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      KCI등재 SCIE SCOPUS

      Residual static strength of cracked concrete-filled circular steel tubular (CFCST) T-joint

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      https://www.riss.kr/link?id=A104818080

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      다국어 초록 (Multilingual Abstract)

      Concrete-filled circular t steel tubular joints (CFSTJs) in practice are frequently subjected to fluctuated loadings caused by wind, earthquake and so on. As fatigue crack is sensitive to such cyclic loadings, assessment on performance of CFSTJs with crack-like defect attracts more concerns because both high stress concentration at the brace/chord intersection and welding residual stresses along weld toe cause the materials in the region around the intersection to be more brittle. Once crack initiates and propagates along the weld toe, tri-axial stresses in high gradient around the crack front exist, which may bring brittle fracture failure. Additionally, the stiffness and the load carrying capacity of the CFSTJs with crack may decrease due to the weakened connection at the intersection. To study the behaviour of CFSTJs with initial crack, experimental tests have been carried out on three full-scale CFCST T-joints with same configuration. The three specimens include one uncracked joint and two corresponding cracked joints. Load-displacement and load-deformation curves, failure mode and crack propagation are obtained from the experiment measurement. According to the experimental results, it can be found that he load carrying capacity of the cracked joints is decreased by more than 10% compared with the uncracked joint. The effect of crack depth on the load carrying capacity of CFCST T-joints seems to be slight. The failure mode of the cracked CFCST T-joints represents as plastic yielding rather than brittle fracture through experimental observation.
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      Concrete-filled circular t steel tubular joints (CFSTJs) in practice are frequently subjected to fluctuated loadings caused by wind, earthquake and so on. As fatigue crack is sensitive to such cyclic loadings, assessment on performance of CFSTJs with ...

      Concrete-filled circular t steel tubular joints (CFSTJs) in practice are frequently subjected to fluctuated loadings caused by wind, earthquake and so on. As fatigue crack is sensitive to such cyclic loadings, assessment on performance of CFSTJs with crack-like defect attracts more concerns because both high stress concentration at the brace/chord intersection and welding residual stresses along weld toe cause the materials in the region around the intersection to be more brittle. Once crack initiates and propagates along the weld toe, tri-axial stresses in high gradient around the crack front exist, which may bring brittle fracture failure. Additionally, the stiffness and the load carrying capacity of the CFSTJs with crack may decrease due to the weakened connection at the intersection. To study the behaviour of CFSTJs with initial crack, experimental tests have been carried out on three full-scale CFCST T-joints with same configuration. The three specimens include one uncracked joint and two corresponding cracked joints. Load-displacement and load-deformation curves, failure mode and crack propagation are obtained from the experiment measurement. According to the experimental results, it can be found that he load carrying capacity of the cracked joints is decreased by more than 10% compared with the uncracked joint. The effect of crack depth on the load carrying capacity of CFCST T-joints seems to be slight. The failure mode of the cracked CFCST T-joints represents as plastic yielding rather than brittle fracture through experimental observation.

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      참고문헌 (Reference)

      1 Lie, S. T., "Validation of BS7910:2005 failure assessment diagrams for cracked square hollow section T-, Y- and K-joints" 86 (86): 335-344, 2009

      2 Yang, Y. X., "The research of performance of tubular T-joints with fatigue crack" 13 (13): 42-46, 1992

      3 Zerbst, U., "The fracture behaviour of welded tubular joint-an ESIS TC1.3 round robin on failure assessment methods Part I: Experimental data base and brief summary of the results" 69 (69): 1093-1110, 2002

      4 Marshall, G.W., "The fracture behaviour of welded tubular joint-an ESIS TC1-3round robin on failure assessment methods Part II: R6 analysis" 69 (69): 1111-1118, 2002

      5 Burdekin, F. M., "The fracture behaviour of welded tubular joint-an ESIS TC1-3 round robin on failure assessment methods Part III-UK BS7910 methodology" 69 (69): 1119-1127, 2002

      6 Schindler, H. J., "The fracture behaviour of a welded tubular joint: An ESIS round robin on failure assessment methods Part V: Screening method by required toughness and plastic stability considerations" 69 (69): 1149-1160, 2002

      7 Zerbst, U., "The fracture behaviour of a welded tubular joint-an ESIS TC1.3 round robin on failure assessment methods Part VI: Application of WES 2805-1997" 69 (69): 1161-1169, 2002

