Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave

In the recent studies of concrete surface crack non-destructive test (NDT), the environmental factors are seldom to be taken into assessment consideration using Rayleigh wave (R-wave) propagation method. Dust, fine sand or water that accumulated in the concrete surface cracks might potentially affec...

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Main Authors: Liew Chi Hoe, Lee Foo Wei, Lee Yee Ling, Lim Ming Han
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/27/matecconf_icbmm2018_01013.pdf
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spelling doaj-f897c638e5464c309d1ba97694e1a8ba2021-04-02T15:01:39ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012780101310.1051/matecconf/201927801013matecconf_icbmm2018_01013Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh WaveLiew Chi HoeLee Foo WeiLee Yee LingLim Ming HanIn the recent studies of concrete surface crack non-destructive test (NDT), the environmental factors are seldom to be taken into assessment consideration using Rayleigh wave (R-wave) propagation method. Dust, fine sand or water that accumulated in the concrete surface cracks might potentially affect the behaviour of R-wave when it propagated through the cracks. In this study, the effects of filling conditions in concrete surface crack to the properties of R-wave were examined. The targeted parameters that used for studying the behaviour of R-wave are the arrival time of R-wave and its corresponding amplitude. Numerical simulations were conducted for determining the changes of R-wave amplitudes and arrival time when it propagated through a concrete model with a surface crack which containing various filling conditions. Sand and charcoal powder were the materials used for filling the concrete cracks. The results of numerical simulations were then justified by experimental measurements. The comparison between the results of numerical simulation and experimental measurement generated a conclusion where R-wave arrival time and its corresponding amplitude is independent from the predefined filling conditions of concrete surface crack.https://www.matec-conferences.org/articles/matecconf/pdf/2019/27/matecconf_icbmm2018_01013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Liew Chi Hoe
Lee Foo Wei
Lee Yee Ling
Lim Ming Han
spellingShingle Liew Chi Hoe
Lee Foo Wei
Lee Yee Ling
Lim Ming Han
Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
MATEC Web of Conferences
author_facet Liew Chi Hoe
Lee Foo Wei
Lee Yee Ling
Lim Ming Han
author_sort Liew Chi Hoe
title Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
title_short Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
title_full Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
title_fullStr Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
title_full_unstemmed Behavioural Study of Concrete Surface Crack Filling Conditions on Surface Rayleigh Wave
title_sort behavioural study of concrete surface crack filling conditions on surface rayleigh wave
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description In the recent studies of concrete surface crack non-destructive test (NDT), the environmental factors are seldom to be taken into assessment consideration using Rayleigh wave (R-wave) propagation method. Dust, fine sand or water that accumulated in the concrete surface cracks might potentially affect the behaviour of R-wave when it propagated through the cracks. In this study, the effects of filling conditions in concrete surface crack to the properties of R-wave were examined. The targeted parameters that used for studying the behaviour of R-wave are the arrival time of R-wave and its corresponding amplitude. Numerical simulations were conducted for determining the changes of R-wave amplitudes and arrival time when it propagated through a concrete model with a surface crack which containing various filling conditions. Sand and charcoal powder were the materials used for filling the concrete cracks. The results of numerical simulations were then justified by experimental measurements. The comparison between the results of numerical simulation and experimental measurement generated a conclusion where R-wave arrival time and its corresponding amplitude is independent from the predefined filling conditions of concrete surface crack.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/27/matecconf_icbmm2018_01013.pdf
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