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      KCI등재 SCIE SCOPUS

      Theoretical Study on the Influence of Welding Collar on the Shear Behavior of Stud Shear Connectors

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      https://www.riss.kr/link?id=A107325850

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      다국어 초록 (Multilingual Abstract)

      Arc stud welding will melt the root of the stud to form a welding collar. For the purpose of exploring the influence of welding collar, numerical method is adopted for the theoretical analysis on shear resistance of the stud under several groups of di...

      Arc stud welding will melt the root of the stud to form a welding collar. For the purpose of exploring the influence of welding collar, numerical method is adopted for the theoretical analysis on shear resistance of the stud under several groups of different welding collar parameters. Firstly, the shear resistance between whether the headed studs considering the welding collars or not is compared. Then, the radius and height parameters of welding collar are changed. Finally, the increment ratio of bearing capacity by welding collars with the same height-diameter ratio is taken into consideration. Experimental data from three push-out test are adopted to validate the accuracy of the numerical method. The results show that the welding collar changes the yield area at the bottom of the stud. The height parameter has less influence than the radius. Under the condition that welding collars have the same height-diameter ratio, the improvement of shear resistance with different diameters roughly converges to 7.28%. The formulas of various countries show that at the height-diameter ratio of 0.25, the average value of bearing capacity of welding collar in various specification approach 7.1% of formula value.

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      참고문헌 (Reference)

      1 Xu X, "Study on mechanical behavior of rubbersleeved studs for steel and concrete composite structures" 53 : 533-546, 2014

      2 Hognestad E, "Study of combined bending and axial load in reinforced concrete members" University of Illinois 1951

      3 Johnson RP, "Stud shear-connectors in hogging moment regions of composite beams" 47 (47): 345-350, 1969

      4 Pathirana SW, "Strengthening of existing composite steel-concrete beams utilising bolted shear connectors and welded studs" 114 : 417-430, 2015

      5 Han Q, "Static behavior of stud shear connectors in elastic concrete – Steel composite beams" 113 : 115-126, 2015

      6 Wang J, "Static behavior of large stud shear connectors in steel-UHPC composite structures" 178 : 534-542, 2018

      7 Xue W, "Static behavior and theoretical model of stud shear connectors" 15 (15): 346-348, 2008

      8 Ollgaard HG, "Shear strength of stud connection in lightweight and normal-weight concrete" 8 (8): 55-64, 1971

      9 Hirama, C, "Shear strength of headed stud push-out tests: Comprehensive literature review focusing on slab type, failure mode, and large-diameter headed stud" 1 (1): 2013-2022, 2017

      10 Jianan Qi, "Shear capacity of stud shear connectors with initial damage: Experiment, FEM model and theoretical formulation" 국제구조공학회 25 (25): 79-92, 2017

      1 Xu X, "Study on mechanical behavior of rubbersleeved studs for steel and concrete composite structures" 53 : 533-546, 2014

      2 Hognestad E, "Study of combined bending and axial load in reinforced concrete members" University of Illinois 1951

      3 Johnson RP, "Stud shear-connectors in hogging moment regions of composite beams" 47 (47): 345-350, 1969

      4 Pathirana SW, "Strengthening of existing composite steel-concrete beams utilising bolted shear connectors and welded studs" 114 : 417-430, 2015

      5 Han Q, "Static behavior of stud shear connectors in elastic concrete – Steel composite beams" 113 : 115-126, 2015

      6 Wang J, "Static behavior of large stud shear connectors in steel-UHPC composite structures" 178 : 534-542, 2018

      7 Xue W, "Static behavior and theoretical model of stud shear connectors" 15 (15): 346-348, 2008

      8 Ollgaard HG, "Shear strength of stud connection in lightweight and normal-weight concrete" 8 (8): 55-64, 1971

      9 Hirama, C, "Shear strength of headed stud push-out tests: Comprehensive literature review focusing on slab type, failure mode, and large-diameter headed stud" 1 (1): 2013-2022, 2017

      10 Jianan Qi, "Shear capacity of stud shear connectors with initial damage: Experiment, FEM model and theoretical formulation" 국제구조공학회 25 (25): 79-92, 2017

      11 정철헌, "Shear Strength of T-type Perfobond Rib Shear Connectors" 대한토목학회 20 (20): 1824-1834, 2016

      12 Viest IM, "Review of research on composite steel-concrete beams" 86 (86): 1-21, 1960

      13 Hanswille G, "Resistance of headed studs subjected to fatigue loading : Part I : Experimental study" 63 (63): 475-484, 2007

      14 He S, "Push-out tests for perfobond strip connectors with UHPC grout in the joints of steel-concrete hybrid bridge girders" 135 : 177-190, 2017

      15 Chambers HA, "Principles and practices of stud welding" 46 (46): 46-58, 2001

      16 Han Q, "Numerical analysis on shear stud in push-out test with crumb rubber concrete" 130 : 148-158, 2017

      17 Guezouli S, "Numerical analysis of frictional contact effects in push-out tests" 40 : 39-50, 2012

      18 AASHTO, "LRFD bridge design specifications"

      19 Hiragi H, "Investigation on remarkable improvement of fatigue strength for headed studs" 16 : 81-93, 1998

      20 Viest IM, "Investigation of stud shear connectors for composite concrete and steel T-beams" 27 (27): 875-981, 1956

      21 "GB50661-2011, Code for welding of steel structures"

      22 Higashiyama H, "Fatigue of headed studs welded with improved ferrules under rotating shear force" 92 : 211-218, 2014

      23 Xu C, "Experimental study on the biaxial loading effect on group stud shear connectors of steel-concrete composite bridges" 20 (20): 04014110-, 2014

      24 "EN ISO 13918, Welding — Studs and ceramic ferrules for arc stud welding"

      25 "EC4, Design of composite steel and concrete structures. Part-1:General rules and rules for building (EC4)"

      26 Classen M, "Derivation of design rules for innovative shear connectors in steel-concrete composites through the systematic use of non-linear finite element analysis(FEA)" 17 (17): 646-655, 2016

      27 Ranzi G, "Composite beams with both longitudinal and transverse partial interaction subjected to elevated temperatures" 29 (29): 2737-2750, 2007

      28 "CECS226-2007, Technical specification for welding of stud" China Association for Engineering Construction Standardization, China Planning Press 2005

      29 "CAN/CSA-S16-01 Limit states design of steel structures"

      30 Lam D, "Behavior of headed stud shear connectors in composite beam" 96 : 96-107, 2005

      31 Luo Y, "Behavior and strength of headed stud–SFRCC shear connection. I : Experimental Study" 142 (142): 04015112-, 2016

      32 "ANSI/AWS C5.4-93, Recommended practices of stud welding"

      33 "ANSI/AISC 360-05, Specification for structural steel buildings"

      34 Jörg Hildebrand1, "A Review on Assessment of Fatigue Strength in Welded Studs" 한국강구조학회 14 (14): 421-438, 2014

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