TECHNICAL PAPERS
May 15, 2003

Determination of Early Age Mortar and Concrete Strength by Ultrasonic Wave Reflections

Publication: Journal of Materials in Civil Engineering
Volume 15, Issue 3

Abstract

The in situ testing of early age concrete strength is crucial for determining the time of form removal from concrete elements, opening highways to traffic, or applying prestress to steel reinforcement. A nondestructive ultrasonic technique, which measures the reflection loss of ultrasonic transverse waves at a concrete-steel interface, is presented in this paper. The aim is to compare wave reflection measurements on mortar and concrete to strength. It is shown that the reflection loss is linearly related to the strength gain of mortar and concrete at early ages. The experiments have revealed a relationship between the homogeneity of the tested materials and the consistency of the reflection measurements. The repetition of simultaneous measurements of wave reflections and compressive strength on mortar results in similar strength-reflection loss relationships. Multiple measurements on the same concrete gave multiple strength-reflection loss relationships. The accuracy of the strength predictions made with the proposed method is discussed and compared to that of other nondestructive test methods.

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References

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Go to Journal of Materials in Civil Engineering
Journal of Materials in Civil Engineering
Volume 15Issue 3June 2003
Pages: 247 - 254

History

Received: Feb 20, 2002
Accepted: Jul 2, 2002
Published online: May 15, 2003
Published in print: Jun 2003

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Authors

Affiliations

Thomas Voigt
Diplom-Ingenieur, Research Associate, Center for Advanced Cement-Based Materials, Northwestern Univ., 2145 Sheridan Rd., Evanston, IL 60208 (corresponding author).
Yilmaz Akkaya
PhD, Research Associate, Center for Advanced Cement-Based Materials, Northwestern Univ., 2145 Sheridan Rd., Evanston, IL 60208; also at Istanbul Technical Univ., Civil Engineering Faculty, Maslak, 80626 Istanbul, Turkey.
Surendra P. Shah
Professor for Civil Engineering, Director of Center for Advanced Cement-Based Materials, Northwestern Univ., 2145 Sheridan Rd., Evanston, IL 60208.

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