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An Experimental Study on Corrosion Behavior in Steel of Concrete Applied with Arc Metal Spray Method Surface Treatment Technology Using EIS

EIS를 이용한 아크 금속용사 표면처리기법이 적용된 강재의 콘크리트 내 부식 거동에 관한 실험적 연구

  • 윤창복 (한양대학교 대학원 건축시스템공학과) ;
  • 박장현 (한경대학교 한국미래융합기술연구원) ;
  • 이한승 (한양대학교 ERICA건축학부)
  • Received : 2020.04.20
  • Accepted : 2020.06.24
  • Published : 2020.06.30

Abstract

As an experimental study on the corrosion behavior of steel materials to which ATMS method using EIS was applied in concrete, immersion of Ca(OH)2 saturated aqueous solution and NaCl aqueous solution simulating the environment inside concrete The corrosion behavior was tested. The equivalent circuit was derived through the analysis of the Nyquist plot, and the interfacial resistance and the polarization resistance of the Ca(OH)2 aqueous solution were compared, and Al ATMS was the best interfacial resistance and Zn ATMS was the best polarization resistance. After burying ATMS steel material of cement mortar, the initial immersion impedance measurement value was the highest in the Zn ATMS test body in the impedance measurement by the immersion time by immersing it in the NaCl aqueous solution. Al ATMS test piece has the highest impedance and is highly reliable. This is because Al, which has a high ionization tendency, is continuously oxidized in a strong alkaline environment to form a film and protect the steel from permeation of chlorine ions.

EIS를 이용한 아크 금속용사 표면처리기법이 적용된 강재의 콘크리트 내 부식거동에 관한 실험적 연구로서 콘크리트 내부환경을 모사한 Ca(OH)2 포화수용액 침지 및, NaCl 수용액에서의 침지실험을 통해 부식거동을 실험하였다. Nyquist plot의 분석을 통하여 등가회로를 도출하였으며 Ca(OH)2 수용액에서의 계면저항과 분극저항을 비교한 결과 계면저항은 Al ATMS가 가장 우수하였으며 분극저항은 Zn ATMS가 가장 우수한 것으로 나타났다. 시멘트 모르타르에 금속용사 표면처리 된 강재를 매립후 NaCl 수용액에 침지하여 침지 시간에 따른 임피던스 측정에서는 초기 침지 임피던스 측정값은 Zn ATMS시험체가 가장 높았으나 침지 2주후에는 Al ATMS 시험체의 임피던스가 가장 높고 안정적으로 나타났다. 이는 이온화 경향이 높은 Al이 강알칼리 환경에서 지속적으로 산화하며 피막을 형성하였으며, 염소 이온의 침투로부터 강재를 보호하기 때문으로 판단된다.

Keywords

References

  1. WI, K. W., LEE, H. S. (2016), An experimental study on hydration properties of POFA as a cementitious mineral admixture. Journal of the Architectural Institute of Korea Structure & Construction, 32(7), 41-48. https://doi.org/10.5659/JAIK_SC.2016.32.7.41
  2. PAGE, C. L., and Treadaway, K. W. J. (1982), Aspects of the Electrochemistry of Steel in Concrete, Nature, 297, 109-115. https://doi.org/10.1038/297109a0
  3. Kitamura, (1997). Corrosion prevention technology-Corrosion basics and corrosion prevention, Jinjinshokan.
  4. Kang. (1986), Corrosion of Steel in Concrete, The Korean Istitute of Metals and Materials, 24(5), 622-626
  5. H. S. Lee (2001), Development for finishing method of concrete structures applying metal spraying system, Korea Concrete Institute Proceedings of the symposium, 13(2), 1225-1228
  6. Walter, G.W. (1986), A Review of Impedance Plot Methods Used for Corrosion Performance Analysis Of Painted Metals, Corrosion Science, 26(9), 681-703 https://doi.org/10.1016/0010-938X(86)90033-8
  7. Walter, G.W. (1991), The application of impedance spectroscopy to study the uptake of sodium chloride solution in painted metals, Corrosion Science, 32(10), 1041-1058 https://doi.org/10.1016/0010-938X(91)90093-5
  8. Broomfield, J. P. (1997), Corrosion of Steel in Concrete: Understanding, Investigation and Repair, E&FN, London.ASCE., 115(11), 1521-1542.
  9. Song, Y. G., and Kim, H. J., (1993), Electrochemical Behaviour of Surface Treated Steel Sheets applied by A . C . Impedance Technique, The Korean Istitute of Metals and Materials, 31(5), 658-665
  10. Ryu, H.S., Jung., D. G., and Lee, Han, Seung., (2014). Corrosion Protection of Steel by Applying a Zn-Sn Metal Spray System. The Korea Institute of Building Construction, 14(6), 505-513. https://doi.org/10.5345/JKIBC.2014.14.6.505
  11. Yoon, S.H., Choi, H. S., Kim, D. G., Kim, B. H., and Cho, S. W., (2014) Analysis on Spray Pattern of Airless Tip for Heavy Duty Coating Using Particle Image Velocimetry, Journal of Ocean Engineering and Technology, 28(2), 2014.4, 177-184. https://doi.org/10.5574/KSOE.2014.28.2.177
  12. Lee, S. M., and Lee, H. S. (2005). An experimental study on the electromagnetic shielding efficiency of concrete applying metal spraying finishing method. Achitectural Institute of Korea, 25(1), 225-228
  13. Lee, C. T. (2001), Ecological Chromium Plating by Trivalent Chromium, Journal of the Korean Industrial and Engineering Chemistry, 12(8) 831-840