DOI QR코드

DOI QR Code

Bond Strength Properties of CFRP Rebar in Concrete According to the Concrete Strength

콘크리트 강도에 따른 CFRP 보강근의 부착강도 특성

  • Kim, Ho-Jin (Department of Architectural Engineering, Mokwon University) ;
  • Kim, Ju-Sung (Department of Architectural Engineering, Mokwon University) ;
  • Kim, Young-Jin (Engineering Research Institute, Korea Concrete Institute) ;
  • Choi, Jung-Wook (Engineering Research Institute, Korea Concrete Institute) ;
  • Park, Sun-Gyu (Department of Architectural Engineering, Mokwon University)
  • 김호진 (목원대학교 건축공학과) ;
  • 김주성 (목원대학교 건축공학과) ;
  • 김영진 (한국콘크리트학회 공학연구소) ;
  • 최정욱 (한국콘크리트학회 공학연구소) ;
  • 박선규 (목원대학교 건축공학과)
  • Received : 2021.10.31
  • Accepted : 2021.11.10
  • Published : 2021.12.30

Abstract

CFRP(Carbon Fiber Reinforced Plastic) can maintain the same strength even if the diameter is reduced by about one - third, and the weight is about one - twentieth of that of the deformed reinforcing bars that have been used in the construction industry. In particular, it is resistant to corrosion, which is the weakest part of reinf orcing bars, and there is no concern that it will deteriorate over time, It is light and durable, so transportation costs are low and it is convenient for high-rise buildings. This paper experimentally clarifies the adhesive properties of CFRP and clarifies its behavior. That is, bond strength test was conducted with the directness of CFRP and the strength of concrete as experimental variables, and the bond mechanism was clarified experimentally. Furthermore, based on the experimental results, we constructed the bond stress-slip-strain relationship of CFRP compared to the existing deformed reinforcing bars.

현대 건설산업의 주 사용재료인 철근콘크리트는 철근과 콘크리트 사이의 부착이 용이하며, 두 부재간의 열팽창계수가 비슷하다는 장점을 가지고 있다. 하지만 철근은 각종 환경요인에 의하여 부식되는 단점을 가지고 있다. 철근 부식은 철근의 표면을 팽창시키게 되며, 콘크리트와의 부착응력에 영향을 주며 균열을 발생시키는 원인이 된다. 이러한 철근콘크리트의 단점을 보완하기 위하여 FRP 합성재료의 개발 연구가 진행되고 있다. FRP 합성재료는 높은 인장강도, 비부식성, 비 전자기성을 갖는 특징이 있다. 기존의 FRP 합성재료를 이용한 보강근은 현장에서 절단 및 구부리기가 용이하지 못하다는 단점을 가지고 있기 때문에 CFRP 보강근을 황용하는 연구가 진행되고 있다. CFRP 보강근 자체 인발시험, 부착응력, 묻힘길이 실험은 지속되어 왔지만 콘크리트 성능에 따른 부착특성에 관한 연구는 부족한 실정이다. 따라서 본 연구에서는 콘크리트 강도에 따른 CFRP 보강근의 부착특성 검토하기 위한 실험적 연구를 진행하였다. 그 결과, 콘크리트 강도에 따른 CFRP 부착특성은 물/시멘트비가 증가할수록 부착응력과 비교하여 미끌림 길이가 증가하는 것으로 나타났다. 또한 단위수량에 따른 CFRP 부착특성은 단위수량이 높아 질수록 부착응력이 약간 씩 감소하는 것을 알 수 있었다. 향후 CFRP 보강근의 부착강도 특성 분석에 있어서, 미끌림이 발생하지 않도록 CFRP 보강근의 최적의 묻힘 길이 등에 추가적인 연구가 필요한 것으로 판단된다.

Keywords

Acknowledgement

본 연구는 국토교통부/국토교통과학기술진흥원의 지원으로 수행되었음(과제번호 21CFRP-C163381-01).

