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      KCI등재 SCIE SCOPUS

      Research on Whole‑Process Tensile Behavior of Headed Studs in Steel–Concrete Composite Structures

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      https://www.riss.kr/link?id=A107802906

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      다국어 초록 (Multilingual Abstract)

      The headed studs have been widely applied in steel–concrete composite structures as shear connectors. However, the tensile performance of headed studs is also key to the structural performance in many cases such as the semi-rigid composite joints in...

      The headed studs have been widely applied in steel–concrete composite structures as shear connectors. However, the tensile performance of headed studs is also key to the structural performance in many cases such as the semi-rigid composite joints including steel beam–concrete wall joint and steel column–base joint. Therefore, this study presents experimental and analytical study on the whole-process tensile behavior of headed studs. Tests on a total of 33 pullout specimens are first conducted. The tensile capacity and load–deformation behavior of the anchorage concrete, which dominates the structural performance of headed studs, are thoroughly analyzed. In addition, test data in the literature are collected for quantitatively evaluating the influence of embedment depth, bearing area, boundary conditions, and concrete strength on the tensile behavior of the anchorage concrete. On the basis of the influence evaluation, an analytical model represented by a piecewise function is proposed to describe the whole-process load–deformation behavior of the anchorage concrete and validated through the comparison between the predicted curves and all collected experimental results. Then the proposed model is applied to simulate the rotational behavior of the typical semi-rigid joint anchored by headed studs, which takes the contribution of the anchorage concrete into consideration, and is verified by experimental results. The research findings indicate that tensile behavior of anchorage concrete is crucial to the structural performance of semi-rigid joints, even for headed studs with large embedment depth and bearing area.

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      목차 (Table of Contents)

      • Abstract
      • 1. Introduction
      • 2. Experimental Investigation
      • 3. Development of Analytical Model for the Tensile Behavior of Anchorage Concrete
      • 4. Verification of Proposed Analytical Model
      • Abstract
      • 1. Introduction
      • 2. Experimental Investigation
      • 3. Development of Analytical Model for the Tensile Behavior of Anchorage Concrete
      • 4. Verification of Proposed Analytical Model
      • 5. Conclusions
      • References
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      참고문헌 (Reference)

      1 Furche, J., "Zum Trag- und Verschiebungsverhalten von Kopfbolzen bei zentrischem Zug (For the carrying and shifting behavior of head bolts in centric tension)" Universität Stuttgart 1994

      2 Zhao, G., "Zugtragfähigkeit von Ankerplatten mit Kopfbolzen mit unterschiedlichen Achsabständen (Tensile capacity of anchor plates with headed bolts with different center distances)" Institut für Werkstoffe im Bauwesen, Universität Stuttgart 1991

      3 Berger, W., "Zug- und Querlastversuche an Kopfbolzen und Verbunddübeln mit und ohne Rückhängebewehrung – Versuchsbericht (Tensile and shear load tests on head studs and bonded anchors with and without back-up reinforcement - test report)" Institut für Werkstoffe im Bauwesen, Universität Stuttgart 2011

      4 Hanenkamp, W., "Tragverhalten von Verankerungen mit Kopfbolzen. Zusatzversuche Serie 4 und 5 (Structural behavior of anchorages with headed bolts. Additional tests of Series 4 and 5). Zugtragfähigkeit von EinzelKopfbolzen mit unterschiedlichen Randabständen (Capaity of single headed studs with different edges)"

      5 Berger, W., "Trag- und Verschiebungsverhalten sowie Bemessung von Kopfbolzenverankerungen mit und ohne Rückhängebewehrung unter Zuglast (Load and displacement behavior as well as dimensioning of head bolt anchorages with and without back-up reinforcement under tensile load)" Universität Stuttgart 2015

      6 Lee, N. H., "Tensile-headed anchors with large diameter and deep embedment in concrete" 104 (104): 479-486, 2007

      7 Henriques, J., "Tensile resistance of steel-reinforced anchorages : Experimental evaluation" 110 (110): 239-250, 2013

      8 Nilforoush, R., "Tensile capacity of anchor bolts in uncracked concrete : influence of member thickness and anchor’s head size" 114 (114): 1519-1530, 2017

      9 Grauvilardell, J., "Synthesis of design, testing and analysis research on steel column base plate connections in high-seismic zones" University of Minnesota 2005

      10 Ozbolt, J., "Size effect on the concrete cone pull-out load" 95 (95): 391-404, 1999

      1 Furche, J., "Zum Trag- und Verschiebungsverhalten von Kopfbolzen bei zentrischem Zug (For the carrying and shifting behavior of head bolts in centric tension)" Universität Stuttgart 1994

      2 Zhao, G., "Zugtragfähigkeit von Ankerplatten mit Kopfbolzen mit unterschiedlichen Achsabständen (Tensile capacity of anchor plates with headed bolts with different center distances)" Institut für Werkstoffe im Bauwesen, Universität Stuttgart 1991

      3 Berger, W., "Zug- und Querlastversuche an Kopfbolzen und Verbunddübeln mit und ohne Rückhängebewehrung – Versuchsbericht (Tensile and shear load tests on head studs and bonded anchors with and without back-up reinforcement - test report)" Institut für Werkstoffe im Bauwesen, Universität Stuttgart 2011

