Acknowledgement
본 논문은 (주) 충전공연개발과 국토교통부/국토교통과학기술진흥원의(21TBIP-C161326-01)의 연구비 지원에 의해 수행되었습니다. 이에 감사를 드립니다.
References
- Shen Q, Wang J. Performance and design of partially CFRP-jacketed circular CFT column under eccentric compression. Journal of Constructional Steel Research. 2020 Mar;166:105925. https://doi.org/10.1016/j.jcsr.2019.105925
- Lin Y, Zong Z. Experimental and numerical studies of the seismic behavior of a steel concrete composite rigid-frame bridge subjected to the surface rupture at a thrust fault. Engineering Structures. 2020 Feb;205:105-110.
- Park KD, Hwang WS. Evaluation for Confined Effects by the Sectional Properties of Concrete Filled Steel Tube Columns. Korean Society of Steel Constructuion. 2010 Aug;22(4).
- Moharrami M, Koutromanos I. Finite element analysis of damage and failure of reinforced concrete members under earthquake loading. Earthquake Engng Struct Dyn. 2017 Apr;46:2811-2829. https://doi.org/10.1002/eqe.2932
- Azad S, Mirghaderi SR. Numerical investigation of steel and composite beam-to-encased composite column connection via a through-plate. 2021 Jun;31:14-28.
- Koloo FA, Badakhshan A. Investigation of Proposed Concrete Filled Steel Tube Connections under Reversed Cyclic Loading. Steel Structure. 2018;18(1):163-177. https://doi.org/10.1007/s13296-018-0313-6
- Aghdamy S, Thambiratnam DP. Effects of load-related parameters on the response of concrete-filled double-skin steel tube columns subjected to lateral impact. Journal of Constructional Steel Research. 2017;138:642-662. https://doi.org/10.1016/j.jcsr.2017.08.015
- Abedini M, Zhang C. Blast Performance of Concrete Columns Retrofitted with FRP using Segment Pressure Technique. Composite Structures. 2020 Dec;260(2).
- Xu J. Behaviour of ultra high performance fibre reinforced concrete columns subjected to blast loading. Engineering Structures. 2016 Jul;118:97-107. https://doi.org/10.1016/j.engstruct.2016.03.048
- Asgarpoor M, Gharavi A, Epackachi S. Investigation of various concrete material to simulate seismic response of RC structure. Structures. 2020 Feb;29:1322-1351. https://doi.org/10.1016/j.istruc.2020.11.042
- LS-DYNA KEYWORD USER'S MANUAL VOl.1. Livemore Software Technology Corporation (LSTC). c2007.
- Yoo SW, Kang GR. Influence of Various Parameter for Nonlinear Finite Element Analysis of FRP-Concrete Composite Beam Using Concrete Damaged Plasticity Model. The Korea Academia-Industrial Cooperation Society. 2017;18(2):697-703.
- Lee JH. Large Crack Model and Its Numerical Algorithm for Damage Analysis of Dynamically Loaded Structures. Earthquake Engineering Society of Korea. 2.
- Daniel K. Coleman Evaluation of Concrete Modeling in LS-DYNA for Seismic Application. The University of Texas at Austin. c2016.
- Malvar LJ, Simons D. Concrete Material Modeling in Explicit Computations. Computational Structure. c1996 Apr.
- Crawford JE, Wu Y. Use and Validation of The Release III K&C. Concrete Material Model in LS-DYNA. Karagozian&Case. c2012.
- Wu Y, Choi HJ. Concrete fragmentation modeling using coupled finite element - meshfree formulations. Techno-Press. 2013 Sep; 6(2):173-179.
- Wu Y, Crawford JE. Performance of LS-DYNA Concrete Constitutive Models. 12th International LS-DYNA Users Conference.
- Schwer L. An Introduction to the Winfrith Concrete Model. Schwer Engineering & Consulting Services. c2010 Apr.
- Kim JY, Park HG. Plasticity Model Using Three Orthogonal Stress Components for Concrete in Compression. The Journal of Korea concrete Institute. 2004 Jun;16(3):345-356. https://doi.org/10.4334/JKCI.2004.16.3.345
- Asgarpoor M, Gharavi A. Investigation of various concrete materials to simulate seismic response of RC structures. Structures. 2020 Dec;29.
- Shin JU. Multi-hazard performance criteria for non-ductile reinforced concrete frame buildings retrofitted with an FRP column jacketing system. Georgia Institute of Technology. c2017.
- Lee HS. Performance verification through finite element analysis (FEM) of steel link and eccentric frame-type progressive system that can respond to earthquakes step by step. Sejong Univ. c2020.
- Lim CG. Experimental study of the seismic performance of CJS Hybrid Structural Systems connected to the CFT column. Earthquake Engineering Society of Korea. c2021.
- Zhao MZ, Lehman DE. Modeling recommendations for RC and CFST sections in LS-Dyna including bond slip. Engineering Structures. 2021 Feb;229:111612. https://doi.org/10.1016/j.engstruct.2020.111612
- Vulcu C, Strantan A. Beam-to-CFT High-Strength Joints with External Diaphragm 1:Design and Experimental Validation. Journal of Structural Engineering. 2017 Jan;143(5).
- Shin KJ, Kim HS. Seismic Behavior of CFT Column-to-Beam Connections. Earthquake Engineering Society of Korea. c2008 Mar.
- Lee SW, Kim YJ, Shin KJ. Non-linear Analysis of Full Scaled CFT Column to H-Beam Connections with T-Stiffeners. Korean Society of Steel Constructuion. 2002;14(6):835-843.
- Rackauskaite E, Kotsovinos P. Model parameter sensitivity and benchmarking of the explicit dynamic solver of LS-DYNA for structural analysis in case of fire. Fire Safety Journal. 2017 Jun; 90:123-138. https://doi.org/10.1016/j.firesaf.2017.03.002