Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers

In this paper results of experimental analysis of elastic guided wave mode conversion phenomenon in glass fibre reinforced polymers GFRP are presented. Results of research presented in this paper are strictly focused on S0/A0' mode conversion caused by discontinuities in the form of circular te...

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Main Authors: Wandowski Tomasz, Malinowski Pawel, Ostachowicz Wieslaw
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201818801009
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spelling doaj-52235f03f6984b60a111b86294ad10592021-04-02T13:24:24ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011880100910.1051/matecconf/201818801009matecconf_iceaf-v2018_01009Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymersWandowski TomaszMalinowski PawelOstachowicz WieslawIn this paper results of experimental analysis of elastic guided wave mode conversion phenomenon in glass fibre reinforced polymers GFRP are presented. Results of research presented in this paper are strictly focused on S0/A0' mode conversion caused by discontinuities in the form of circular teflon insert simulating damage and impact damage. Experimental research is based on non-contact elastic wave sensing with utilisation of scanning laser Doppler vibrometer SLDV and full wave-field measurements. In presented research influence of location of circular teflon insert on S0/A0' mode conversion is investigated. Teflon inserts were located between layers of composite material at different depth. Moreover influence of impact damage with different energy on S0/A0' mode conversion is investigated. Analysis of influence of investigated discontinuities on S0/A0' mode conversion are based on the elastic wave mode filtration in frequency-wavenumber domain. Mode filtration process allows to remove effects of unwanted type of mode propagation in forward or backward direction. Effects of S0/A0' mode conversion are characterise by mode conversion indicator based on amplitude of new mode A0'.https://doi.org/10.1051/matecconf/201818801009
collection DOAJ
language English
format Article
sources DOAJ
author Wandowski Tomasz
Malinowski Pawel
Ostachowicz Wieslaw
spellingShingle Wandowski Tomasz
Malinowski Pawel
Ostachowicz Wieslaw
Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
MATEC Web of Conferences
author_facet Wandowski Tomasz
Malinowski Pawel
Ostachowicz Wieslaw
author_sort Wandowski Tomasz
title Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
title_short Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
title_full Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
title_fullStr Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
title_full_unstemmed Analysis of S0/A0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
title_sort analysis of s0/a0 elastic wave mode conversion phenomenon in glass fibre reinforced polymers
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description In this paper results of experimental analysis of elastic guided wave mode conversion phenomenon in glass fibre reinforced polymers GFRP are presented. Results of research presented in this paper are strictly focused on S0/A0' mode conversion caused by discontinuities in the form of circular teflon insert simulating damage and impact damage. Experimental research is based on non-contact elastic wave sensing with utilisation of scanning laser Doppler vibrometer SLDV and full wave-field measurements. In presented research influence of location of circular teflon insert on S0/A0' mode conversion is investigated. Teflon inserts were located between layers of composite material at different depth. Moreover influence of impact damage with different energy on S0/A0' mode conversion is investigated. Analysis of influence of investigated discontinuities on S0/A0' mode conversion are based on the elastic wave mode filtration in frequency-wavenumber domain. Mode filtration process allows to remove effects of unwanted type of mode propagation in forward or backward direction. Effects of S0/A0' mode conversion are characterise by mode conversion indicator based on amplitude of new mode A0'.
url https://doi.org/10.1051/matecconf/201818801009
work_keys_str_mv AT wandowskitomasz analysisofs0a0elasticwavemodeconversionphenomenoninglassfibrereinforcedpolymers
AT malinowskipawel analysisofs0a0elasticwavemodeconversionphenomenoninglassfibrereinforcedpolymers
AT ostachowiczwieslaw analysisofs0a0elasticwavemodeconversionphenomenoninglassfibrereinforcedpolymers
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