Ultrasound Transmission Tomography for Detecting and Measuring Cylindrical Objects Embedded in Concrete
Overview
Authors
Affiliations
This study explores the feasibility of using transmission tomographic images based on attenuation measures in transmission to detect and estimate the most common materials that are embedded in concrete, reinforcements and natural and artificial voids. A limited set of concrete specimens have been made in which cylindrical objects such as bars/tubes of steel, PVC and aluminium have been embedded to analyse the effect of size and material. The methodology and scope of this study is presented and numerical simulations are carried out to optimize the emitter-receiver configuration and to understand the complex physical propagation phenomena of ultrasonic signals that travel through concrete with embedded inclusions. Experimental tomographic images are obtained by using an ultrasonic tomographic system, which has the advantage of needing only two ultrasonic transducers. Both the software simulation tool and the tomographic inspection system are developed by the authors. The obtained results show that PVC tubes and steel bars of diameters higher than 19 mm and embedded in cylindrical specimens, can be detected and their sizes estimated using segmented tomographic images.
Aparicio Secanellas S, Gauna Leon I, Parrilla M, Acebes M, Ibanez A, de Matias Jimenez H Sensors (Basel). 2023; 23(5).
PMID: 36904889 PMC: 10007159. DOI: 10.3390/s23052684.
An Ultrasonic Tomography System for the Inspection of Columns in Architectural Heritage.
Aparicio Secanellas S, Liebana Gallego J, Anaya Catalan G, Martin Navarro R, Ortega Heras J, Garcia Izquierdo M Sensors (Basel). 2022; 22(17).
PMID: 36081108 PMC: 9460912. DOI: 10.3390/s22176646.
Kwon H, Joh C, Chin W Sensors (Basel). 2021; 21(19).
PMID: 34641000 PMC: 8512131. DOI: 10.3390/s21196681.
Imaging of Increasing Damage in Steel Plates Using Lamb Waves and Ultrasound Computed Tomography.
Zielinska M, Rucka M Materials (Basel). 2021; 14(17).
PMID: 34501202 PMC: 8434314. DOI: 10.3390/ma14175114.
Ultrasonic Time-of-Flight Computed Tomography for Investigation of Batch Crystallisation Processes.
Koulountzios P, Rymarczyk T, Soleimani M Sensors (Basel). 2021; 21(2).
PMID: 33477565 PMC: 7831116. DOI: 10.3390/s21020639.