Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending

A major inhibition to the widespread use of laminate structures is the inability of nondestructive testing techniques to effectively evaluate the bondline integrity. This work proposes and analyzes a bondline-integrity health monitoring approach utilizing shear-mode (d15) piezoelectric transducers....

Full description

Bibliographic Details
Main Authors: Hussain Altammar, Anoop Dhingra, Nathan Salowitz
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Actuators
Subjects:
Online Access:https://www.mdpi.com/2076-0825/8/4/70
id doaj-baa6c0fac6504844af1bfcf56b2ebdbb
record_format Article
spelling doaj-baa6c0fac6504844af1bfcf56b2ebdbb2020-11-25T00:57:57ZengMDPI AGActuators2076-08252019-09-01847010.3390/act8040070act8040070Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point BendingHussain Altammar0Anoop Dhingra1Nathan Salowitz2Department of Engineering, University of Jamestown, Jamestown, ND 58405, USAMechanical Engineering Department, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, USAMechanical Engineering Department, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, USAA major inhibition to the widespread use of laminate structures is the inability of nondestructive testing techniques to effectively evaluate the bondline integrity. This work proposes and analyzes a bondline-integrity health monitoring approach utilizing shear-mode (d15) piezoelectric transducers. The d15 transducers were embedded in the bondlines of symmetric laminate structures to monitor and evaluate the bondline integrity using ultrasonic inspection. The d15 piezoelectric transducers made of lead zirconate titanate (PZT) enabled ultrasonic inspection of bonds by actuating and sensing antisymmetric waves in laminate structures. Design considerations, fabrication process, and experimental methods for testing a laminate specimen are presented. Designs included bondline-embedded d15 PZT piezoelectric transducers with surface-mounted transverse (d31) piezoelectric transducers for signal comparison. Defects in the bondline were created by a quasi-static three-point bending test, with results showing the ability of d15 piezoelectric transducers to detect bondline damage. Two damage indices based on Pearson correlation coefficient and normalized signal energy were implemented to evaluate the presence of damage and its severity. The experimental results demonstrate the ability of bondline-embedded d15 piezoelectric transducers to be used as actuators and sensors for ultrasonic health monitoring of bondline integrity. A comparison between surface-mounted d31 PZT and bondline-embedded d15 PZT sensors was also conducted. It was seen that signals sensed by bondline-embedded d15 PZTs showed higher distortion due to bondline defects compared with the sensed signals from the surface-mounted d31 PZT.https://www.mdpi.com/2076-0825/8/4/70shear-mode piezoelectric transducersantisymmetric waveslaminate structuresstructural health monitoring
collection DOAJ
language English
format Article
sources DOAJ
author Hussain Altammar
Anoop Dhingra
Nathan Salowitz
spellingShingle Hussain Altammar
Anoop Dhingra
Nathan Salowitz
Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
Actuators
shear-mode piezoelectric transducers
antisymmetric waves
laminate structures
structural health monitoring
author_facet Hussain Altammar
Anoop Dhingra
Nathan Salowitz
author_sort Hussain Altammar
title Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
title_short Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
title_full Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
title_fullStr Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
title_full_unstemmed Damage Detection Using d15 Piezoelectric Sensors in a Laminate Beam Undergoing Three-Point Bending
title_sort damage detection using d15 piezoelectric sensors in a laminate beam undergoing three-point bending
publisher MDPI AG
series Actuators
issn 2076-0825
publishDate 2019-09-01
description A major inhibition to the widespread use of laminate structures is the inability of nondestructive testing techniques to effectively evaluate the bondline integrity. This work proposes and analyzes a bondline-integrity health monitoring approach utilizing shear-mode (d15) piezoelectric transducers. The d15 transducers were embedded in the bondlines of symmetric laminate structures to monitor and evaluate the bondline integrity using ultrasonic inspection. The d15 piezoelectric transducers made of lead zirconate titanate (PZT) enabled ultrasonic inspection of bonds by actuating and sensing antisymmetric waves in laminate structures. Design considerations, fabrication process, and experimental methods for testing a laminate specimen are presented. Designs included bondline-embedded d15 PZT piezoelectric transducers with surface-mounted transverse (d31) piezoelectric transducers for signal comparison. Defects in the bondline were created by a quasi-static three-point bending test, with results showing the ability of d15 piezoelectric transducers to detect bondline damage. Two damage indices based on Pearson correlation coefficient and normalized signal energy were implemented to evaluate the presence of damage and its severity. The experimental results demonstrate the ability of bondline-embedded d15 piezoelectric transducers to be used as actuators and sensors for ultrasonic health monitoring of bondline integrity. A comparison between surface-mounted d31 PZT and bondline-embedded d15 PZT sensors was also conducted. It was seen that signals sensed by bondline-embedded d15 PZTs showed higher distortion due to bondline defects compared with the sensed signals from the surface-mounted d31 PZT.
topic shear-mode piezoelectric transducers
antisymmetric waves
laminate structures
structural health monitoring
url https://www.mdpi.com/2076-0825/8/4/70
work_keys_str_mv AT hussainaltammar damagedetectionusingd15piezoelectricsensorsinalaminatebeamundergoingthreepointbending
AT anoopdhingra damagedetectionusingd15piezoelectricsensorsinalaminatebeamundergoingthreepointbending
AT nathansalowitz damagedetectionusingd15piezoelectricsensorsinalaminatebeamundergoingthreepointbending
_version_ 1725222095934193664