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      Design models for predicting the resistance of headed studs in profiled sheeting

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      https://www.riss.kr/link?id=A108062729

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      다국어 초록 (Multilingual Abstract)

      This paper presents the results from reliability analyses of the current Eurocode 4 (EN 1994-1-1) and AISC 360-16 design models for predicting the resistance of headed stud shear connectors within profiled steel sheeting, when the ribs are oriented tr...

      This paper presents the results from reliability analyses of the current Eurocode 4 (EN 1994-1-1) and AISC 360-16 design models for predicting the resistance of headed stud shear connectors within profiled steel sheeting, when the ribs are oriented transverse to the supporting beam. For comparison purposes, the performance of the alternative “Luxembourg” and “Stuttgart” model were also considered. From an initial database of 611 push-out tests, 269 cases were included in the study, which ensured that the results were valid over a wide range of geometrical and material properties. It was found that the current EN 1994-1-1 design rules deliver a corrected partial safety factor γM * of around 2.0, which is significantly higher than the target value 1.25. Moreover, 179 tests fell within the domain of the concrete-related failure design equation. Notwithstanding this, the EN 1994-1-1 equations provide satisfactory results for re-entrant profiled sheeting. The AISC 360-16 design equation for steel failure covers 263 of the tests in the database and delivers γM *≈2.0. Conversely, whilst the alternative “Stuttgart” model provides an improvement over the current codes, only a corrected partial safety factor of γM *=1.47 is achieved. Finally, the alternative “Luxembourg” design model was found to deliver the required target value, with a corrected partial safety factor γM * between 1.21 and 1.28. Given the fact that the Luxembourg design model is the only model that achieved the target values required by EN 1990, it is recommended as a potential candidate for inclusion within the second generation of Eurocodes.

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      참고문헌 (Reference)

      1 fib, "fib Model Code for Concrete Structures 2010"

      2 Roik, K., "Zur Tragfähigkeit von Kopfbolzendübeln in Verbundträgern mit unterbrochener Verbundfuge(Trapezprofildecken)" 58 (58): 269-273, 1989

      3 Döinghaus, P., "Zum Zusammenwirken hochfester Baustoffe in Verbundträgern" RWHT Aachen University 2001

      4 Matthew J. Russell, "Vertical and horizontal push tests on specimens with a Trefoil decking profile" Elsevier BV 29 : 1096-1110, 2021

      5 Chapman, J. C., "The behaviour of composite beams in steel and concrete" 45 (45): 115-125, 1964

      6 Stephen J Hicks, "Stud Shear Connectors in Composite Beams that Support Slabs with Profiled Steel Sheeting" Informa UK Limited 24 (24): 246-253, 2014

      7 M.H. Shen, "Structural Behaviour of Stud Shear Connections with Solid and Composite Slabs Under Co-Existing Shear and Tension Forces" Elsevier BV 9 : 79-90, 2017

      8 S Ernst, "Strength of Headed Stud Shear Connection in Composite Beams" Informa UK Limited 7 (7): 111-121, 2007

      9 Hicks, S. J., "Strength and ductility of headed stud connectors welded in modern profiled steel sheeting" 85 (85): 32-38, 2007

      10 Stark, J. W. B., "Statistical analysis of push-out tests on stud connectors in composite steel and concrete structures" TNO Building and Construction Research 1991

      1 fib, "fib Model Code for Concrete Structures 2010"

      2 Roik, K., "Zur Tragfähigkeit von Kopfbolzendübeln in Verbundträgern mit unterbrochener Verbundfuge(Trapezprofildecken)" 58 (58): 269-273, 1989

      3 Döinghaus, P., "Zum Zusammenwirken hochfester Baustoffe in Verbundträgern" RWHT Aachen University 2001

      4 Matthew J. Russell, "Vertical and horizontal push tests on specimens with a Trefoil decking profile" Elsevier BV 29 : 1096-1110, 2021

      5 Chapman, J. C., "The behaviour of composite beams in steel and concrete" 45 (45): 115-125, 1964

      6 Stephen J Hicks, "Stud Shear Connectors in Composite Beams that Support Slabs with Profiled Steel Sheeting" Informa UK Limited 24 (24): 246-253, 2014

      7 M.H. Shen, "Structural Behaviour of Stud Shear Connections with Solid and Composite Slabs Under Co-Existing Shear and Tension Forces" Elsevier BV 9 : 79-90, 2017

      8 S Ernst, "Strength of Headed Stud Shear Connection in Composite Beams" Informa UK Limited 7 (7): 111-121, 2007

      9 Hicks, S. J., "Strength and ductility of headed stud connectors welded in modern profiled steel sheeting" 85 (85): 32-38, 2007

      10 Stark, J. W. B., "Statistical analysis of push-out tests on stud connectors in composite steel and concrete structures" TNO Building and Construction Research 1991

