Detecting the Defects in Concrete Components with Impact-Echo Method

Author:

Liu Jing1,Xie Jun1,He Xiao Yu1,He Yu Shan1,Zhong Jia Hui1

Affiliation:

1. Research Institute of Highway Ministry of Transport

Abstract

With the large-scale application of the prestressed concrete structure, the quality of the concrete component defects and pipeline grouting has increasingly become the focus of attention. The impact-echo scanner uses the nature of wave, which pass though different media at different velocities, to distinguish internal defects of concrete, pipe filling density and so on. In this paper, using the impact-echo method to detect the concrete block with prefabricated defects of shape, location, and size explores the effect of defect properties, parameter settings and detection environment to impact-echo preliminarily and also explores the relationship of pipeline filling status and impact-echo image. Based on this study, the article raised the problem met during this non-destructive testing methods applied to engineering, and accumulated a certain amount of available engineering data. The experiment results show that using the impact-echo method to identify the defects of concrete components and to test the quality of pipeline grouting is a more convenient and effective non-destructive testing method. Especially, with the radar method in the pipeline grouting quality inspection which complement each other to make up for the shortcomings the lightning wave in case of the metal medium total reflection phenomenon, cannot detect metal pipe grouting plumpness.

Publisher

Trans Tech Publications, Ltd.

Reference5 articles.

1. Stauffer, J. D., Woodward, C. B. 2005. Nonlinear ultrasonic testing with resonant and pulse velocity parameter for early damage in concrete. ACI Material Journal 102(2): 118-121.

2. Su H., Lin W. 2003. Impact-Echo Method and Its Application to Civil Engineering. Nondestructive Testing 26(3): 81-83.

3. Dong Q. 2005. A Review of Nondestructive Methods for Testing Concrete. Journal of Wuyi University(Natural Science Edition) 19(1): 53-59.

4. Peng Y. H., Song F. L. 2003. The Development and Application of the Technology about Concrete Nondestructive Testing. Journal Of Dalian Nationalities University 5(3): 52-54.

5. Popovics, J. S. 2003. Nondestructive evaluation: past, present, and future. Journal of materials in civilengineering 15 (3): 211-216.

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