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    KCI등재후보 SCIE SCOPUS

    Experimental and analytical investigation of high-strength concrete-filled steel tube square columns subjected to flexural loading

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    https://www.riss.kr/link?id=A104818757

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The concrete-filled steel tube (CFT) columns have several benefits of high load-bearing capacity, inherent ductility and toughness because of the confinement effect of the steel tube on concrete and the restraining effect of the concrete on local buckling of steel tube. However, the experimental research into the behavior of square CFT columns consisting of high-strength steel and high-strength concrete is limited. Six full scale CFT specimens were tested under flexural moment. The CFT columns consisted of high-strength steel tubes (fy = 325 MPa, 555 MPa, 900 MPa) and high-strength concrete (fck = 80 MPa and 120 MPa). The ultimate capacity of high strength square CFT columns was compared with AISC-LRFD design code. Also,this study was focused on investigating the effect of high-strength materials on the structural behavior and the mathematical models of the steel tube and concrete. Nonlinear fiber element analyses were conducted based on the material model considering the cyclic bending behavior of high-strength CFT members. The results obtained from the numerical analyses were compared with the experimental results. It was found that the numerical analysis results agree well with the experimental results.
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    The concrete-filled steel tube (CFT) columns have several benefits of high load-bearing capacity, inherent ductility and toughness because of the confinement effect of the steel tube on concrete and the restraining effect of the concrete on local buck...

    The concrete-filled steel tube (CFT) columns have several benefits of high load-bearing capacity, inherent ductility and toughness because of the confinement effect of the steel tube on concrete and the restraining effect of the concrete on local buckling of steel tube. However, the experimental research into the behavior of square CFT columns consisting of high-strength steel and high-strength concrete is limited. Six full scale CFT specimens were tested under flexural moment. The CFT columns consisted of high-strength steel tubes (fy = 325 MPa, 555 MPa, 900 MPa) and high-strength concrete (fck = 80 MPa and 120 MPa). The ultimate capacity of high strength square CFT columns was compared with AISC-LRFD design code. Also,this study was focused on investigating the effect of high-strength materials on the structural behavior and the mathematical models of the steel tube and concrete. Nonlinear fiber element analyses were conducted based on the material model considering the cyclic bending behavior of high-strength CFT members. The results obtained from the numerical analyses were compared with the experimental results. It was found that the numerical analysis results agree well with the experimental results.

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    참고문헌 (Reference)

    1 Liu D., "Ultimate capacity of high-strength rectangular concrete-filled steel hollow section stub columns" 59 (59): 1499-1515, 2003

    2 Mander JB, "Theoretical stress-strain model for confined concrete" 114 (114): 1807-1826, 1988

    3 Mursi M., "Strength of slender concrete filled high strength steel box columns" 60 (60): 1825-1848, 2004

    4 Uy B., "Strength of short concrete filled high strength steel box columns" 57 (57): 113-134, 2001

    5 Liang Q. Q., "Strength and ductility of high strength concrete-filled steel tubular beam-columns" 65 (65): 687-698, 2009

    6 Varma A. H., "Seismic behavior and design of high-strength square concrete-filled steel tube beam columns" 130 (130): 169-179, 2004

    7 Chung K. S., "Prediction of pre-and post-peak behavior of concrete-filled square steel tube columns under cyclic loads using fiber element method" 45 : 747-758, 2007

    8 Yamada S., "Post-buckling and deteriorating behavior of box-section steel members" 444 : 135-143, 1993

    9 Liang Q. Q., "Nonlinear analysis of concrete-filled thin-walled steel box columns with local buckling effects" 62 (62): 581-591, 2006

    10 Blanks, R. F., "Mass concrete tests in large cylinders" 31 : 280-303, 1935

    1 Liu D., "Ultimate capacity of high-strength rectangular concrete-filled steel hollow section stub columns" 59 (59): 1499-1515, 2003

