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Estimation of Concrete Cover Failure Time Considering the Corrosion Rate in Reinforced Concrete Structures

철근 부식속도 예측식을 이용한 철근 피복 파괴 시간 추정

  • 장봉석 (한국수자원공사 수자원연구원)
  • Published : 2006.04.30

Abstract

In lifetime estimation, the FEM analysis method is proposed for predicting corrosion failure time of concrete structures exposed to sea-water. This study shows that the corrosion rate of rebar in artificial pore solution can be transferred to the corrosion rate of rebar in concrete using the relationship between pore volume and concrete volume by Jennings' model. And this study considered the pitting corrosion effects of reinforcement bar on corrosion failure analysis, rebar size to cover depth and nonlinear crack analysis. These analysis results have good accordance with the experimental results of Williamson's work. This methodology can be applied to lifetime prediction procedure of reinforced concrete structures and also gives more reasonable results of concrete cover failure time estimation of reinforced concrete structures exposed to sea-water.

본 연구에서는 염해환경에 노출되어 있는 철근콘크리트 구조물의 수명예측에 있어서 철근덮개 파괴시간 예측을 위하여, 유한요소해석을 통한 방법을 제시하였다. 또한 본 연구에서는 인공세공용액중의 철근 부식속도로부터 콘크리트 중의 철근 부식속도를 유도하는 방법을 제시하였으며, 철근 부식의 분포에 따른 철근덮개의 파괴시간을 비교하여, 철근덮개 파괴시간을 합리적으로 예측하기 위한 방법을 제시하였다. 국부부식을 고려한 경우 균일한 부식을 가정한 경우보다 최대 약 40%정도 철근덮개 파괴시간이 짧아짐을 알 수 있다. 따라서, 철근덮개의 파괴시간 예측을 위한 유한요소해석에 있어서 국부부식을 고려하는 것이 합리적인 결과를 제시할 수 있을 것으로 사료된다.

Keywords

References

  1. Abdul-Hamid, Al-Tayyib, and J., Khan, M.S., 'Corrosion Rate Measurements of Reinforcing Steel in Concrete by Electrochemical Techniques', ACI Materials Journal, 1988, pp.172-177
  2. C. Andrade and C. Alonso, 'Corrosion Rate Monitoring in the Laboratory and On-site', Construction and Building Materials, Vol.10, No.5, 1996, pp.315-328 https://doi.org/10.1016/0950-0618(95)00044-5
  3. C. Andrade and C. Alonso, 'On-site Mesurements of Corrosion Rate of Concretes', Construction and Building Materials, Vol.15, 2001, pp.141-145 https://doi.org/10.1016/S0950-0618(00)00063-5
  4. E.J. Hansen and V.E. Saouma, ''Numerical Simulation of Reinforced Concrete Deterioration-Part II: Steel Corrosion and Concrete Cracking,' ACI Materials Journal, Vol.93, No.3, 1999, pp.331-338
  5. G. J. Verbeck, 'Mechanism of Corrosion of Steel in Concrete', ACI-SP49, 1975, pp.21-38
  6. J. A. Gonzalez, C. Andrade, C. Alonso, and S. Feliu, 'Comparison of rates of general corrosion and maximum pitting penetration on concrete embedded steel reinforcement', Cement and Concrete Research, Vol.25, Issue2, February 1995, pp. 257-264 https://doi.org/10.1016/0008-8846(95)00006-2
  7. H. J. Dagher and S. Kulendran, 'Finite Element Modeling of Corrosion Damage in Concrete Structures', ACI Materials Journal, Vol.89, No.6, 1992, pp.699-708
  8. H. M. Jennings and P. D. Tennis, 'Model for Developing Microstructures in Portland Cement Paste', J. Am. Ceram. Soc., Vol.77, No.12, 1994, pp.3161-3172 https://doi.org/10.1111/j.1151-2916.1994.tb04565.x
  9. Jones, D.A., Principles and Preventions of Corrosion, 2nd Ed., Prentice Hall International Limited, London., 1997
  10. Lambert, P. and Page, C. L., 'Investigations of Reinforcement Corrosion. 2. Electrochemical Monitoring of Steel in Chloride-Contaminated Concrete', Materials and Structures, Research and Testing(Rilem Paris), Vol.24, 1991, pp.351-358 https://doi.org/10.1007/BF02472068
  11. Liu, Y. and Weyer, R. E., 'Modelling of Time-to-Corrosion Cracking in Chloride Contaminated Reinforced Concrete Structures', ACI Materials Journal, Nov.-Dec., 1998, pp.675-681
  12. N.S. Berke, V. Chaker, and D. Whiting, Corrosion Rates of Steel in Concrete, ASTM, STP1065, 1990
  13. Schiessl, P., Corrosion of Steel in Concrete, Report of Rilem Report Technical Committee 60-CSC, Rilem Chapman & Hall, London. 1988
  14. S. J. Williamson and L. A. Clark, 'Pressure Required to Cause Cover Cracking of Concrete Due to Reinforcement Corrosion', Magazine of Concrete research, Vol.52, No.6, 2000, pp.455-467 https://doi.org/10.1680/macr.2000.52.6.455
  15. Tuutti, K, 'Service Life of Structures with Regard to Corrosion of Embedded Steel', Performance of Concrete in Marine Environment, SP-65, Journal of American Concrete Institute, Detroit, 1980, pp.223-236
  16. Tuutti, K., Corrosion of Steel in Concrete, Swedish Cement and Concrete Research Institute, Stockholm 1982
  17. DIANA User's Manuals-Release 7, TNO Building and Construction Research, August 1998
  18. 장봉석, '염소이온 확산에 미치는 철근의 영향과 비선형 부식분포를 고려한 철근콘크리트 구조물의 사용수명 추정방법', 서울대학교 박사학위 논문, 2001
  19. 오병환, 장봉석, '비선형 부식분포를 고려한 철근덮개 파괴해석' 한국콘크리트학회 가을학술발표논문집, 2001, pp.1041 -1044
  20. 오병환, 김기현, 장봉석, '촉진 철근 부식 방법을 이용한 부식팽창압력과 철근 덮개파괴 실험 및 해석연구', 한국구조물진단학회 가을 학술발표회 논문집, 한국구조물진단학회, 2001, pp.43-46