A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment

This paper develops a high-sensitivity flexible eddy current array (HS-FECA) sensor for crack monitoring of welded structures under varying environment. Firstly, effects of stress, temperature and crack on output signals of the traditional flexible eddy current array (FECA) sensor were investigated...

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Main Authors: Tao Chen, Yuting He, Jinqiang Du
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/6/1780
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spelling doaj-864d9f083e7041108ca9eb9ef699de072020-11-24T21:22:23ZengMDPI AGSensors1424-82202018-06-01186178010.3390/s18061780s18061780A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying EnvironmentTao Chen0Yuting He1Jinqiang Du2Aeronautic Engineering College, Air Force Engineering University, 1 Baling Road, Xi’an 710038, ChinaAeronautic Engineering College, Air Force Engineering University, 1 Baling Road, Xi’an 710038, ChinaAeronautic Engineering College, Air Force Engineering University, 1 Baling Road, Xi’an 710038, ChinaThis paper develops a high-sensitivity flexible eddy current array (HS-FECA) sensor for crack monitoring of welded structures under varying environment. Firstly, effects of stress, temperature and crack on output signals of the traditional flexible eddy current array (FECA) sensor were investigated by experiments that show both stress and temperature have great influences on the crack monitoring performance of the sensor. A 3-D finite element model was established using Comsol AC/DC module to analyze the perturbation effects of crack on eddy currents and output signals of the sensor, which showed perturbation effect of cracks on eddy currents is reduced by the current loop when crack propagates. Then, the HS-FECA sensor was proposed to boost the sensitivity to cracks. Simulation results show that perturbation effect of cracks on eddy currents excited by the HS-FECA sensor gradually grows stronger when the crack propagates, resulting in much higher sensitivity to cracks. Experimental result further shows that the sensitivity of the new sensor is at least 19 times that of the original one. In addition, both stress and temperature variations have little effect on signals of the new sensor.http://www.mdpi.com/1424-8220/18/6/1780flexible eddy current array sensorstructural health monitoringsensitivitycrack detectioneffects of stress and temperature variations
collection DOAJ
language English
format Article
sources DOAJ
author Tao Chen
Yuting He
Jinqiang Du
spellingShingle Tao Chen
Yuting He
Jinqiang Du
A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
Sensors
flexible eddy current array sensor
structural health monitoring
sensitivity
crack detection
effects of stress and temperature variations
author_facet Tao Chen
Yuting He
Jinqiang Du
author_sort Tao Chen
title A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
title_short A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
title_full A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
title_fullStr A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
title_full_unstemmed A High-Sensitivity Flexible Eddy Current Array Sensor for Crack Monitoring of Welded Structures under Varying Environment
title_sort high-sensitivity flexible eddy current array sensor for crack monitoring of welded structures under varying environment
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2018-06-01
description This paper develops a high-sensitivity flexible eddy current array (HS-FECA) sensor for crack monitoring of welded structures under varying environment. Firstly, effects of stress, temperature and crack on output signals of the traditional flexible eddy current array (FECA) sensor were investigated by experiments that show both stress and temperature have great influences on the crack monitoring performance of the sensor. A 3-D finite element model was established using Comsol AC/DC module to analyze the perturbation effects of crack on eddy currents and output signals of the sensor, which showed perturbation effect of cracks on eddy currents is reduced by the current loop when crack propagates. Then, the HS-FECA sensor was proposed to boost the sensitivity to cracks. Simulation results show that perturbation effect of cracks on eddy currents excited by the HS-FECA sensor gradually grows stronger when the crack propagates, resulting in much higher sensitivity to cracks. Experimental result further shows that the sensitivity of the new sensor is at least 19 times that of the original one. In addition, both stress and temperature variations have little effect on signals of the new sensor.
topic flexible eddy current array sensor
structural health monitoring
sensitivity
crack detection
effects of stress and temperature variations
url http://www.mdpi.com/1424-8220/18/6/1780
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