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  4. Influence of delamination characteristics in carbon fibre/epoxy laminates on signal features of pulse thermography
 
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Influence of delamination characteristics in carbon fibre/epoxy laminates on signal features of pulse thermography

Publikationstyp
Journal Article
Date Issued
2014-12-10
Sprache
English
Author(s)
Schmutzler, Henrik  
Garcia, Alejandro  
Sato, Narumichi  
Wittich, Hans  
Nishikawa, Masaaki  
Rohling, Hermann  
Hojo, Masaki  
Schulte, Karl  
Fiedler, Bodo  orcid-logo
Institut
Kunststoffe und Verbundwerkstoffe M-11  
Nachrichtentechnik E-8  
TORE-URI
http://hdl.handle.net/11420/6459
Journal
Journal of nondestructive evaluation  
Volume
34
Issue
1
Article Number
5
Citation
Journal of Nondestructive Evaluation 1 (34): 5 (2015)
Publisher DOI
10.1007/s10921-014-0274-4
Scopus ID
2-s2.0-84930226128
Publisher
Springer Science + Business Media
Carbon fibre reinforced polymer specimens were used in double cantilever beam tests in order to investigate the influence of delamination characteristics on multiple signal features extracted from active thermography data. During mechanical loading, delamination opening and growth were induced, allowing controlled setting of different configurations. In addition to the standardised specimens, specimen geometries were altered to investigate delamination depth and influences from two overlapping delaminations in different depths. The thermography data was obtained from a measurement where the specimens were subjected to a rectangular long pulse emitted from a halogen light. From the data various signal features were extracted. Correlations between signal features such as phase angle difference and delamination opening were investigated. Furthermore, a comparison of the relation between extracted features allowed identifying different sections of the delamination, proving the methods applicability as a detailed classification tool. Due to the high number of features extracted robustness is increased.
Subjects
Defects
FRP (fiber reinforced) plastic
Infrared thermography
Signal processing
DDC Class
600: Technik
More Funding Information
The authors would like to thank the German Ministry for Science and Education for founding the Project 03CL02A .
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