Qualitative health monitoring and incipient damage inspection/evaluation
<p>Real-time structural integrity monitoring is a concept that is becoming a reality in the engineering community. It will soon be possible for a structure to warn the user when its own structural integrity has been altered.</p> <p> A qualitative impedance-based health monitoring t...
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-431102021-05-26T05:48:28Z Qualitative health monitoring and incipient damage inspection/evaluation Ayres, John W. Mechanical Engineering Rogers, Craig A. Lalande, Frederic Robertshaw, Harry H. impedance qualitative smart structures damage detection LD5655.V855 1996.A947 <p>Real-time structural integrity monitoring is a concept that is becoming a reality in the engineering community. It will soon be possible for a structure to warn the user when its own structural integrity has been altered.</p> <p> A qualitative impedance-based health monitoring technique, which can be implemented for real-time damage evaluation of complex structures, is investigated. The basic principle of the technique is to monitor the structure's mechanical impedance which will be changed with the presence of damage. The mechanical impedance variations are monitored by measuring the electrical impedance of a bonded piezoelectric actuator/sensor (PZT). This mechanical-electrical impedance relation is due to the electro-mechanical coupling property of piezoelectric materials. This health monitoring technique can be easily adapted to existing structures, since only a small non-intrusive PZT patch is needed. This impedance-based method operates at high frequencies (generally above 100kHz), which enables it to detect incipient type damage in a localized region. The localized sensing region offers the advantage of not being affected by nonnal operating conditions or by changing boundary conditions. In this thesis, a complete theoretical background on the impedance-based technique is derived. Then, the technique is applied successfully to a variety of case studies; such as composite patch repair, aircraft structures, precision parts, and civil infrastructure. By simplifying the impedance measurement interpretation through a simple scalar damage metric, the real-time implementation of the impedance-based technique has been proven feasible.</p> Master of Science 2014-03-14T21:37:48Z 2014-03-14T21:37:48Z 1996-05-01 2009-06-11 2009-06-11 2009-06-11 Thesis Text etd-06112009-063007 http://hdl.handle.net/10919/43110 http://scholar.lib.vt.edu/theses/available/etd-06112009-063007/ en OCLC# 35079103 LD5655.V855_1996.A947.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ xi, 75 leaves BTD application/pdf application/pdf Virginia Tech |
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impedance qualitative smart structures damage detection LD5655.V855 1996.A947 |
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impedance qualitative smart structures damage detection LD5655.V855 1996.A947 Ayres, John W. Qualitative health monitoring and incipient damage inspection/evaluation |
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<p>Real-time structural integrity monitoring is a concept that is becoming a reality in the
engineering community. It will soon be possible for a structure to warn the user when its
own structural integrity has been altered.</p>
<p>
A qualitative impedance-based health monitoring technique, which can be implemented
for real-time damage evaluation of complex structures, is investigated. The basic
principle of the technique is to monitor the structure's mechanical impedance which will
be changed with the presence of damage. The mechanical impedance variations are
monitored by measuring the electrical impedance of a bonded piezoelectric
actuator/sensor (PZT). This mechanical-electrical impedance relation is due to the
electro-mechanical coupling property of piezoelectric materials. This health monitoring
technique can be easily adapted to existing structures, since only a small non-intrusive
PZT patch is needed. This impedance-based method operates at high frequencies
(generally above 100kHz), which enables it to detect incipient type damage in a localized
region. The localized sensing region offers the advantage of not being affected by nonnal
operating conditions or by changing boundary conditions. In this thesis, a complete
theoretical background on the impedance-based technique is derived. Then, the technique
is applied successfully to a variety of case studies; such as composite patch repair, aircraft
structures, precision parts, and civil infrastructure. By simplifying the impedance
measurement interpretation through a simple scalar damage metric, the real-time
implementation of the impedance-based technique has been proven feasible.</p> === Master of Science |
author2 |
Mechanical Engineering |
author_facet |
Mechanical Engineering Ayres, John W. |
author |
Ayres, John W. |
author_sort |
Ayres, John W. |
title |
Qualitative health monitoring and incipient damage inspection/evaluation |
title_short |
Qualitative health monitoring and incipient damage inspection/evaluation |
title_full |
Qualitative health monitoring and incipient damage inspection/evaluation |
title_fullStr |
Qualitative health monitoring and incipient damage inspection/evaluation |
title_full_unstemmed |
Qualitative health monitoring and incipient damage inspection/evaluation |
title_sort |
qualitative health monitoring and incipient damage inspection/evaluation |
publisher |
Virginia Tech |
publishDate |
2014 |
url |
http://hdl.handle.net/10919/43110 http://scholar.lib.vt.edu/theses/available/etd-06112009-063007/ |
work_keys_str_mv |
AT ayresjohnw qualitativehealthmonitoringandincipientdamageinspectionevaluation |
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