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      KCI등재 SCIE SCOPUS

      Seismic behavior of rebar-penetrated joint between GCFST column and RGC beam

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      https://www.riss.kr/link?id=A104823907

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      다국어 초록 (Multilingual Abstract)

      The paper makes the experimental and finite-element-analysis investigation on the seismic behavior of the rebar-penetrated joint between gangue concrete filled steel tubular column and reinforced gangue concrete beam under low cyclic reversed loading....

      The paper makes the experimental and finite-element-analysis investigation on the seismic behavior of the rebar-penetrated joint between gangue concrete filled steel tubular column and reinforced gangue concrete beam under low cyclic reversed loading. Two specimens are designed and conducted for the experiment to study the seismic behavior of the rebar-penetrated joint under cyclic loading. Then, finite element analysis models of the rebar-penetrated joint are developed using ABAQUS 6.10 to serve as the complement of the experiment and further analyze the seismic behavior of the rebar-penetrated joint. Finite element analysis models are also verified by the experimental results. Finally, the hysteretic performance, the bearing capacity, the strength degradation, the rigidity degradation, the ductility and the energy dissipation of the rebar-penetrated joint are evaluated in detail to investigate the seismic behavior of the rebar-penetrated joint through experimental results and finite element analysis results. The research demonstrates that the rebar-penetrated joint between gangue concrete filled steel tubular column and reinforced gangue concrete beam, with full and spindle-shaped load-displacement hysteretic curves, shows generally the high ductility and the outstanding energy-dissipation capacity. As a result, the rebar-penetrated joint exhibits the excellent seismic performance and meets the earthquake-resistant requirements of the codes in China. The research provides some references and suggestions for the application of the rebar-penetrated joint in the projects.

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      참고문헌 (Reference)

      1 "Technical Specification for Concrete-Filled Steel Tubular Structures"

      2 Lu, X., "Static-Plastic Analysis on Seismic Performance of the Structure" China Building Industry Press 2009

      3 "Standard for Test Method of Mechanical Properties on Ordinary Concrete"

      4 "Specification of Testing Methods for Aseismic Property of Building" China Building Industry Press 1997

      5 Krawinkler, H., "Shear in beam-column joints in seismic design of steel frames" 15 (15): 82-91, 1978

      6 Tang, J., "Seismic design for connection in reinforced concrete frame" 3 : 011-, 1988

      7 Varma, A. H., "Seismic behavior and modeling of highstrength composite concrete-filled steel tube (CFT) beam-columns" 58 (58): 725-758, 2002

      8 Zhang, J., "Research on the stress-strain curves of structural lightweight aggregate concrete" 24 (24): 83-85, 2009

      9 Chen, J., "Research on the stiffness of concrete filled tubular column and steel beam joint with stiffening ring" 25 (25): 43-49, 2004

      10 Boger, R. K., "Non-Monotonic strain hardening and its constitutive representation" The Ohio State University 2006

      1 "Technical Specification for Concrete-Filled Steel Tubular Structures"

      2 Lu, X., "Static-Plastic Analysis on Seismic Performance of the Structure" China Building Industry Press 2009

      3 "Standard for Test Method of Mechanical Properties on Ordinary Concrete"

      4 "Specification of Testing Methods for Aseismic Property of Building" China Building Industry Press 1997

      5 Krawinkler, H., "Shear in beam-column joints in seismic design of steel frames" 15 (15): 82-91, 1978

      6 Tang, J., "Seismic design for connection in reinforced concrete frame" 3 : 011-, 1988

      7 Varma, A. H., "Seismic behavior and modeling of highstrength composite concrete-filled steel tube (CFT) beam-columns" 58 (58): 725-758, 2002

      8 Zhang, J., "Research on the stress-strain curves of structural lightweight aggregate concrete" 24 (24): 83-85, 2009

      9 Chen, J., "Research on the stiffness of concrete filled tubular column and steel beam joint with stiffening ring" 25 (25): 43-49, 2004

      10 Boger, R. K., "Non-Monotonic strain hardening and its constitutive representation" The Ohio State University 2006

      11 Han, L., "Modern Technique of Concrete Filled Tubular Structure" China Building Industry Press 2004

      12 Choi, S., "Modeling analytical moment-rotation curves of semi-rigid connections for CFT square columns and steel beams" 9 (9): 697-706, 2006

      13 "Metallic Materials--Tensile Testing at Ambient Temperature"

      14 U.S. Environment Protection Agency, "Green buidling basic information"

      15 Yu, T., "Finite element modeling of confined concrete-II:Plastic-damage model" 32 (32): 680-691, 2010

      16 Yao, G., "Finite element analysis on a new-type of concrete-filled steel tube column-RC beam joint" 27 (27): 34-38, 2010

      17 Li, G., "Finite element analysis of gangue concrete-filled steel tubular beam-columns" 26 (26): 1052-1057, 2010

      18 Hu, H., "Finite element analysis of CFT columns subjected to an axial compressive force and bending moment in combination" 61 (61): 1692-1712, 2005

      19 Li, G. C., "Finite analysis on performance of joint between gangue concrete filled steel tubular column with through rebar and gangue concrete beam under the monotonic loading" 204 : 3724-3730, 2012

      20 Yao, G., "Experimental study on seismic performance of a new-type of concrete-filled steel tube column-RC beam joint" 41 (41): 97-101, 2011

      21 Guo, J., "Experimental research on performances of concrete with coal gangue" 2011

      22 Sun, Y.X., "Development and design of coal gangue concrete filling material" 295 : 1198-1201, 2011

      23 Han, L., "Concrete-filled steel tubular structures − theory and practice" 6 : 003-, 2001

      24 Han, L., "Concrete-filled hollow structural steel columns after exposure to ISO-834 fire standard" 129 (129): 68-78, 2003

      25 Han, L., "Concrete Filled Steel Tubular Structures" Science Press 2000

      26 Zhong, S., "Concrete Filled Steel Tubular Structures" Tsinghua University Press 2003

      27 "Code for Seismic Design of Structures"

      28 "Code for Design of Steel Structures"

      29 "Code for Design of Concrete Structures"

      30 Fu, Z., "Behavior of lightweight aggregate concrete filled steel tubular slender columns under axial compression" 7 (7): 144-156, 2011

      31 Li, G., "Analysis of deflecting process of gangue concrete-filled steel tubular member under moment" 1 : 006-, 2003

      32 Sorenson, H. K., "ABAQUS version 6.4: Theory manual, users’ manual, verification manual and example problems manual"

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      2021 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2005-09-22 학술지등록 한글명 : 강합성 구조물에 대한 국제저널
      외국어명 : Steel and Composite Structures, An International Journal
      KCI등재후보
      2005-06-16 학회명변경 영문명 : Ternational Association Of Structural Engineering And Mechanics -> International Association of Structural Engineering And Mechanics KCI등재후보
      2002-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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