An Rapid Assessment Method for Bearing Capacity of RC Girder Bridges Based on Residual Strain
- 1 China Communications Infrastructure Maintenance Group, Beijing, China
Abstract
In order to realize the in-situ evaluation of reinforced concrete bridges subjected to fatigue for a long time or after earthquake, an evaluation method for cumulative damage of concrete structures based on unloading elastic modulus was proposed. First, according to the concrete stress-strain curve and the statistical relationship between residual strain and cumulative strain, the calculation method of static equivalent strain and residual strain concrete based on unloading elastic modulus and the method for estimating the strength of concrete after damage were proposed. The detailed steps of field test and analysis and the practical damage indicators of residual strain were given. Then, the evaluation method of existing stress and strain of Reinforced Concrete Bridge under dead load and the concept of “equivalent dead load bending moment” were put forward. On this basis, the paper analyzed the root cause of the decrease of bearing capacity of Reinforced Concrete Bridge after fatigue damage, and pointed out that the equivalent strain or residual strain of reinforced concrete increases under the fatigue effect, which led to the decreasing of actual live moment and deformation performance while the ultimate load-carrying capacity remained constant or very little decrease. The evaluation method of structure residual capacity was given, and through comparative analysis of eight T reinforced concrete beams that had been in service for 35 years with the static failure tests, the effectiveness of the method was verified.
- Naaman, A.E. and Founas, M. (1991) Partially Prestressed Beams under Random-Amplitude Fatigue Loading. Journal of Structural Engineering , 117, 3742-3761. https://doi.org/10.1061/(ASCE)0733-9445(1991)117:12(3742)
- Special Group on Concrete Fatigue (1994) Study on Fatigue Reliability Checking Method of Concrete Beams. China Building Industry Press, Beijing.
- Zhong, M., Wang, H., Liu, Z., et al . (2005) Experimental Research of High-Strength on Concrete Beams Reinforced by High-Strength Bars under Static Loading and Fatigue Loading. Journal of Building Structures , 26, 94-100.
- Yu, Z., Li, J. and Song, L. (2012) Experimental Study on Fatigue Behaviors of Heavy-Haul Railway Bridges. China Civil Engineering Journal , 45, 115-126.
- Zhang, J., Peng, H., Zhang, K. and Hao, H. (2009) Test Study on Overload and Ultimate Behavior of Old Reinforced Concrete Bridge Through Destructive Test of Corroded Bridge. Engineering Mechanics , 26, 213-224.
- Yu, Z., Li, J. and Song, L. (2014) Experimental Study on Post-Cyclic-Loading Residual Static Bearing Capacity of Heavy-Haul Railway Bridge. Journal of the China Railway Society , 36, 76-85.
- Sun, X., Wang, H. and Huang, C. (2008) Experimental Investigation on Flexural Performance of Bridge Members under Overloading. Journal of Zhejiang University ( Engineering Science ), 42, 152-156, 163.
- Wang, C., Zhou, J., Wu, Q., et al . (2012) Fatigue Life and Existing Concrete Bridges. China Journal of Highway and Transport , No. 6, 101-107.
- Zhu, J. and Zhu, X. (2012) Study on Simplified Method for the Analysis of Fatigue Failure Process of RC Bridges. Engineering Mechanics , 29, 107-121.
- Wang, Q., Wei, J., Liu, X., et al . (2016) Equivalent Static Analysis Method for Fatigue Cumulative Damage Process of Reinforced Concrete Beam. Journal of Central South University ( Science and Technology ), 47, 247-253.
- Sinha, B.P., Gerstle, K.H. and Tulin, L.G. (1964) Stress-Strain Relations for Concrete under Cyclic Loading. Journal Proceedings , 61, 195-212. https://doi.org/10.14359/7775
- Holmen, J. (1982) Fatigue of Concrete by Constant and Variable Amplitude Loading. ACI Special Publication , 75, 71-110.
- Li, C., Song, Y. and Zhao, G. (2001) Study of Residual Strain of Concrete under Fatigue Loading. Journal of Dalian University of Technology , 41, 355-358.