      4 Hanenkamp, W., "Tragverhalten von Verankerungen mit Kopfbolzen. Zusatzversuche Serie 4 und 5 (Structural behavior of anchorages with headed bolts. Additional tests of Series 4 and 5). Zugtragfähigkeit von EinzelKopfbolzen mit unterschiedlichen Randabständen (Capaity of single headed studs with different edges)"

      5 Berger, W., "Trag- und Verschiebungsverhalten sowie Bemessung von Kopfbolzenverankerungen mit und ohne Rückhängebewehrung unter Zuglast (Load and displacement behavior as well as dimensioning of head bolt anchorages with and without back-up reinforcement under tensile load)" Universität Stuttgart 2015

      6 Lee, N. H., "Tensile-headed anchors with large diameter and deep embedment in concrete" 104 (104): 479-486, 2007

      7 Henriques, J., "Tensile resistance of steel-reinforced anchorages : Experimental evaluation" 110 (110): 239-250, 2013

      8 Nilforoush, R., "Tensile capacity of anchor bolts in uncracked concrete : influence of member thickness and anchor’s head size" 114 (114): 1519-1530, 2017

      9 Grauvilardell, J., "Synthesis of design, testing and analysis research on steel column base plate connections in high-seismic zones" University of Minnesota 2005

      10 Ozbolt, J., "Size effect on the concrete cone pull-out load" 95 (95): 391-404, 1999

      11 Latour, M., "Rotational behaviour of column base plate connections : Experimental analysis and modelling" 68 : 14-23, 2014

      12 Prestressed Concrete Institute, "PCI design handbook" Precast/Prestressed Concrete Institute 2004

      13 Shahrooz, B. M., "Outrigger beam-wall connections. I : Component testing and development of design model" 130 (130): 253-261, 2004

      14 Ottosen, N. S., "Nonlinear finite element analysis of pull-out test" 107 (107): 591-603, 1981

      15 Chang, X., "Modeling of anchor bolt pullout in concrete based on a heterogeneous assumption" 241 (241): 1345-1351, 2011

      16 Latour, M., "Mechanical modelling of exposed column base plate joints under cyclic loads" 162 : 105726-, 2019

      17 Piccinin, R., "Linear elastic fracture mechanics pullout analyses of headed anchors in stressed concrete" 136 (136): 761-768, 2010

      18 Rybinski, M., "Komponentenmethode für Ankerplatten mit Kopfbolzen unter einachsiger Beanspruchung (Component method for anchor plates with headed bolts under uniaxial loading)" Institut für Konstruktion und Entwurf der Universität Stuttgart 2014

      19 Nilforoush, R., "Influence of surface reinforcement, member thickness, and cracked concrete on tensile capacity of anchor bolts" 114 (114): 1543-1556, 2017

      20 Pallarés, L., "Headed steel stud anchors in composite structures, Part II : Tension and interaction" 66 (66): 213-228, 2010

      21 Wang, J., "Fracture and damage of concrete and rock" 559-568, 1993

      22 Ozbolt, J., "Fastening elements in concrete structures—numerical simulations"

      23 Nilforoush, R., "Experimental evaluation of influence of member thickness, anchor-head size, and orthogonal surface reinforcement on the tensile capacity of headed anchors in uncracked concrete" 144 (144): 04018012-, 2018

      24 EN 1993-1-8., "EN 1993-1-8.Eurocode 3: design of steel structures. Part 1–8: Design of joints"

      25 Fuchs, W., "Concrete capacity design(CCD)approach for fastening to concrete" 92 : 73-94, 1995

      26 American Concrete Institute Committee, "Code requirements for nuclear safety related concrete structures (ACI 349–06)"

      27 CMC, "Code for design of concrete structures. GB50017–2010"

      28 American Concrete Institute Committee, "Building code requirements for structural concrete (ACI 318–14) and commentary (ACI 318R-14)"

      29 Yang, Y., "Buckling behavior of double-skin composite walls : An experimental and modeling study" 121 : 126-135, 2016

      30 Hoehler, M., "Behavior and testing of anchors in simulated seismic cracks" 105 (105): 348-357, 2008

      31 Derek, P., "Behavior and design of cast-in-place anchors under simulated seismic loading—NEES-anchor project" National Science Foundation 2013

      32 Wald, F., "Base plate in bending and anchor bolts in tension" 53 (53): 21-50, 2008

      33 Furche, J., "Ausziehversuche an Kopfbolzen mit unterschiedlichen Kopfformen bei Verankerungen im ungerissenen Beton und in Parallelrissen (Pull-out tests on head bolts with different head shapes for anchorages in non-cracked concrete and in parallel cracks)"

      34 Eligehausen, R., "Anchorage to concrete" 1 (1): 392-403, 1998

      35 Eligehausen, R., "Anchorage in Concrete Construction" Ernst & Sohn 2006

      36 Tsavdaridis, K. D., "Analytical approach of anchor rod stiffness and steel base-plate calculation under tension" 5 : 207-218, 2016

      37 Bouska, P., "Analysis of experimental data of the pull-out tests of anchor bolts" Czech Technical University in Prague 1992

      38 Ozbolt, J., "3D FE Analysis of anchor bolts with large embedment depths" 2003

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