Damage detection in bonded repairs using piezoceramics

This paper reports on the development of a perceptive repair or smart system which will provide information on the in-service performance of the repair and the associated aerospace structure. In this respect, this paper focuses on the detection of disbond in the adhesive layer between adhered (boron...

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Published inSmart materials and structures Vol. 9; no. 4; pp. 466 - 475
Main Authors Chiu, W K, Galea, S C, Koss, L L, Rajic, N
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.08.2000
Institute of Physics
Subjects
Online AccessGet full text
ISSN0964-1726
1361-665X
DOI10.1088/0964-1726/9/4/309

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Abstract This paper reports on the development of a perceptive repair or smart system which will provide information on the in-service performance of the repair and the associated aerospace structure. In this respect, this paper focuses on the detection of disbond in the adhesive layer between adhered (boron/epoxy unidirectional composite) and the metallic parent (Al) structure. One of the criteria of this smart system is that it must be economical, reliable and, preferably, self-powered. To this end, it was proposed that piezoceramic of piezoelectric material be utilized because of their ease of application. These materials were chosen because they can be used both as a actuator and as a sensor. This paper presents a set of numerical investigations performed to highlight the viability of using this material system, and the associated signal analysis that can be employed to detect the presence or the development of disbonds in the adhesive in a bonded repair situation.
AbstractList This paper reports on the development of a perceptive repair or smart system which will provide information on the in-service performance of the repair and the associated aerospace structure. In this respect, this paper focuses on the detection of disbond in the adhesive layer between adhered (boron/epoxy unidirectional composite) and the metallic parent (Al) structure. One of the criteria of this smart system is that it must be economical, reliable and, preferably, self-powered. To this end, it was proposed that piezoceramic of piezoelectric material be utilized because of their ease of application. These materials were chosen because they can be used both as a actuator and as a sensor. This paper presents a set of numerical investigations performed to highlight the viability of using this material system, and the associated signal analysis that can be employed to detect the presence or the development of disbonds in the adhesive in a bonded repair situation.
Author Chiu, W K
Koss, L L
Galea, S C
Rajic, N
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Cites_doi 10.1117/12.275667
10.1016/S0041-624X(97)00070-X
10.1117/12.274663
10.1088/0964-1726/3/3/008
10.1088/0964-1726/5/3/002
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Issue 4
Keywords Piezoelectric sensor
In situ test
Surface transducer
Modeling
Finite element method
Lamb wave
Adhesive joint
Polymer metal contact
Measurement method
Transfer function
Localization
Repair
Monitoring
Damaging
Language English
License CC BY 4.0
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SubjectTerms Analysing. Testing. Standards
Applied sciences
Exact sciences and technology
Fracture mechanics (crack, fatigue, damage...)
Fracture mechanics, fatigue and cracks
Fundamental areas of phenomenology (including applications)
Measurement and testing methods
Measurement methods and techniques in continuum mechanics of solids
Metals. Metallurgy
Nondestructive testing
Physics
Polymer industry, paints, wood
Properties and testing
Solid mechanics
Structural and continuum mechanics
Technology of polymers
Testing and control
Testing for defects
Title Damage detection in bonded repairs using piezoceramics
URI http://iopscience.iop.org/0964-1726/9/4/309
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