Investigation into the Time-Dependent Crack Propagation Rate of Concrete

Author:

Song Jingxiang1,Gao Hongbo1,Zhu Ran23

Affiliation:

1. College of Civil Engineering and Architecture, Hainan University, Haikou 570228, China

2. Shanghai Construction Group Co., Ltd., Shanghai 200080, China

3. Shanghai Engineering Research Center of Mega Structure High Performance Concrete, Shanghai 201114, China

Abstract

Mass concrete structures under long-term loads are susceptible to time-dependent fractures, which pose a threat to their structural integrity and safety. In order to study the crack growth rate of concrete materials under long-term constant load, the data were processed according to the calculation method of fatigue crack growth rate. The relationship between the crack growth rate and strength factor in the stable growth stage was obtained using the Paris formula. The experimental data and theoretical analysis show that the time-dependent fracture curve CMOR(t)-t of the standard three-point bending beam specimens could be divided into three stages. The relationship between the crack propagation rate da/dt(t) in the second stage and the intensity factor K(t) could be well described by the Paris formula. The life of crack growth of a standard three-point curved beam is inversely proportional to the level of constant load. These conclusions can provide data support for further studies on crack extension life under long-term constant load.

Funder

the National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Materials Science

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