    2 Mander JB, "Theoretical stress-strain model for confined concrete" 114 (114): 1807-1826, 1988

    3 Mursi M., "Strength of slender concrete filled high strength steel box columns" 60 (60): 1825-1848, 2004

    4 Uy B., "Strength of short concrete filled high strength steel box columns" 57 (57): 113-134, 2001

    5 Liang Q. Q., "Strength and ductility of high strength concrete-filled steel tubular beam-columns" 65 (65): 687-698, 2009

    6 Varma A. H., "Seismic behavior and design of high-strength square concrete-filled steel tube beam columns" 130 (130): 169-179, 2004

    7 Chung K. S., "Prediction of pre-and post-peak behavior of concrete-filled square steel tube columns under cyclic loads using fiber element method" 45 : 747-758, 2007

    8 Yamada S., "Post-buckling and deteriorating behavior of box-section steel members" 444 : 135-143, 1993

    9 Liang Q. Q., "Nonlinear analysis of concrete-filled thin-walled steel box columns with local buckling effects" 62 (62): 581-591, 2006

    10 Blanks, R. F., "Mass concrete tests in large cylinders" 31 : 280-303, 1935

    11 Leon R.F., "Limit state response of composite columns and beam-columns Part II : application of design provisions for the 2005 AISC specification" 2 : 1-46, 2008

    12 Varma A. H., "Experimental behavior of high strength square concrete-filled steel tube beam-columns" 128 (128): 309-318, 2002

    13 Han L. H., "Concrete-filled thin-walled steel SHS and RHS beam-columns subjected to cyclic loading" 41 (41): 801-833, 2003

    14 Liu D., "Behavior of eccentrically loaded high-strength rectangular concrete-filled steel tubular columns" 62 (62): 839-846, 2006

    15 Fujimoto T., "Behavior of eccentrically loaded concretefilled steel tubular columns" 130 : 203-212, 2004

    16 Mursi M., "Behavior and design of fabricated high strength steel columns subjected to biaxial bending. Part 2 : Analysis and design codes, International Journal of Advanced Steel Construction" 2 (2): 316-354, 2006

    17 Mursi M., "Behavior and design of fabricated high strength steel columns subjected to biaxial bending. Part 1 : Experiments, International Journal of Advanced Steel Construction" 2 (2): 286-315, 2006

    18 Liu D., "Axial load behavior of high-strength rectangular concrete-filled steel tubular stub columns" 43 (43): 1131-1142, 2005

    19 B. Uy, "Axial compressive strength of short steel and composite columns fabricated with high stength steel plate" 국제구조공학회 1 (1): 171-185, 2001

    20 Nakahara H., "Analytical model for axial compressive behavior of concrete filled square steel tubular columns" 20 : 171-178, 1998

    21 Zhang W., "Analytical and experimental studies into behavior of concrete-filled tubular columns" College of Engineering, Cincinnati Infrastructure Institute, University of Cincinnati 1997

    22 Hajjar J. F., "A distributed plasticity model for cyclic analysis of concrete-filled steel tube beam-columns and composite frames" 39 : 8-412, 1998

    23 Hajjar, J, F., "A distributed plasticity model for concrete-filled steel tube beam-columns with interlayer slip" 20 (20): 663-676, 1998

    24 Choi Y. H., ""Simplified P-M interaction curve for square steel tube filled with high-strength concrete"" 46 : 506-515, 2008

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    2021 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-12-01 등재 등재 탈락 (해외등재 학술지 평가)
    2013-10-01 등재 SCOPUS 등재 (등재유지) KCI등재
    2011-01-01 등재 등재후보학술지 유지 (기타) KCI등재후보
    2007-04-09 학회명변경 한글명 : (사)국제구조공학회 -> 국제구조공학회 KCI등재후보
    2005-09-23 학술지명변경 한글명 : 강합성 구조물에 대한 국제저널 -> Steel and Composite Structures, An International Journal KCI등재후보
    2005-09-22 학술지등록 한글명 : 강합성 구조물에 대한 국제저널
    외국어명 : Steel and Composite Structures, An International Journal
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    2005-06-16 학회명변경 영문명 : Ternational Association Of Structural Engineering And Mechanics -> International Association of Structural Engineering And Mechanics KCI등재후보
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