Determination of Concrete Strength Based on the Double-Hole Shear In Situ Test

Author:

Zhu Wen Li1

Affiliation:

1. Xi'an University of Architecture and Technology

Abstract

The determination of concrete strength in situ plays a critical role in the quality of structural engineering analysis and acceptance. The strength is usually determined through pure tension tests, like the common pull off test. However, in most applications, the shear strength is more interested. A novel approach, that is instrumented double-hole shear test, was presented for determining the strength of concrete. Drill two holes at two sides of measured concrete area, and the indentor is loaded from one hole in giving shear failure. Then, determine the strength of concrete according to the maximum shear stress when its destroyed. Conduct the double-hole shear test and the cubic compresion strength test on the different strength of concrete specimens and establish the correlations between the two strength values. The results show that the ratio of the two strength values is in the range from 0.085 to 0.351, which depends on the concrete strength.And the two strength values have a good linear relationship so it can provide a new method which can easily and reliably determine the concrete strength in situ.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

1. B. BARR, E. B. D. HASSO: Development of a compact cylindrical shear test specimen[J]. Journal of materials science letters 5(1986) :P. 1305-1308.

2. F.G. COLLINS,H. ROPER: Evaluation of concrete spall repairs by pullout test[J]. Materials and Structures, 1989, 22:P. 280-286.

3. Shisheng Shi: Shear strength, modulus of rigidity and young's modulus of concrete[J]. China civil engineering journal, 1999, 4(2):P. 47-52 (In Chinese).

4. JGJ/T 23-2001, Specification for Inspection of Concrete Compressive Strength by Rebound Method [S] (In Chinese).

5. Huizhen Lian: Questioned rebound method to measure the compressive strength of concrete, [J] Concrete, 2007. (9) :P. 1-5 (In Chinese).

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