      8 Zerbst, U., "The fracture behaviour of a welded tubular joint-an ESIS TC1-3 round robin on failure assessment methods Part IV: Application of the ETM 97/1" 69 (69): 1129-1148, 2002

      9 Song, S.Z., "Study on static strength of circular tubular T-joints with fatigue crack" 509-517, 2012

      10 Lie, S. T., "Static strength of cracked square hollow section T joints under axial loads. II: Numerical" 132 (132): 378-386, 2006

      1 Lie, S. T., "Validation of BS7910:2005 failure assessment diagrams for cracked square hollow section T-, Y- and K-joints" 86 (86): 335-344, 2009

      2 Yang, Y. X., "The research of performance of tubular T-joints with fatigue crack" 13 (13): 42-46, 1992

      3 Zerbst, U., "The fracture behaviour of welded tubular joint-an ESIS TC1.3 round robin on failure assessment methods Part I: Experimental data base and brief summary of the results" 69 (69): 1093-1110, 2002

      4 Marshall, G.W., "The fracture behaviour of welded tubular joint-an ESIS TC1-3round robin on failure assessment methods Part II: R6 analysis" 69 (69): 1111-1118, 2002

      5 Burdekin, F. M., "The fracture behaviour of welded tubular joint-an ESIS TC1-3 round robin on failure assessment methods Part III-UK BS7910 methodology" 69 (69): 1119-1127, 2002

      6 Schindler, H. J., "The fracture behaviour of a welded tubular joint: An ESIS round robin on failure assessment methods Part V: Screening method by required toughness and plastic stability considerations" 69 (69): 1149-1160, 2002

      7 Zerbst, U., "The fracture behaviour of a welded tubular joint-an ESIS TC1.3 round robin on failure assessment methods Part VI: Application of WES 2805-1997" 69 (69): 1161-1169, 2002

      8 Zerbst, U., "The fracture behaviour of a welded tubular joint-an ESIS TC1-3 round robin on failure assessment methods Part IV: Application of the ETM 97/1" 69 (69): 1129-1148, 2002

      9 Song, S.Z., "Study on static strength of circular tubular T-joints with fatigue crack" 509-517, 2012

      10 Lie, S. T., "Static strength of cracked square hollow section T joints under axial loads. II: Numerical" 132 (132): 378-386, 2006

      11 Lie, S. T., "Static strength of cracked square hollow section T joints under axial loads. I: Experimental" 132 (132): 368-377, 2006

      12 Lie, S. T., "Residual strength of cracked circular hollow section (CHS)tubular K-joints" 2007

      13 Talei-Faz, B., "Residual static strength of high strength steel cracked tubular joints" 17 (17): 291-309, 2004

      14 Lie, S. T., "Fracture assessment of damaged square hollow section (SHS) K-joint using BS7910:2005" 76 (76): 1303-1319, 2009

      15 Chiew, S. P., "Fatigue study of partially overlapped circular hollow section K-joints Part 2: Experimental study and validation of numerical models" 76 (76): 2408-2428, 2009

      16 Lee, C. K., "Fatigue study of partially overlapped circular hollow section K-joints Part 1: Geometrical models and mesh generation" 76 (76): 2445-2463, 2009

      17 Lie, S. T., "Fatigue performance of cracked tubular T joints under combined loads. II: Numerical" 130 (130): 572-581, 2004

      18 Chiew, S. P., "Fatigue performance of cracked tubular T joints under combined loads. I: Experimental" 130 (130): 562-571, 2004

      19 Lee, C. K., "Fatigue behaviors of square-to-square hollow section T-joint with corner crack. II: Numerical modeling" 74 (74): 721-738, 2007

      20 Chiew, S. P., "Fatigue behaviors of square-to-square hollow section T-joint with corner crack. I: Experimental studies" 74 (74): 703-720, 2007

      21 Yang, Z. M., "Failure assessment of cracked square hollow section T-joints" 84 (84): 244-255, 2007

      22 Chen, B.C., "Experimental study on ultimate bearing capacity of CFST directly-welded K-joints" 42 (42): 91-98, 2009

      23 CIDECT, "Design Guide for Circular and Rectangular Hollow Section Joints under Fatigue Loading"

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      연월일 이력구분 이력상세 등재구분
      2021 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-12-01 평가 등재 탈락 (해외등재 학술지 평가)
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      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
      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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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 3.1 2.02 2.67
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      2.37 2.24 0.935 0.37
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