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http://dx.doi.org/10.4334/JKCI.2006.18.3.389

Strength Prediction Equations for High Strength Concrete by Schmidt Hammer Test  

Kwon, Young-Wung (Dept. of Architectural Engineering, University of Incheon)
Park, Song-Chul (Incheon Educational & Science Research Institute)
Kim, Min-Su (Hap Technological Group for Structural Safety)
Publication Information
Journal of the Korea Concrete Institute / v.18, no.3, 2006 , pp. 389-395 More about this Journal
Abstract
For the assessment of exsiting concrete structures, it is important to get the real strength of concrete. The load test or core test has many problems due to cost time, easiness, structural damage, and reliability and so on. Thus, various non-destructive test and statistical analysis techniques for strength assessment have been developed. As a result the real strength of concrete can be obtained by both direct and indirect test. In this study, a series of experimental tests of core strength and Schmidt hammer tests on 3, 7, 14, 28, 90, 180, 365, and 730 days' were done for predicting the compressive strength of high strength concrete with 65.0MPa of 28-days' strength. Each experimental results was analyzed by simple regression analysis. Then, reliability level and error rate between the proposed equations and the existing ones was examined. However, the application of the exsisting equations was inadequate to high strength concrete, because they were conducted under normal strength concrete. Therefore, the following compressive strength equations were proposed for predicting the compressive strength of high strength concrete by Schmidt hammer test. The proposed equations by Schmidt hammer test are as follows.
Keywords
high strength concrete; regression analysis; strength equation; Schmidt hammer test;
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