Publication detail
Analysis of Influence of Couplant on the Parameters of Acoustic Emission Signal
NOHÁL, L. MAZAL, P. SCHREIER, J.
Czech title
Analysis of Influence of Couplant on the Parameters of Acoustic Emission Signal
English title
Analysis of Influence of Couplant on the Parameters of Acoustic Emission Signal
Type
Paper in proceedings (conference paper)
Language
cs
Original abstract
The acoustic emission testing is a modern non-destructive method using transient elastic waves. It is commonly used for condition monitoring, leak detection or structural monitoring. This paper describes an influence of the various couplants on the selected acoustic emission parameters. The amplitude, rise time and duration are compared depending on temperature. The measurements were performed in two series at 20 C and 80 C.
English abstract
The acoustic emission testing is a modern non-destructive method using transient elastic waves. It is commonly used for condition monitoring, leak detection or structural monitoring. This paper describes an influence of the various couplants on the selected acoustic emission parameters. The amplitude, rise time and duration are compared depending on temperature. The measurements were performed in two series at 20 C and 80 C.
Keywords in Czech
Acoustic emission, Couplant, Attenuation, AE transducer, Analysis
Keywords in English
Acoustic emission, Couplant, Attenuation, AE transducer, Analysis
Released
2012-09-12
Publisher
FSI VUT v Brně
Location
Brno
ISBN
978-80-214-4533-8
Book
53rd International Conference of Machine Design Departments – Conference Proceedings
Pages from–to
213–218
Pages count
6
BIBTEX
@inproceedings{BUT96016,
author="Libor {Nohál} and Pavel {Mazal} and Jan {Schreier}",
title="Analysis of Influence of Couplant on the Parameters of Acoustic Emission Signal",
booktitle="53rd International Conference of Machine Design Departments - Conference Proceedings",
year="2012",
series="2012",
number="1",
pages="213--218",
publisher="FSI VUT v Brně",
address="Brno",
isbn="978-80-214-4533-8"
}