Comparison between Destructive and Non-Destructive Test on Concrete
DOI:
https://doi.org/10.23918/eajse.v3i2p215Keywords:
Destructive Test (DT), Non-Destructive Test (NDT), Rebound Hammer Test, Compression Test, Ultrasonic Test, Compressive Strength of ConcreteAbstract
Compression strength is the most important factor in concrete structures, and there are two methods to evaluate that compressive strength, destructive and non-destructive method. This work presents a study on the deference and comparison between Destructive (compressive strength test) and a Non-Destructive Method (Rebound Hammer and Ultrasonic test) for testing the compressive strength of concrete.The investigations aimed to develop the method of assessment the strength of concrete of both non-destructive tests with greater accuracy. Destructive method, to determine the strength of the in-situ concrete, and also destructive testing (DT), includes methods where the material is broken down in order to determine its mechanical properties. From the obtained results it is observed that the Rebound Hammer readings increased with the compressive strength of concrete. And the Ultrasonic pulse velocity were greatly influenced by the cements and aggregate, extent of moist curing and presence of flaws and voids in concrete, more than their influence on the measured strengths. This demonstrates the limitation of using ultrasonic pulse velocity tests for estimating compressive strength of concrete. Combined use of Ultrasonic pulse velocity (UPV) and Rebound Hammer tests for assessment of concrete strength in structures with greater reliability.
References
Aguwamba, J.C., & Adagba, T, A. (2012). Comparative Analysis of the rebound Hammer and
Ultrasonic Pulse Velocity in Testing Concrete. Nigerian Journal of Technology, 31(1), 31-
39.
Cheesman, W. J., & Lislie, J. R. (1949). An ultrasonic method of studying deterioration and cracking
in concrete structures. Journal of American Concrete Institute, 46(l), 17-36.
Jones, R., & Gateld, E. N. (1960). Testing Concrete by Ultrasonic Pulse Velocity Technique, D. S.
I.R. ROAD Technical Paper No. 34, pp. 3-8.
Joshi, H. R. (2011). Earthquake and People, The Limelight, An ESGB Publication, IOE, Pulchowk
Campus, Katmandu, pp 1-2.
Kaplan, M.F. (1958). Compressive strength and ultrasonic pulse velocity relationships for concrete
in columns. ACI J., 29(54-37), 675.
Luke, M, S. (2012). Using the Rebound Hammer. Proceedings of the 11th Annual Mongolian
Concrete Conference, June 2012.
Samson, D., & Moses, O. T. (2014). Correlation between non-destructive testing (NDT) and
destructive testing (DT) of compressive strength of concrete. International Journal of
Engineering Science Invention, 3 (9), 12-17.
Whitehurst, E. A. (1966). Evaluation of Concrete Properties from Sonic Tests. ACI Monograph 2,
American Concrete Institute, Detroit, MI.
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Eurasian J. Sci. Eng is distributed under the terms of the Creative Commons Attribution License 4.0 (CC BY-4.0) https://creativecommons.org/licenses/by/4.0/