DOI QR코드

DOI QR Code

Behavior Characteristics of PCM Infilled Floor System at Elevated Temperature

고온에 노출된 PCM 충진형 바닥 시스템의 거동 특성

  • Park, Min-Jae (Department of Civil Environmental and Architectural Engineering, Korea University) ;
  • Min, Jeong-Ki (Samcheock Real-scale Fire Testing & Research, Korea Conformity Laboratories) ;
  • Yoon, Sung-Won (School of Architecture, Seoul National University of Science and Technology) ;
  • Ju, Young K. (School of Civil Environmental and Architectural Engineering, Korea University)
  • 박민재 (고려대학교 건축사회환경공학과) ;
  • 민정기 (한국건설생활환경시험연구원 삼척실화재시험연구센터) ;
  • 윤성원 (서울과학기술대학교 건축학부) ;
  • 주영규 (고려대학교 건축사회환경공학부)
  • Received : 2016.11.30
  • Accepted : 2017.01.31
  • Published : 2017.06.15

Abstract

Composite Floor system infilled with PCM(Phase Change Material) between upper and lower steel plates was developed to apply the steel frame. When steel frames were applied this system, it can absolutely reduce the duration of construction due to dry construction method. However to apply this system as a structural floor member without fire resistance covering, it must have 2 hours fire resistance performance. Because PCM consisted of three quarters of section with thermal insulation performance, fire resistance performance of this floor system was expected to easily have 2 hours fire resistance performance. This paper was to investigate behavior characteristics of PCM infilled floor system at elevated temperature using FEM analysis to develop the fire resistance performance of it.

Keywords

References

  1. J.M. Ahn, S.W. Shin, "New Trend of Architectural Reinforced Concrete Structures", Journal of the Korea Concrete Institute, Vol.13, No.5, pp.32-39, 2001
  2. S.G. Hong, S.H. Kang, N.H. Kim, "The Development of New Concrete and the Freedom of Forms", Review of Architecture and Building Science, Vol.59, No.7, pp.30-34, 2015
  3. M.K. Ju, C.W. Park, "Characteristic Flexural Strength according to FRP Reinforced Sheet", Proceedings of the Korea Concrete Institute , Vol.28, No.1, pp.245-246, 2016
  4. J.H. Kim, "State-of-the-Art in Science and Technology of Advanced Cement-Based Materials", Magazine of the Korea Concrete Institute, Vol.21, No.3, pp.94-95, 2009
  5. T.S. Eom, S.W. Im, "Characteristics and Applicability of SM570TMC Steel for Building Structures", Review of Architecture and Building Sciences, Vol.50, No.12, pp.23-27, 2006
  6. E.T. Lee, "Present and Future of High Performance Structural Steel(SN)", Review of Architecture and Building Sciences, Vol.50, No.12, pp.18-22, 2006
  7. S.J. Kim, H.C. Jeong, "Development of Structural Steel and Trend of Welding Technology", Journal of Welding and Joining, Vol.34, No.1, pp.7-20, 2016 https://doi.org/10.5781/JWJ.2016.34.1.7
  8. T. Kamo, R. Ando, M. Sasaki, T. Suzuki, Y. Watanabe, "Ultra High Strength Steel for Sustainable Building Structures", NSSMC Technical Report, No. 10, pp.65-69, 2015
  9. Y.Y. Kim, J.H. Ryu, J.T. Oh, S.W. Yoon, Y.K. Ju, "Flexural Behavior of iFLASH System with No Blast Metal Cleaned Steel Plates", Vol.6, No.4, pp.30-37 https://doi.org/10.11004/kosacs.2015.6.4.030
  10. M.J. Park, "Blast Resistance of a Composite Panel with infilled Nano-Composite", Proceedings of 2nd World Congress and Exhibition on Construction & Steel Structure, 2016
  11. J.H. Lee, D.S. Lim, Y.K. Ju, S.W. Yoon, "Vibration Characteristics of iFLASH System", Journal of Korean Association for Spatial Structures, Vol.16, No.3, pp.89-97. https://doi.org/10.9712/KASS.2016.16.3.089
  12. M.J. Park, M.W. Park, Y.K. Ju,S.W. Yoon, "Numerical Prediction of Composite Slim Floor System infilled with Nano-Composite at Elevated Temperature", The 2nd International Symposium on Engineering and Applied Science, 2016
  13. M.J. Park, B.H. Do, S.W. Yoon, and Y.K. Ju, "Thermal Insulation Performance of Prefabricated Composite Slim floor System Infilled with Nano-Composite Using Heat Transfer Analysis", The 2nd International Symposium on Engineering and Applied Science, 2016
  14. M.J. Park, Y.Y. Kim, J.H. Ryu, J.S. Kim, B.H. Do, Y.K. Ju, "Application of iFLASH System for Nambuk Church", Proceedings of the Architectural Institute of Korea Symposium, Vol.35, No.2, pp.389-390, 2015
  15. KS F 2257-1, "Methods of Fire Resistance Test for Elements of Building Construction : General Requirements", Korea Agency for Technology and Standards (K), 2014
  16. KS F 2257-5, "Methods of Fire Resistance Test for Elements of Building Construction : Specific Requirements for Loadbearing Horizontal Separating Elements", Korea Agency for Technology and Standards (K), 2014