Web crippling behaviour of cold-formed steel channel sections having elongated edge-stiffened web holes under interior-two-flange loading condition

Engineering Structures - Tập 294 - Trang 116757 - 2023
Wei Wang1, Krishanu Roy1, Zhiyuan Fang1, Beulah Gnana Ananthi. G2, James B.P. Lim1
1School of Engineering, The University of Waikato, New Zealand
2Division of Structural Engineering, College of Engineering Guindy campus, Anna University, India

Tài liệu tham khảo

Uzzaman, 2020, Web crippling behaviour of cold-formed steel channel sections with edge-stiffened and un-stiffened circular holes under interior-two-flange loading condition, Thin-Walled Struct, 154, 10.1016/j.tws.2020.106813 Chen, 2021, Web crippling capacity of fastened cold-formed steel channel sections with edge-stiffened web holes, un-stiffened web holes and plain webs under two-flange loading, Thin-Walled Struct, 163, 10.1016/j.tws.2021.107666 Sundararajah, 2016, Experimental Studies of Lipped Channel Beams Subject to Web Crippling under Two-Flange Load Cases, J Struct Eng, 10.1061/(ASCE)ST.1943-541X.0001523 Howick Floor, Joist System, 2013. Auckland, New Zealand. Roy, 2019, Experimental and numerical investigation into the behaviour of face-to-face built-up cold-formed steel channel sections under compression, Thin-Walled Struct, 134, 291, 10.1016/j.tws.2018.09.045 B. Chen, K. Roy, A. Uzzaman, G. M. Raftery, D. Nash, G. C. Clifton, P. Pouladi, J. B. P. Lim, (2019). Effects of edge-stiffened web openings on the behaviour of cold-formed steel channel sections under compression. Thin-Walled Structures, 144, 106307–. https://doi.org/10.1016/j.tws.2019.106307. Chen, 2020, Moment capacity of cold-formed channel beams with edge-stiffened web holes, un-stiffened web holes and plain webs, Thin-Walled Struct, 157, 107070, 10.1016/j.tws.2020.107070 Chen, 2020, Moment capacity of cold-formed channel beams with edge-stiffened web holes, un-stiffened web holes and plain webs, Thin-Walled Struct, 157, 10.1016/j.tws.2020.107070 Gatheeshgar, 2023, Elastic shear buckling of cold-formed steel channels with edge stiffened web holes, Thin-Walled Struct, 185, 110551, 10.1016/j.tws.2023.110551 Chen, 2022, Shear capacity of cold-formed steel channels with edge-Stiffened web holes, unstiffened web holes, and plain webs, J Struct Eng, 148, 10.1061/(ASCE)ST.1943-541X.0003250 AISI (American Iron and Steel Institute). 2016. North American specification for the design of cold-formed steel structural members. AISI S100-16. Washington, DC: AISI. AS/NZS (Australian/New Zealand Standard) 2018. Cold-formed steel structures. AS/NZS 4600:2018. Sydney, Australia: Standards Australia. Euro code 3 Part 1.3 (ECS), Design of Steel Structures: Part 1.3: General Rules-Supplementary Rules for Cold-Formed Thin Gauge Members and Sheeting, European Committee for Standardization, Brussels, Belgium, 2006. Lian, 2016, Effect of web holes on web crippling strength of cold-formed steel channel sections under end-one-flange loading condition - Part II: parametric study and proposed design equations, Thin-Walled Struct, 107, 489, 10.1016/j.tws.2016.06.026 Lian, 2017, Web crippling behaviour of cold-formed steel channel sections with web holes subjected to interior-one-flange loading condition – Part II: parametric study and proposed design equations, Thin-Walled Struct, 114, 92, 10.1016/j.tws.2016.10.018 Uzzaman, 2012, Cold-formed steel sections with web openings subjected to web crippling under two-flange loading conditions-Part II: Parametric study and proposed design equations, Thin-Walled Struct, 56, 79, 10.1016/j.tws.2012.03.009 LaBoube, 1999, Crippling capacity of web elements with openings, Struct Eng, 125, 137, 10.1061/(ASCE)0733-9445(1999)125:2(137) LaBoube, 1997, Cold-formed steel web with openings: summary report, Thin-Walled Struct, 28, 355 Chung, 1995, Structural performance of cold-formed sections with single and multiple web openings, Part-1: experimental investigation 73, The Structural Engineer Chung, 1995, Structural performance of cold-formed sections with single and multiple web openings, Part-2: design rules 73, The Structural Engineer ABAQUS Analysis User's Manual-Version 6.14-2, ABAQUS Inc., USA, 2018. Origin Lab (Version 8.5.1). Origin Lab Corporation, Northampton, MA, USA. Duarte, 2014, A new slenderness-based approach for the web crippling design of plain channel steel beams, International Journal of Steel Structures, 13, 421, 10.1007/s13296-013-3003-4 M.Y. Choy, X.F. Jia, X. Yuan, J. Zhou, H.S. Wang, C. Yu, Direct Strength Method for Web Crippling of Cold-Formed Steel C- and Z-Sections Subjected to Two-Flange Loading, Annual Stability Conference of Structural Stability Research Council, Toronto, Canada, 2014, pp. 99-111. Keerthan, 2014, Experimental study of web crippling behavior of hollow flange channel beams under two flange load cases, Thin-Walled Struct, 85, 207, 10.1016/j.tws.2014.08.011 Natário, 2016, Direct strength prediction of web crippling failure of beams under ETF loading, Thin-Walled Struct, 98, 360, 10.1016/j.tws.2015.09.012 Natário, 2017, Web crippling of beams under ITF loading: a novel DSM-based design approach, J Constr Steel Res, 128, 812, 10.1016/j.jcsr.2016.10.011 Nguyen, 2017, New developments in the direct strength method (DSM) for the design of cold-formed steel sections under localised loading, Steel Construction, 10, 227, 10.1002/stco.201710028 Sundararajah, 2017, Web crippling experiments of high strength lipped channel beams under one-flange loading, J Constr Steel Res, 138, 851, 10.1016/j.jcsr.2017.06.011 Sundararajah, 2017, Web crippling studies of SupaCee sections under two flange load cases, Eng Struct, 153, 582, 10.1016/j.engstruct.2017.09.058 Sundararajah, 2018, Design of SupaCee sections subject to web crippling under one-flange load cases, ASCE J of Structural Engineering, 144, 10.1061/(ASCE)ST.1943-541X.0002206 Sundararajah, 2017, New design rules for lipped channel beams subject to web crippling under two-flange load cases, Thin-Walled Struct, 119, 421, 10.1016/j.tws.2017.06.003 Sundararajah, 2019, Numerical modelling and design of lipped channel beams subject to web crippling under one-flange load cases, ASCE Journal of Structural Engineering, 07 Sundararajah, 2016 Young, 2001, Design of cold-formed channel sections subjected to web crippling, J Struct Eng, 127, 1137, 10.1061/(ASCE)0733-9445(2001)127:10(1137) Janarthanan, 2019, Web crippling behaviour and design of cold-formed steel sections, Thin-Walled Struct, 140, 387, 10.1016/j.tws.2019.03.042