박사

프리스트레스트 중공슬래브의 복부전단강도

임주혁 2015년
논문상세정보
' 프리스트레스트 중공슬래브의 복부전단강도' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 복부전단강도
  • 복부전단강도 보강
  • 수평전단강도
  • 중공슬래브
  • 중공채움
  • 토핑콘크리트
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
56 0

0.0%

' 프리스트레스트 중공슬래브의 복부전단강도' 의 참고문헌

  • 콘크리트구조기준
    한국콘크리트학회 한국콘크리트학회, , pp. 118-121 [2012]
  • Yang, L., “Design of Prestressed Hollow-Core Slabs with Reference to Web-Shear Failure”, Journal of Structural Engineering 120, No. 9, 1994, pp. 2675-2696.
  • Walraven, J. C. and Mercx, W. P. M., “The Bearing Capacity of Prestressed Hollow-Core Slabs,” Heron, Vol. 28, No. 3, 1983, pp. 1-46.
  • Wallenfelsz, J. A., “Horizontal Shear Transfer for Full-Depth Precast Concrete Bridge Deck Panels,” Master Thesis, Virginia Polytechnic Institute and State University, 2006, 111 pp.
  • Ugural A. C. and Fenster S. K., Advanced strength and applied Elasticity, Prentice Hall Inc., NJ., 2003, 544 pp.
  • TNO Building AND Constructions Research, TNO Report: Standard Shear Tests on Prestressed Hollow Core Slabs according to EN 1168, TNO Building and Constructions Research, 2005.
  • Rahman M. K., Baluch M. H., Said M. K., and Shazali M. A., “Flexural and Shear Strength of Prestressed Precast Hollow-Core Slabs,” Arabian Journal for Science and Engineering, Vol. 32, No. 2, 2012, pp. 443-455.
  • Palmer, K. D. and Schultz, A. E., “Factors Affecting Web-shear Capacity of Deep Hollow-Core Units,” PCI Journal, Vol. 55, No. 2, 2010, pp. 123-146.
  • Palmer, K. D. and Schultz, A. E., “Experimental Investigation of the Web-Shear Strength of Deep Hollow-Core Units,” PCI Journal, Vol. 56, No. 3, 2011, pp. 83-104.
  • Pajari, M., “Web Shear Failure in Prestressed Hollow Core Slabs,” Journal of Structural Engineering, Vol. 42, No. 4, 2009, pp. 123-146.
  • Pajari, M., Resistance of Prestressed Hollow Core Slabs Against Web Shear Failure, Technical Research Centre of Finland (VTT), Research Notes 2292, 2005, 69 pp.
  • PCI Industry Hand Book Committee, PCI Design Handbook, 7 th ed., Precast/Prestressed Concrete Institute, 2010.
  • Nilson, A. H., Desing of Prestressed Concrete, 2 nd ed. John Wilet and Son Inc., 1987.
  • Nawy, E. G., P restressed Concrete : a Fundamental approach, 5 th ed. Prentice Hall, 2006.
  • Mones, R. M. and Brena, S. F., “Hollow-Core Slabs with Cast-In-Place Concrete Toppings: A Study of Interfacial Shear Strength,” PCI Journal, Vol. 58, No. 3, 2013, pp. 124-141.
  • Mattock, A. H. and Kaar, P. H., "Precast-Prestressed Concrete Bridges, 4 - Shear Tests of Continuous Girders," Journal of the PCA Research and Development Laboratories, Portland Cement Association, Vol. 3, No. 1, 1961, pp. 47-56.
  • Lubell, A. J., Sherwood, E. G., Bentz, E. C., and Collins, M. P., “Safe Shear Design of Large Wide Beams,” Concrete International, Vol. 26, No. 1, 2004, 66 pp.
  • Kim s. Elliott, “Multy-Story Precast Concrete Framed Structures ”, Blacjwell Science Ltd, 1996, 76 pp.
  • Kani, G. N. J., “How Safe Are Our Large Reinforced Concrete Beams,” ACI Journal, Proceedings, Vol. 64, No. 3, 1967, pp. 128-141.
  • Japan Society of Civil Engineers (JSCE), Standard Specification for Design and Concstruction of Concrete Structures, Part-1 Design, Concrete Library Special Publication, 1 st ed., 1986, 244 pp.
  • Japan Society of Civil Engineers (JSCE), Design and Concstruction of Concrete Structures, Part-1 Design, Concrete Library Special Publication, 1 st ed., 1986, 244 pp.
