Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime

The mechanical characterization of a 4 × 4 air-coupled array of Piezoelectric Micromachined Ultrasonic Transducers (PMUTs) is presented. The experimental campaign consists of three set of experimental tests, namely: topography measurements, small signal dynamic measurements, and vibrometry in the no...

Full description

Bibliographic Details
Main Authors: Gianluca Massimino, Borka Lazarova, Fabio Quaglia, Alberto Corigliano
Format: Article
Language:English
Published: Taylor & Francis Group 2020-10-01
Series:International Journal of Smart and Nano Materials
Subjects:
Online Access:http://dx.doi.org/10.1080/19475411.2020.1834003
id doaj-86e49e0ecef54eabb52014ce5e572dc4
record_format Article
spelling doaj-86e49e0ecef54eabb52014ce5e572dc42020-12-17T14:55:54ZengTaylor & Francis GroupInternational Journal of Smart and Nano Materials1947-54111947-542X2020-10-0111438739910.1080/19475411.2020.18340031834003Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regimeGianluca Massimino0Borka Lazarova1Fabio Quaglia2Alberto Corigliano3Politecnico Di MilanoPolitecnico Di MilanoMEMS & Sensors Group STMicroelectronicsPolitecnico Di MilanoThe mechanical characterization of a 4 × 4 air-coupled array of Piezoelectric Micromachined Ultrasonic Transducers (PMUTs) is presented. The experimental campaign consists of three set of experimental tests, namely: topography measurements, small signal dynamic measurements, and vibrometry in the non-linear dynamic regime. The behavior of three different kinds of PMUT are reported. They differ according to the thermo-electrical treatment that has been applied to the piezoelectric material. The presence of the fabrication induced residual stresses is investigated and the treatment effect is evaluated in terms of the initial deflected configuration. The results reported in this paper represent an experimental mechanical investigation useful for the design of PMUT structures with advanced functionalities in the linear and non-linear regime.http://dx.doi.org/10.1080/19475411.2020.1834003acoustic-structure interactionarrayexperimental characterizationnon-linear dynamicspiezoelectric micromachined ultrasonic transducers (pmuts)ultrasound
collection DOAJ
language English
format Article
sources DOAJ
author Gianluca Massimino
Borka Lazarova
Fabio Quaglia
Alberto Corigliano
spellingShingle Gianluca Massimino
Borka Lazarova
Fabio Quaglia
Alberto Corigliano
Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
International Journal of Smart and Nano Materials
acoustic-structure interaction
array
experimental characterization
non-linear dynamics
piezoelectric micromachined ultrasonic transducers (pmuts)
ultrasound
author_facet Gianluca Massimino
Borka Lazarova
Fabio Quaglia
Alberto Corigliano
author_sort Gianluca Massimino
title Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
title_short Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
title_full Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
title_fullStr Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
title_full_unstemmed Air-coupled PMUTs array with residual stresses: experimental tests in the linear and non-linear dynamic regime
title_sort air-coupled pmuts array with residual stresses: experimental tests in the linear and non-linear dynamic regime
publisher Taylor & Francis Group
series International Journal of Smart and Nano Materials
issn 1947-5411
1947-542X
publishDate 2020-10-01
description The mechanical characterization of a 4 × 4 air-coupled array of Piezoelectric Micromachined Ultrasonic Transducers (PMUTs) is presented. The experimental campaign consists of three set of experimental tests, namely: topography measurements, small signal dynamic measurements, and vibrometry in the non-linear dynamic regime. The behavior of three different kinds of PMUT are reported. They differ according to the thermo-electrical treatment that has been applied to the piezoelectric material. The presence of the fabrication induced residual stresses is investigated and the treatment effect is evaluated in terms of the initial deflected configuration. The results reported in this paper represent an experimental mechanical investigation useful for the design of PMUT structures with advanced functionalities in the linear and non-linear regime.
topic acoustic-structure interaction
array
experimental characterization
non-linear dynamics
piezoelectric micromachined ultrasonic transducers (pmuts)
ultrasound
url http://dx.doi.org/10.1080/19475411.2020.1834003
work_keys_str_mv AT gianlucamassimino aircoupledpmutsarraywithresidualstressesexperimentaltestsinthelinearandnonlineardynamicregime
AT borkalazarova aircoupledpmutsarraywithresidualstressesexperimentaltestsinthelinearandnonlineardynamicregime
AT fabioquaglia aircoupledpmutsarraywithresidualstressesexperimentaltestsinthelinearandnonlineardynamicregime
AT albertocorigliano aircoupledpmutsarraywithresidualstressesexperimentaltestsinthelinearandnonlineardynamicregime
_version_ 1724379328513310720