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      KCI등재 SCIE SCOPUS

      Numerical analyses of the force transfer in concrete-filled steel tube columns

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      https://www.riss.kr/link?id=A104815763

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      다국어 초록 (Multilingual Abstract)

      The interaction between steel tube and concrete core is the key issue for understanding the behavior of concrete-filled steel tube columns (CFTs). This study investigates the force transfer by natural bond or by mechanical shear connectors and the int...

      The interaction between steel tube and concrete core is the key issue for understanding the behavior of concrete-filled steel tube columns (CFTs). This study investigates the force transfer by natural bond or by mechanical shear connectors and the interaction between the steel tube and the concrete core under three types of loading. Two and three-dimensional nonlinear finite element models are developed to study the force transfer between steel tube and concrete core. The nonlinear finite element program ABAQUS is used. Material and geometric nonlinearities of concrete and steel are considered in the analysis. The damage plasticity model provided by ABAQUS is used to simulate the concrete material behavior. Comparisons between the finite element analyses and own experimental results are made to verify the finite element models. A good agreement is observed between the numerical and experimental results. Parametric studies using the numerical models are performed to investigate the effects of diameterto-thickness ratio, uniaxial compressive strength of concrete, length of shear connectors, and the tensile strength of shear connectors.

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      참고문헌 (Reference)

      1 Starossek, U, "The interaction of steel tube and concrete core in concrete-filled steel tube columns" 2008

      2 Falah,N, "The interaction of steel tube and concrete core in concrete-filled steel tube columns" 2008

      3 Johansson, M, "Stuctural behavior of circular composite columns under various means of load application" 2000

      4 Roeder, C.W, "Shear connector requirements for embedded steel sections" 125 (125): 142-152, 1999

      5 Shakir-Khalil,H, "Resistance of concrete-filled steel hollow tubes to pushout forces" 71 (71): 234-243, 1993

      6 Shakir-Khalil,H, "Push-out strength of concrete-filled steel hollow sections" 71 (71): 230-243, 1993

      7 Chen,W.F, "Plasticity in Reinforced Concrete" McGraw-Hill 1982

      8 Lee, J, "Plastic-damage model for cyclic loading of concrete structures" 124 (124): 892-900, 1998

      9 Bussler,T, "Numerische Untersuchungen zum Tragverhalten von Schubbolzen in Verbundstützen (Numerical investigations on the structural behavior of shear studs in composite columns)" Hamburg University of Technology 2007

      10 Starossek, U, "Numerical analyses of the force transfer in concrete-filled steel tube columns" 2008

      1 Starossek, U, "The interaction of steel tube and concrete core in concrete-filled steel tube columns" 2008

      2 Falah,N, "The interaction of steel tube and concrete core in concrete-filled steel tube columns" 2008

      3 Johansson, M, "Stuctural behavior of circular composite columns under various means of load application" 2000

      4 Roeder, C.W, "Shear connector requirements for embedded steel sections" 125 (125): 142-152, 1999

      5 Shakir-Khalil,H, "Resistance of concrete-filled steel hollow tubes to pushout forces" 71 (71): 234-243, 1993

      6 Shakir-Khalil,H, "Push-out strength of concrete-filled steel hollow sections" 71 (71): 230-243, 1993

      7 Chen,W.F, "Plasticity in Reinforced Concrete" McGraw-Hill 1982

      8 Lee, J, "Plastic-damage model for cyclic loading of concrete structures" 124 (124): 892-900, 1998

      9 Bussler,T, "Numerische Untersuchungen zum Tragverhalten von Schubbolzen in Verbundstützen (Numerical investigations on the structural behavior of shear studs in composite columns)" Hamburg University of Technology 2007

      10 Starossek, U, "Numerical analyses of the force transfer in concrete-filled steel tube columns" 2008

      11 Ellobody,E, "Nonlinear behavior of concrete-filled stainless steel stiffened slender tube columns" 45 (45): 259-273, 2007

      12 Hu, H.T, "Nonlinear analysis of axially loaded concrete-filled tube columns with confinement effect" 129 (129): 1322-1329, 2003

      13 Shams, M, "Non-linear behavior of concrete-filled steel tubular columns under axial and lateral loadings" 2000

      14 Starossek, U, "Force transfer in concrete-filled steel tube columns" 2008

      15 Begum, M, "Finite-element modeling of partially encased composite columns using the dynamic explicit method" 133 (133): 326-334, 2007

      16 Morishita, Y, "Experimental studies on bond strength in concrete-filled circular steel tubular columns subjected to axial loads" 1 : 351-358, 1979

      17 Mathias Johansson, "Composite action in connection regions of concrete-filled steel tube columns" 국제구조공학회 3 (3): 47-64, 2003

      18 Roeder, C.W, "Composite action in concrete-filled tubes" 125 (125): 477-484, 1999

      19 Shakir-Khalil,H, "Bond strength in hollow concrete-filled steel hollow sections" 1991

      20 Virdi, K.S, "Bond strength in concrete-filled steel tubes" 33 (33): 125-139, 1980

      21 Lam, D, "Behavior of head stud shear connectors in composite beam" 131 (131): 96-107, 2005

      22 Schneider,S.P, "Axially loaded concrete-filled steel tubes" 124 (124): 1125-1138, 1998

      23 HKS, "ABAQUS/Standard User’s Manual, Version 6.7, Hibbit" Karlsson & Sorensen, Inc 2007

      24 Lubliner, J., "A plastic-damaged model for concrete" 25 (25): 299-329, 1989

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      2021-12-01 평가 등재후보 탈락 (해외등재 학술지 평가)
      2020-12-01 평가 등재후보로 하락 (해외등재 학술지 평가) KCI등재후보
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      2007-04-09 학회명변경 한글명 : (사)국제구조공학회 -> 국제구조공학회 KCI등재
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      2005-06-16 학회명변경 영문명 : Ternational Association Of Structural Engineering And Mechanics -> International Association of Structural Engineering And Mechanics KCI등재
      2005-05-26 학술지명변경 한글명 : 국제구조계산역학지 -> Structural Engineering and Mechanics, An Int'l Journal KCI등재
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      2002-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      0.79 0.68 0.453 0.33
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