  • Im, J. H., Park, M. K., Lee, D. H., Kim, K. S., Seo, S. Y., and Jang, S. Y., “Effect of Effective Prestress on Shear Capacity of Hollow-Core Slab Units,” Advanced Science Letter, Accepted for Publication, 2012.
  • Hawkins, N. M. and Ghosh, S. K., “Shear Strength of Hollow-Core Slabs,” PCI Journal, Vol. 51, No. 1, 2006, pp. 110-114.
  • Hanson, N. W., “Precast-Prestressed Concrete Bridges 2. Horizontal Shear Connections,” Journal of the PCA Research and Development Laboratories, Vol. 2, No. 2, 1960, pp. 38-58.
  • HCS의 전단내력 및 토핑콘크리트와의 일체성 향상기 술
    서울시립대학교 삼성물산(주)건설부문 기술보고서, , 212 pp [2012]
  • HCS 전단 성능 실험
    한양대학교 삼성물산(주)건설부문 기술보고서, , 190 pp [2013]
  • Gohnert, M., “Horizontal Shear Transfer Across a Roughened Surface,” Cement & Concrete Composites, Vol. 25, No. 3, 2003, pp. 379-385.
  • FIP Recommendations, Precast prestressed hollow core floors, FIP, 1988.
  • European Committee for Standardization (CEN), Eurocode 2: Design of Concrete Structure. Part 1-1: General Rules and Rules for Buildings, EN 1992-1-1:2004, Brussels, 2004, 225 pp.
  • Dwairi, H., Rizkalla, S., and Kowalsky, M., “Shear Behavior of Concrete Beams Reinforced with MMFX Steel Without Web Reinforcement,” Constructed Facilities Laboratory, North Carolina State University, October 2005.
  • Djazmati, B. and Pincheira, J. A., “Shear Stiffness and Strength of Horizontal Construction Joints,” ACI Structural Journal, Vol. 101, No. 4, 2004, pp. 484-493.
  • Collins, M. P. and Mitchell, D., Prestressed Concrete Structures, Prentice Hall, 1991.
  • Celal, M. S., “Shear Behaviour of Precast/Prestressed Hollow-Core Slabs,” M. Sc. Thesis, Department of Civil Engineering, University of Manitoba, Winnipeg, Manitoba, 2011, 233 pp.
  • CEB-FIP, Model Code 2010, fib bulletin 55, 2010.
  • British Standard Institute, Structural Use of Concrete - Part 1 Code of Practice for Design and Construction, BS 8110-1:1997, London, 1997, 163 pp.
  • Bertagnoli, G. and Mancini, G., “Failure Analysis of Hollow-Core Slabs Tested in Shear,” Structural Concrete, Vol. 10, No. 3, 2009, pp. 139-152.
  • Becker, R. J. and Buettner, D. R., “Shear Tests of Extruded Hollow Core Slabs,” PCI Journal, Vol. 30, No. 2, 1985, pp. 40-54.
  • BSI British Standards. Code of practice for the structural use of concrete CP110: Part 1, BSI, London, 1972.
  • BSI British Standards. BS8110-1:1997 Structural use of concrete, BSI, London, 2002.
  • Aziz, R. J., “Shear Capacity of Concrete Prisms with Interface Joints,” Journal of Engineering, Vol. 16, No. 2, 2010, pp. 5084-5097.
  • Angelakos, D., Bentz, E. C., and Collins, M. P., “Effect of Concrete Strength and Minimum Stirrups on Shear Strength of Large Members,” ACI Structural Journal, Vol. 98, No. 3, 2001, pp. 290-300.
  • Anderson, A. R., "Composite Designs in Precast and Cast-in-Place Concrete," Progressive Architecture, Vol. 41, No. 9, 1960, pp. 172-179.
  • ACI COMMITTEE 318, Building code requirements for structural concrete (ACI 318-11) and commentary, American Concrete Committee, Farmington Hills, MI., 2011.
  • ACI COMMITTEE 318, Building code requirements for structural concrete (ACI 318-08) and commentary, American Concrete Committee, Farmington Hills, MI., 2008.
  • ACI COMMITTEE 318, Building code requirements for structural concrete (ACI 318-05) and commentary, American Concrete Committee, Farmington Hills, MI., 2005.
  • AASHTO LRFD, AASHTO LRFD Bridge Design Specifications, 4 th ed., American Association of State Highway and Transportation Officials, Washington, D.C., 2007.