      11 Ollgaard, J. G., "Shear strength of stud connectors in lightweight and normal weight concrete" 71 (71): 55-64, 1971

      12 R.M. Lloyd, "Shear connection between composite slabs and steel beams" Elsevier BV 15 (15): 255-285, 1990

      13 Jorge Bonilla ; Luciano M. Bezerra ; Enrique Mirambell ; Bruno Massicotte, "Review of stud shear resistance prediction in steel-concrete composite beams" 국제구조공학회 27 (27): 355-370, 2018

      14 Gerhard Hanswille, "Resistance of headed studs subjected to fatigue loading" Elsevier BV 63 (63): 475-484, 2007

      15 Roik, K., "Report on Eurocode 4 - Clause 6.6.2 Stud connector" Ruhr Universität Bochum 1988

      16 R P JOHNSON, "RESISTANCE TO LONGITUDINAL SHEAR OF COMPOSITE BEAMS WITH PROFILED SHEETING." Thomas Telford Ltd. 110 (110): 204-215, 1995

      17 Hicks, S., "Push-out Test Database on Headed Studs in Profiled Steel Sheeting Transverse to the Beam with 611 Tests"

      18 JCSS, "Probabilistic model code" Joint Committee on Structural Safety

      19 Nellinger, S., "On the behaviour of shear stud connections in composite beams with deep decking" University of Luxembourg 2015

      20 V. Vigneri, "Numerical evaluation of the plastic hinges developed in headed stud shear connectors in composite beams with profiled steel sheeting" Elsevier BV 21 : 103-110, 2019

      21 Konrad, M., "New approach for the design shear resistance of headed studs in profiled steel sheeting with ribs transverse to supporting beam" 13 : 252-263, 2020

      22 Qili Sun, "Monotonic and cyclic behavior of headed steel stud anchors welded through profiled steel deck" Elsevier BV 157 : 121-131, 2019

      23 Christoph Odenbreit, "Mechanical model to predict the resistance of the shear connection in composite beams with deep steel decking" Wiley 10 (10): 248-253, 2017

      24 "M/515, Mandate for Amending Existing Eurocodes and Extending the Scope of Structural Eurocodes"

      25 Vigneri, V., "Load bearing mechanisms of headed stud shear connections in profiled steel sheeting transverse to the beam" University of Luxembourg 2021

      26 Viest, I. M., "Investigation of stud shear connectors for composite concrete and steel T-beams" 52 (52): 875-892, 1956

      27 Sebastian Nellinger, "Influence of transverse loading onto push-out tests with deep steel decking" Elsevier BV 128 : 335-353, 2017

      28 "ISO 13918, ISO 13918:2018 – Welding - Studs and ceramic ferrules for arc stud welding"

      29 "ISO 12491, ISO 12491:1997 - Statistical methods for quality control of building materials and components"

      30 Thürlimann, B., "Fatigue and static strength of stud shear connectors" 55 (55): 1287-1302, 1959

      31 "Eurocode 4, Design of composite steel and concrete structures. Part 1-1: General rules and rules for building"

      32 "Eurocode 3, Design of steel structures. Part 1-1: General rules and rules for building"

      33 "Eurocode 2, Design of concrete structures. Part1-1: General rules and rules for building"

      34 "Eurocode 0, Basis of structural design"

      35 "ENV 1993-1-1, ENV 1993-1-1:1992/A2:1998"

      36 "EN 1090-4 , EN 1090-4:2018 - Execution of steel structures and aluminium structures. Part 4: Technical requirements for cold-formed structural steel elements and cold-formed structures for roof, ceiling, floor and wall applications"

      37 Valentino Vigneri, "Different load bearing mechanisms in headed stud shear connectors for composite beams with profiled steel sheeting" Wiley 12 (12): 184-190, 2019

      38 Stephen J. Hicks, "Design shear resistance of headed studs embedded in solid slabs and encasements" Elsevier BV 139 : 339-352, 2017

      39 Fisher, J. W., "Design of Composite Beams with Formed Metal Deck" 7 (7): 88-96, 1970

      40 Bode, H., "Der Metallbau im Konstruktiven Ingenieurbau, Festschrift Rolf Baehre" Karlsruhe 1990

      41 Iyengar, S. H., "Composite floor system for Sears Tower" 10 (10): 1973

      42 Grant, J. A., "Composite beams with formed steel deck" 14 (14): 24-43, 1977

      43 Roik, K., "Beitrag zur Tragfähigkeit von Kopfbolzendübeln in Verbundträgern mit Stahlprofilblechen" 56 (56): 97-101, 1981

      44 B. S. Jayas, "Behaviour of headed studs in composite beams: push-out tests" Canadian Science Publishing 15 (15): 240-253, 1988

      45 "AISC 360-16, AISC 360-16: Specification for Structural Steel Buildings"

      46 Luís Simões da Silva, "13.02: Safety assessment across modes driven by plasticity, stability and fracture" Wiley 1 (1): 3689-3698, 2017

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2021 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-12-01 평가 등재 탈락 (해외등재 학술지 평가)
      2013-10-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-01-01 평가 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
      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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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 3.1 2.02 2.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      2.37 2.24 0.935 0.37
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