaged specimens, as well as on fatigue specimens where cracks have been initiated and grown. Initial testing of the damaged and undamaged specimens provides validation for using VAM as a baseline-free SHM technique. Subsequent measurements during fatigue testing confirm this result. Two rectangular coupons were fatigue cycled to initiate and grow cracks. The VAM method detected cracks at 6.42 percent and 12.24 percent damaged cross-sectional area. Potential advantages and limitation of the use of VAM for fatigue crack detection are discussed, and recommendations for additional research efforts to improve or refine the technique are given.
Committee
Steven A Olson, Ph.D (Advisor)
Pages
59 p.
Subject Headings
Mechanical Engineering
Keywords
vibro acoustic modulation
;
VAM
;
nonlinear acoustics
;
structural health monitoring
;
SHM
;
crack detection
;
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Citations
Vehorn, K. A. (2013).
Vibro-Acoustic Modulation as a Baseline-Free Structural Health Monitoring Technique
[Master's thesis, University of Dayton]. OhioLINK Electronic Theses and Dissertations Center. http://rave.ohiolink.edu/etdc/view?acc_num=dayton1374508274
APA Style (7th edition)
Vehorn, Keith.
Vibro-Acoustic Modulation as a Baseline-Free Structural Health Monitoring Technique.
2013. University of Dayton, Master's thesis.
OhioLINK Electronic Theses and Dissertations Center
, http://rave.ohiolink.edu/etdc/view?acc_num=dayton1374508274.
MLA Style (8th edition)
Vehorn, Keith. "Vibro-Acoustic Modulation as a Baseline-Free Structural Health Monitoring Technique." Master's thesis, University of Dayton, 2013. http://rave.ohiolink.edu/etdc/view?acc_num=dayton1374508274
Chicago Manual of Style (17th edition)
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Document number:
dayton1374508274
Download Count:
1,533
Copyright Info
© 2013, all rights reserved.
This open access ETD is published by University of Dayton and OhioLINK.