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Influence of Inadequate Rebar Lap Position on Crack of Underground Box Slab

철근 겹침이음 위치 부적정이 지하박스 슬래브 균열 발생에 미치는 영향

  • 최정열 (동양대학교 건설공학과) ;
  • 장인수 (서울교통공사 토목2사업소) ;
  • 정지승 (동양대학교 건설공학과)
  • Received : 2020.03.02
  • Accepted : 2020.11.14
  • Published : 2020.11.30

Abstract

In this study, the experimental and analytical study were performed on the location of longitudinal cracks in the middle of underground box structures. The location where the longitudinal cracking occurred was investigated that the overlapping joint of the rebar and the section of maximum tensile stress generated. Using the finite element analysis, the strength reduction ratio of the rebar was estimated by lack of overlap joint length. As the result of adequacy investigation for the length of the overlap joint presented in the design criteria, it was analytically proved that the lack of the overlap joint length could be cause the decreasing cross-sectional force and concrete cracking. As the result of this study, the adequacy of the overlapping criterion in the current design criteria was confirmed based on the finite element analysis and actual field case. In the case of overlapping joints installed in inappropriate position, it was considered that a long term crack control would be need to ensure the sufficient safety factor for the designed cross-sectional force.

본 연구에서는 철근 겹침이음 위치가 부적정하게 시공된 사례를 바탕으로 콘크리트 구조기준에서 제시한 설치기준에 대하여 분석 및 고찰을 하였으며, 현행 구조기준에서 제시한 겹침이음에 대한 기준이 적정함을 해석적으로 입증하였다. 실제 종방향 균열이 발생된 지하 박스구조물 단면에 대한 철근 겹침이음부의 철근강도감소비 및 설계유효 모멘트를 산출하여 철근 겹침이음부의 균열 발생원인에 대하여 해석적으로 입증하였다. 연구결과, 최대 인장응력이 발생되는 지하 박스구조물 중앙부에 철근 겹침이음이 설치될 경우 철근 겹침이음부의 철근강도감소비는 82.8% 수준인 것으로 분석되었다. 따라서, 콘크리트 구조기준에서 정하고 있는 바와 같이 철근 겹침이음부의 위치는 최대 인장응력이 발생하는 지점을 피해야 하며, 부득이하게 겹침이음이 부적정한 위치에 설치되는 경우 본 연구에서 검토한 바와 같이 충분한 겹침이음길이를 확보하여야 하며, 구조물 단면력에 대하여 검토하여 충분한 안전율을 확보하는 것이 중장기적인 균열 제어 방법으로 적정할 것으로 검토되었다.

Keywords

References

  1. J.Y. Choi, H.S. Kim, K.S. Han, C.J. Jang, and J.S. Chung, "Damage Evaluation of Track Components for Sleeper Floating Track System in Urban Transit", The Journal of the Convergence on Culture Technology (JCCT), Vol. 5, No. 4, pp. 387-394, 2019 https://doi.org/10.17703/JCCT.2019.5.4.387
  2. J.Y. Choi, K.S. Han, J.G. Bong, C.J. Jang, and J.S. Chung, "Damage Status of Turnout System with Wooden Sleeper of Concrete Track on Urban Transit", The Journal of the Convergence on Culture Technology (JCCT), Vol. 5, No. 4, pp. 379-385, 2019 https://doi.org/10.17703/JCCT.2019.5.4.379
  3. Park, K., "A Study on Confirming and Protecting the Crack in Reinforced Concrete Structure", Master's thesis, Kyungil University, 2002
  4. Kim, S., "Comparison of Concrete Crack Width Based on Design Criteria", Master's thesis, Dongshin University, 2010
  5. Kim, H., "Crack Behavior of Reinforced Concrete Tension Member under Steel Corrosion after Cracking", Master's thesis, Hanyang University, 2008
  6. Park, H., "Control of Nonstructural Cracks in Reinforced Concrete Box Structures", Master's thesis, Yonsei University, 2000
  7. Korea Concrete Institute, 2012 Concrete Design Code and Commentary, Kimoondang, pp. 248-252
  8. Jang, I., "Effect of Inadequacy of Reinforcement Lap Splice Location on Crack Underground Box Slab", Master's thesis, Dongyang University, 2020
  9. Ministry of Land, Infrastructure, and Transport, Standard Concrete Specification, 2016
  10. C.N. Lee, "The Another Causes and Repair of Cracks in Reinforced Concrete slab", Architectural Institute of Korea, Vol. 44, No. 9, pp. 59-64, 2000