Chasing the Bubble: Ultrasonic Dispersion and Attenuation from Cement with Superabsorbent Polymers to Shampoo

Author:

Lefever Gerlinde,Ospitia NicolasORCID,Serafin Dorian,Hemelrijck Danny Van,Aggelis Dimitrios G.

Abstract

This study aims to experimentally investigate the ultrasonic behavior of fresh cement focusing on the contribution of the entrapped air bubbles. Frequency dispersion and attenuation carry delicate information that is not possible to gather by traditional ultrasonic pulse velocity. This is measured by simple indicators that quantify the frequency dependence of propagation velocity of longitudinal waves through fresh cementitious media. It seems that dispersion shows much stronger sensitivity to the microstructural processes, since the presence of superabsorbent polymers in mortar induces a large difference in dispersion parameters when compared to reference cement mortar, while only marginal difference in threshold-based pulse velocity. To reach this aim, references are taken from, and comparisons are made to other liquids in order first in order to validate the reliability of the methodology and to better understand the contribution of the cavities in the obtained dispersion and attenuation curves. Ultrasonic dispersion assessment of cementitious media has the potential to bring a lot of information on the microstructure of materials, as well as the ongoing processes.

Funder

Fonds Wetenschappelijk Onderzoek

Publisher

MDPI AG

Subject

General Materials Science

Reference26 articles.

1. The effects of age and water/cement ratio upon the relation between ultrasonic pulse velocity and compressive strength of concrete

2. Recent advances of ultrasonic testing of cement based materials at early ages

3. Ultrasonic Techniques for Determination and Monitoring Various Properties of Cementitious Materials at Early Ages;Gabrijel,2020

4. Acoustic Emission Characterization of Fresh Cement-Based Materials;Aggelis,2020

5. Assessment of Strength Development at Hardened Stage on High-Strength Concrete Using NDT

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2. Sensor Size Effect on Rayleigh Wave Velocity on Cementitious Surfaces;Sensors;2021-09-28

3. Ultrasonic dispersion and attenuation in bubbly liquids;Nondestructive Characterization and Monitoring of Advanced Materials, Aerospace, Civil Infrastructure, and Transportation XV;2021-03-22

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