Damage detection of pipeline multiple cracks using piezoceramic transducers

To study the feasibility of detecting pipeline multi-cracks damage using piezoceramic transducers, the electromechanical impedance method and the stress wave based active sensing method were used respectively to perform the damage detection of pipeline with multi-cracks. In this research, the lead z...

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Main Authors: Guofeng Du, Linsheng Huo, Qingzhao Kong, Gangbing Song
Format: Article
Language:English
Published: JVE International 2016-08-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/17040
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spelling doaj-9fc3450ef2944f8e897eea8180e77b282020-11-24T21:56:46ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602016-08-011852828283810.21595/jve.2016.1704017040Damage detection of pipeline multiple cracks using piezoceramic transducersGuofeng Du0Linsheng Huo1Qingzhao Kong2Gangbing Song3School of Urban Construction, Yangtze University, Jingzhou, Hubei 434023, ChinaSchool of Civil Engineering, Dalian University of Technology, Dalian, Liaoning 116024, ChinaDepartment of Mechanical Engineering, University of Houston, Houston, TX 77204, USADepartment of Mechanical Engineering, University of Houston, Houston, TX 77204, USATo study the feasibility of detecting pipeline multi-cracks damage using piezoceramic transducers, the electromechanical impedance method and the stress wave based active sensing method were used respectively to perform the damage detection of pipeline with multi-cracks. In this research, the lead zirconate titanate (PZT) type transducers were used due to its strong piezoelectric effect and low cost. During the experiments, two artificial cracks on the pipeline specimen were created, ranging from 0 mm to 9 mm, and seven different operating conditions were generated for each artificial crack. In the monitoring test, for the electromechanical impedance method, the damage index based on Root Mean Square Deviation (RMSD) was used, and for the active sensing method, the damage index based on Wavelet Packet Energy Loss (WPEL) was used. In addition, the relationship between the crack depth and RMSD as well as the relationship between the crack depth and location and WPEL were analyzed. The results show that RMSD and WPEL indices increase with the increase of the depth of pipeline cracks. In addition, the WPEL index increases with the appearance of new cracks. Quantitative analysis of pipeline crack damage can be realized by electromechanical impedance method, and localization analysis on the pipeline multi-cracks damage can be achieved by stress wave method based on sensor arrays.https://www.jvejournals.com/article/17040piezoelectric ceramic patchelectromechanical impedancestress wavepipe crackdamage identification
collection DOAJ
language English
format Article
sources DOAJ
author Guofeng Du
Linsheng Huo
Qingzhao Kong
Gangbing Song
spellingShingle Guofeng Du
Linsheng Huo
Qingzhao Kong
Gangbing Song
Damage detection of pipeline multiple cracks using piezoceramic transducers
Journal of Vibroengineering
piezoelectric ceramic patch
electromechanical impedance
stress wave
pipe crack
damage identification
author_facet Guofeng Du
Linsheng Huo
Qingzhao Kong
Gangbing Song
author_sort Guofeng Du
title Damage detection of pipeline multiple cracks using piezoceramic transducers
title_short Damage detection of pipeline multiple cracks using piezoceramic transducers
title_full Damage detection of pipeline multiple cracks using piezoceramic transducers
title_fullStr Damage detection of pipeline multiple cracks using piezoceramic transducers
title_full_unstemmed Damage detection of pipeline multiple cracks using piezoceramic transducers
title_sort damage detection of pipeline multiple cracks using piezoceramic transducers
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2016-08-01
description To study the feasibility of detecting pipeline multi-cracks damage using piezoceramic transducers, the electromechanical impedance method and the stress wave based active sensing method were used respectively to perform the damage detection of pipeline with multi-cracks. In this research, the lead zirconate titanate (PZT) type transducers were used due to its strong piezoelectric effect and low cost. During the experiments, two artificial cracks on the pipeline specimen were created, ranging from 0 mm to 9 mm, and seven different operating conditions were generated for each artificial crack. In the monitoring test, for the electromechanical impedance method, the damage index based on Root Mean Square Deviation (RMSD) was used, and for the active sensing method, the damage index based on Wavelet Packet Energy Loss (WPEL) was used. In addition, the relationship between the crack depth and RMSD as well as the relationship between the crack depth and location and WPEL were analyzed. The results show that RMSD and WPEL indices increase with the increase of the depth of pipeline cracks. In addition, the WPEL index increases with the appearance of new cracks. Quantitative analysis of pipeline crack damage can be realized by electromechanical impedance method, and localization analysis on the pipeline multi-cracks damage can be achieved by stress wave method based on sensor arrays.
topic piezoelectric ceramic patch
electromechanical impedance
stress wave
pipe crack
damage identification
url https://www.jvejournals.com/article/17040
work_keys_str_mv AT guofengdu damagedetectionofpipelinemultiplecracksusingpiezoceramictransducers
AT linshenghuo damagedetectionofpipelinemultiplecracksusingpiezoceramictransducers
AT qingzhaokong damagedetectionofpipelinemultiplecracksusingpiezoceramictransducers
AT gangbingsong damagedetectionofpipelinemultiplecracksusingpiezoceramictransducers
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