Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement

Air-coupled ultrasonic probes require a special design approach and handling due to the significant mismatch to the air. Outer matching layers have to be soft so can be easily damaged and excitation voltages might cause the degradation of electrodes or bonding between the layers. Integrity inspectio...

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Main Authors: Linas Svilainis, Andrius Chaziachmetovas, Darius Kybartas, Tomas Gomez Alvarez-Arenas
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/24/7196
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spelling doaj-59a7f39fddf54e28a843bcbc51b3df662020-12-17T00:00:19ZengMDPI AGSensors1424-82202020-12-01207196719610.3390/s20247196Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast EnhancementLinas Svilainis0Andrius Chaziachmetovas1Darius Kybartas2Tomas Gomez Alvarez-Arenas3Department of Electronics Engineering, Kaunas University of Technology, LT-51368 Kaunas, LithuaniaDepartment of Electronics Engineering, Kaunas University of Technology, LT-51368 Kaunas, LithuaniaDepartment of Electronics Engineering, Kaunas University of Technology, LT-51368 Kaunas, LithuaniaInstituto de Tecnologias Físicas y de la Información, CSIC, 28006 Madrid, SpainAir-coupled ultrasonic probes require a special design approach and handling due to the significant mismatch to the air. Outer matching layers have to be soft so can be easily damaged and excitation voltages might cause the degradation of electrodes or bonding between the layers. Integrity inspection is desired during design, manufacturing, and exploitation. Spatial distribution of a transduction efficiency over piezoelement surface is proposed as a convenient means for the air-coupled probe integrity inspection. Focused transducer of similar center frequency is used to scan the surface of the inspected probe. However, such approach creates a challenge, i.e., area of the scanning beam is much smaller than the total receiving area of the inspected probe, therefore, contrast and imaging resolution are significantly degraded. Masking aperture made from cardboard and felt, placed at the focal point was proposed as solution. Far-range sidelobes were suppressed down to the noise floor (−50 dB) and the near-range sidelobes were reduced down to −17 dB. The proposed modification allows to use a similar frequency focused transducer. Probe integrity inspection can be carried out at significantly enhanced contrast and lateral resolution. Natural and artificial defects can be detected by the use of the proposed method.https://www.mdpi.com/1424-8220/20/24/7196ultrasound transducerair-coupled ultrasoundbeam sidelobesprobe characterizationfocused transducer
collection DOAJ
language English
format Article
sources DOAJ
author Linas Svilainis
Andrius Chaziachmetovas
Darius Kybartas
Tomas Gomez Alvarez-Arenas
spellingShingle Linas Svilainis
Andrius Chaziachmetovas
Darius Kybartas
Tomas Gomez Alvarez-Arenas
Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
Sensors
ultrasound transducer
air-coupled ultrasound
beam sidelobes
probe characterization
focused transducer
author_facet Linas Svilainis
Andrius Chaziachmetovas
Darius Kybartas
Tomas Gomez Alvarez-Arenas
author_sort Linas Svilainis
title Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
title_short Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
title_full Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
title_fullStr Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
title_full_unstemmed Air-Coupled Ultrasonic Probe Integrity Test Using a Focused Transducer with Similar Frequency and Limited Aperture for Contrast Enhancement
title_sort air-coupled ultrasonic probe integrity test using a focused transducer with similar frequency and limited aperture for contrast enhancement
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-12-01
description Air-coupled ultrasonic probes require a special design approach and handling due to the significant mismatch to the air. Outer matching layers have to be soft so can be easily damaged and excitation voltages might cause the degradation of electrodes or bonding between the layers. Integrity inspection is desired during design, manufacturing, and exploitation. Spatial distribution of a transduction efficiency over piezoelement surface is proposed as a convenient means for the air-coupled probe integrity inspection. Focused transducer of similar center frequency is used to scan the surface of the inspected probe. However, such approach creates a challenge, i.e., area of the scanning beam is much smaller than the total receiving area of the inspected probe, therefore, contrast and imaging resolution are significantly degraded. Masking aperture made from cardboard and felt, placed at the focal point was proposed as solution. Far-range sidelobes were suppressed down to the noise floor (−50 dB) and the near-range sidelobes were reduced down to −17 dB. The proposed modification allows to use a similar frequency focused transducer. Probe integrity inspection can be carried out at significantly enhanced contrast and lateral resolution. Natural and artificial defects can be detected by the use of the proposed method.
topic ultrasound transducer
air-coupled ultrasound
beam sidelobes
probe characterization
focused transducer
url https://www.mdpi.com/1424-8220/20/24/7196
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