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Research Article

Experimental Study on Seismic Behavior of Lightweight Concrete-Filled Cold-Formed Steel Shear Walls Strengthened Using Horizontal Reinforcement

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Pages 4126-4160 | Received 18 Jan 2022, Accepted 17 Dec 2022, Published online: 16 Jan 2023

References

  • ASTM E2126-2018. 2018. Standard test methods for cyclic (reversed) load test for shear resistance of vertical elements of the lateral force resisting systems for Buildings. West Conshohocken, PA.
  • Chen, Z. F., and W. Gao. 2011. Experimental study on shear behavior of meshwork cold-formed thin-wall steel RC shear wall. Advanced Materials Research 374-377:1291–94.
  • Chen, B., Z. Wu, and N. Liu. 2012. Experimental research on properties of high-strength foamed concrete. Journal of Materials in Civil Engineering 24 (1):113–18. doi:10.1061/(ASCE)MT.1943-5533.0000353.
  • FEMA. 356. 2015. Prestandard and commentary for the seismic rehabilitation of buildings. Washington, DC: Federal Emergency Management Agency.
  • Feng, P., M. J. Chu, L. P. Ye, and J. Q. Hou. 2010. Experimental study on shear behavior of cold-formed thin-walled steel reinforced concrete shear walls. Journal of Building Structures 31 (11):83–91. (in Chinese).
  • Fiorino, L., M. T. Terracciano, and R. Landolfo. 2016. Experimental investigation of seismic behaviour of low dissipative CFS strap-braced stud walls. Journal of Constructional Steel Research 127:92–107. doi:10.1016/j.jcsr.2016.07.027.
  • GB/T 17657-2013. 2013. Test methods of evaluating the properties of wood-based panels and surface decorated wood-based panels. Beijing, PR China: Architecture & Industry Press of China.
  • GB/T 228.1-2010. 2010. Metallic materials-tensile testing-part 1: Method of test at room temperature. Beijing, China: Architecture & Industry Press of China.
  • Hancock, G. J. 2016. Cold-formed steel structures: Research review 2013-2014. Advances in Structural Engineering 19:393–408. doi:10.1177/1369433216630145.
  • Hwang, S. J., W. H. Fang, H. J. Lee, and H. W. Yu. 2001. Analytical model for predicting shear strength of squat walls. Journal of Structural Engineering 127:43–50. doi:10.1061/(ASCE)0733-9445(2001)127:1(43).
  • Hwang, S. J., and H. J. Lee. 2012. Strength prediction for discontinuity regions by softened strut-and-tie model. Journal of Structural Engineering 128:1519–26. doi:10.1061/(ASCE)0733-9445(2002)128:12(1519).
  • JGJ 383-2016. 2016. Technical specification of lightweight steel and lightweight concrete structures. Beijing, China: Architecture & Industry Press of China.
  • JGJ/T 101-2015. 2015. Specification for seismic test of building. Beijing, China: Architecture & Industry Press of China.
  • JGJ/T 341-2014. 2014. Technical specification for application of foamed concrete. Beijing, China: Architecture & Industry Press of China.
  • JGJ/T 421-2018. 2018. Technical standard for cold-formed thin-walled steel multi-storey residential building. Beijing, China: Architecture & Industry Press of China.
  • JG/T 266-2011. 2011. Foamed concrete. Beijing, China: Architecture & Industry Press of China.
  • Jiang, L. Q., and J. H. Ye. 2019. Redundancy of a mid-rise CFS composite shear wall building based on seismic response sensitivity analysis. Engineering Structures 200 (1):109647. doi:10.1016/j.engstruct.2019.109647.
  • Kassem, W. 2015. Shear strength of squat walls: A strut-and-tie model and closed-form design formula. Engineering Structures 84:430–38. doi:10.1016/j.engstruct.2014.11.027.
  • Lawson, R. M., A. G. J. Way, M. Heywood, J. B. P. Lim, R. Johnston, and K. Roy. 2020. Stability of light steel walls in compression with plasterboards on one or both sides. Proceedings of the Institution of Civil Engineers-Structures and Buildings 173 (6):394–412. doi:10.1680/jstbu.18.00118.