References

  1. ASTM, C 234. (2006). Bond Strength of Concrete Develop with Reinforcing Steel, ASTM, 153-157.
  2. Barnes, R.A., Mays, G.C. (1999). Fatigue performance of concrete beams strengthened with CFRP plates, Journal of Composites for Construction, 3(2), 63-72. https://doi.org/10.1061/(ASCE)1090-0268(1999)3:2(63)
  3. Choi, D.W., Ha, S.S., Lee, C.H. (2007). Development length of GFRP rebars based on pullout test, Jounal of the Korea Concrete Institute, 19(3), 323-331 [in Korean]. https://doi.org/10.4334/JKCI.2007.19.3.323
  4. Choi, D.W., Ha, S.S., Lee, C.H. (2007). Development length of GFRP rebars based on pullout test, Journal of the Korea Concrete Institute, 19(3), 323-331 [in Korean]. https://doi.org/10.4334/JKCI.2007.19.3.323
  5. Choi, J.H., Park, K.C., Lee, Y.H., Kim, H.C., Lee, J.S. (2009). Experimental study in bond strength of AFRP rebar in normal strength concrete, Journal of the Earthquake Engineering Society of Korea, 13(1), 9-16 [in Korean]. https://doi.org/10.5000/EESK.2009.13.1.009
  6. Han, C.G., Hwang, Y.S., Lee, S.H., Kim, G.D. (2004). Properties of strength development of concrete at early age with water cement ratio and cement factor, Journal of the Architectural Institute of Korea Structure & Construction, 20(4), 72-79 [in Korean].
  7. Jung, J.S., Kim, B.H., Kim, I.S. (2014). A case study on choloride corrosion for the end zone of concrete deck subjected to de-icing salts added calcium chloride, Journal of the Korea Society of Safety, 29(6), 87-93 [in Korean]. https://doi.org/10.14346/JKOSOS.2014.29.6.087
  8. Jung, K.S., Park, K.T., Kim, B.C., Park, J.S. (2018). Comparisons of bond characteristics between FRP hybrid bars and deformed steel bars, Journal of the Korean Society for Advanced Composite Structures, 9(2), 37-42 [in Korean]. https://doi.org/10.11004/kosacs.2018.9.2.037
  9. Kang, S.T. (2013). Bond strength of steel fiber incorporated in ultra high performance fiber-reinforced concrete, Journal of the Korea Concrete Institute, 25(5), 547-554 [in Korean]. https://doi.org/10.4334/JKCI.2013.25.5.547
  10. Kim, J.K., Lee, C.S. (1995). A study on the fracture characteristics of crushed sand and river sand concrete, Journal of the Korea Concrete Institute, 7(4), 129-136 [in Korean].
  11. Ko, H.B. (2020) Verification of parameters influencing bond strength between fiber-reinforced polymer laminates and concrete, Korea Academy Industrial Cooperation Society, 21(9), 414-423 [in Korean].
  12. Lee, S.T., Park, K.P., Park, K.T., You, Y.J., Seo, D.W. (2019). A study on application of FRP hybrid bar to prevent corrosion of reinforcing bar in concrete structure, Journal of the Korea Academia-Industrial Cooperation Society, 20(5), 559-568 [in Korean]. https://doi.org/10.5762/KAIS.2019.20.5.559
  13. Lee, Y.H., Chou, J.H., Kim, H.C., Ki,, D.H., La, S.J. (2008). Experimental study on bond strength of CFRP reabar in concrete, Jounal of the Architectural Institute of Korea Structure a Construction, 24(11), 53-60 [in Korean].
  14. Okelo, R., Yuan, R.L. (2005). Bond strength of fiber reinforced polymer rebars in normal strength concrete, Journal of Composites for Construction, 9(3), 203-213. https://doi.org/10.1061/(ASCE)1090-0268(2005)9:3(203)
  15. Park, S.Y., Kim, S.T., Park, Y.H. (2019). Characteristics of bond behavior between CFRP rod and concrete with different surface treatment, Journal of the Korea Concrete Institute, 31(2), 59-60 [in Korean].
  16. Soo, Y.S. (2012). Bond strength of near surface-mounted FRP plate in RC member, Journal of the Korea Concrete Institute, 24(4), 415-422 [in Korean]. https://doi.org/10.4334/JKCI.2012.24.4.415
  17. Yang, J.M., Shin, H.O., Min, K.H., Yoon, Y.S. (2011). Flexural behavior of FRP bar reinforced HSC beams with different types of reinforcing bar and fiber, Journal of the Korea Concrete Institute, 23(3), 237-280 [in Korean].