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Updated: Jul 16, 2026

A Stable Phantom Material for Optical and Acoustic Imaging
Published on: June 16, 2023
An ultrasonic theoretical and experimental approach to determine thickness and wave speed in layered media
Ana Valéria Greco de Sousa1, Wagner Coelho de Albuquerque Pereira, João Carlos Machado
1Brazilian Navy--Directory of Weapons Systems, Rio de Janeiro, RJ, Brazil.
Abstract:
This work presents an ultrasonic method to characterize the layers of a stratified medium, using independent measurements of wave speed and thickness of each layer. The model, based on geometrical acoustics, includes refraction. Two transducers are used: one active (3.4 MHz) and a hydrophone as a receptor, which is moved laterally through 15 positions. The distance between the transducers and the delay between the echoes, from the interfaces separating the layers, received by them are used to estimate the speed and thickness. Three types of layered phantoms were used: Ph1 made with alcohol/acrylic, Ph2 made with polyvinyl chloride/water/acrylic, and Ph3 made with acrylic/water/polyvinyl chloride. The experimental results for speed of sound and layer thickness presented an experimental mean relative error, for thickness and wave speed, lower than 7.0% and 6.6%, respectively.
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