  • Liu, B., J. P. Hao, W. H. Zhong, and H. Wang. 2016. Performance of cold-formed-steel-framed shear walls sprayed with lightweight mortar under reversed cyclic loading. Thin-Walled Structures 98:312–31. doi:10.1016/j.tws.2015.09.024.
  • Paulay, T., and M. J. N. Priestley. 1992. Seismic design of reinforced concrete and masonry buildings. New York: Wiley.
  • Pourabdollah, O., F. Farahbod, and F. R. Rofooei. 2017. The seismic performance of K-braced cold-formed steel shear panels with improved connections. Journal of Constructional Steel Research 135:56–68. doi:10.1016/j.jcsr.2017.04.008.
  • Sharafi, P., M. Mortazavi, N. Usefi, K. Kildashti, H. Ronagh, and B. Samali. 2018. Lateral force resisting systems in lightweight steel frames: Recent research advances. Thin-Walled Structures 130 (1):231–53. doi:10.1016/j.tws.2018.04.019.
  • Tian, H. W., Y. Q. Li, and C. Yu. 2015. Testing of steel sheathed cold-formed steel trussed shear walls. Thin-Walled Structures 94:280–92. doi:10.1016/j.tws.2015.04.009.
  • Usefi, N., H. R. Ronagh, and S. Shafaei. 2019. Experimental evaluation of CFS braced-truss shear wall under cyclic loading. Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications, 192–96.
  • Wang, X., W. Wang, and Y. Li. 2020. Cyclic performance of K-braced cold-formed steel shear walls with concrete-filled steel- tubular struts. Journal of Constructional Steel Research 173:106249. doi:10.1016/j.jcsr.2020.106249.
  • Wang, J., W. Wang, Y. Xiao, and B. Yu. 2019. Cyclic test and numerical analytical assessment of cold-formed thin-walled steel shear walls using tube truss. Thin-Walled Structures 134:442–59. doi:10.1016/j.tws.2018.09.038.
  • Wang, C. G., Z. Y. Yang, Z. N. Zhang, and R. Qi. 2021. Experimental study on shear behavior of cold-formed steel shear walls with bracket. Structures 32:448–60. doi:10.1016/j.istruc.2021.03.064.
  • Wang, X. X., and J. H. Ye. 2015. Reversed cyclic performance of cold-formed steel shear walls with reinforced end studs. Journal of Constructional Steel Research 113 (1):28–42. doi:10.1016/j.jcsr.2015.05.012.
  • Wu, H. H., S. S. Chao, T. H. Zhou, and X. B. Liu. 2018. Cold-formed steel framing walls with infilled lightweight FGD gypsum part I: Cyclic loading tests. Thin-Walled Structures 132 (1):759–70. doi:10.1016/j.tws.2018.04.003.
  • Xu, Z. F., Z. F. Chen, B. H. Osman, and S. H. Yang. 2018a. Seismic performance of high-strength lightweight foamed concrete-filled cold-formed steel shear walls. Journal of Constructional Steel Research 143 (1):148–61. doi:10.1016/j.jcsr.2017.12.027.
  • Xu, Z. F., Z. F. Chen, and S. H. Yang. 2018b. Effect of a new type of high-strength lightweight foamed concrete on seismic performance of cold-formed steel shear walls. Construction and Building Materials 181 (1):287–300. doi:10.1016/j.conbuildmat.2018.06.067.
  • Xu, Z., Z. F. Chen, and S. H. Yang. 2018c. Seismic behavior of cold-formed steel high-strength foamed concrete shear walls with straw boards. Thin-Walled Structures 124 (1):350–65. doi:10.1016/j.tws.2017.12.032.
  • Ye, J. H., X. X. Wang, H. Y. Jia, and M. Y. Zhao. 2015. Cyclic performance of cold-formed steel shear walls sheathed with double-layer wallboards on both sides. Thin-Walled Structures 92 (1):146–59. doi:10.1016/j.tws.2015.03.005.
  • Zeynalian, M., and H. R. Ronagh. 2012. An experimental investigation on the lateral behavior of knee-braced cold-formed steel shear walls. Thin-Walled Structures 51:64–75.
  • Zeynalian, M., H. R. Ronagh, and S. Hatami. 2012. Seismic characteristics of K-braced cold-formed steel shear walls. Journal of Constructional Steel Research 77:23–31. doi:10.1016/j.jcsr.2012.04.009.
  • Zuo, Y. N., Z. F. Xu, Z. F. Chen, and S. J. Dai. 2021. Restoring-force model for HFC-filled CFS shear walls subjected to in-plane cyclic loading. Journal of Building Engineering 44 (1):103347. doi:10.1016/j.jobe.2021.103347.

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