钢板剪力墙振动台试验的等效模型
CSTR:
作者:
基金项目:

住房和城乡建设部研究开发项目(2018-K9-072);国家自然科学基金(51638002)


Equivalent model of steel plate shear walls in shaking table tests
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [17]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    为解决钢框架钢板剪力墙结构振动台试验缩尺模型中的剪力墙钢板厚度过薄的问题,依据结构初始抗侧刚度或承载能力等效的原则,提出中心支撑和I形钢板剪力墙两种等效模型,采用数值分析的方法,通过有限元软件ABAQUS建立精细化模型,对原型结构的钢板剪力墙和等效模型的刚度与承载力等抗震性能进行了对比分析。研究结果表明:两种等效替代模型均具有良好的耗能能力,能够在抗侧刚度或承载能力方面满足原型结构的等效设计要求,解决了模型结构中剪力墙钢板厚度小的难题;中心支撑等效方案仅可实现剪力墙的刚度或承载力单目标等效,而I形钢板剪力墙可以通过控制开洞口的尺寸,实现其刚度和承载力同时等效,为钢板剪力墙振动台试验模型的等效替代提供了参考。

    Abstract:

    In the shaking table test of steel frames-steel shear wall system, a problem is that the thickness of the steel plate shear wall(SPSW) in the scale model is too small. In order to solve this problem, this paper proposes two equivalent models:concentrically braced frames and I shape of steel plate shear walls. Both of the two models are based on principles of equivalent initial lateral stiffness or bearing capacity of the structure. The finite element analysis program ABAQUS was used to establish the refined model, using the method of numerical analysis. And the stiffness, bearing capacity and other seismic performance of the prototype SPSW and equivalent models were compared and analyzed. The results show the two equivalent substitution models both have good energy consumption capacity and can solve the problem of small thickness. In addition, the concentrically braced frames model can only make sure either stiffness or bearing capacity equivalent, but I shape of steel plate shear walls model can ensure both stiffness and bearing capacity equivalent, which provides some suggestions for the equivalent models of SPSW in shaking table tests.

    参考文献
    [1] 聂建国, 朱力, 樊健生, 等. 钢板剪力墙抗震性能试验研究[J]. 建筑结构学报, 2013,34(1), 34:61-69. NIE J G, ZHU L, FAN J S, et al. Experimental research on seismic behavior of steel plate shear walls[J]. Journal of Building Structures, 2013,34(1), 34:61-69. (in Chinese)
    [2] SAHEBJAM A, SHOWKATI H. Experimental study on the cyclic behavior of perforated CFRP strengthened steel shear walls[J]. Archives of Civil and Mechanical Engineering, 2016, 16(3):365-379.
    [3] 于敬海, 张雪涛, 郑达辉, 等. 方钢管混凝土组合异形柱框架-钢板剪力墙结构抗震性能试验研究[J]. 天津大学学报(自然科学与工程技术版), 2019, 52(Sup2):38-45. YU J H, ZHANG X T, ZHENG D H, et al. Experimental study of the seismic behavior of the frame composed of special-shaped concrete-filled square steel tube columns and steel plate shear walls[J]. Journal of Tianjin University (Science and Technology), 2019, 52(Sup2):38-45. (in Chinese)
    [4] WANG M, YANG W G, SHI Y J, et al. Seismic behaviors of steel plate shear wall structures with construction details and materials[J]. Journal of Constructional Steel Research, 2015, 107:194-210.
    [5] YU J G, FENG X T, LI B, et al. Performance of steel plate shear walls with axially loaded vertical boundary elements[J]. Thin-Walled Structures, 2018, 125:152-163.
    [6] 赵均海, 胡壹, 张冬芳. 装配式复式钢管混凝土框架-梁端连接钢板剪力墙抗震性能试验研究[J]. 土木工程学报, 2020, 53(5):78-88. ZHAO J H, HU Y, ZHANG D F. Experimental investigation on seismic performance of assembly CFDST frame with beam-connected steel plate shear walls[J]. China Civil Engineering Journal, 2020, 53(5):78-88. (in Chinese)
    [7] 于金光, 刘利明, 郝际平. 部分组合框架-钢板剪力墙边框柱设计方法研究[J]. 工程力学, 2020, 37(2):98-110. YU J G, LIU L M, HAO J P. Study on design method of vertical boundary element of partially encased composite frame-steel plate shear walls[J]. Engineering Mechanics, 2020, 37(2):98-110. (in Chinese)
    [8] XUE M, LU L W. Interaction of infilled steel shear wall panels with surrounding frame members[C]//Proceedings of Structural Stability Research Council Annual Technical Session, Bethlehem, PA, 1994:339-354.
    [9] SHEKASTEHBAND B, AZARAXSH A A, SHOWKATI H. Experimental seismic study on shear walls with fully-connected and beam-only-connected web plates[J]. Journal of Constructional Steel Research, 2018, 141:204-215.
    [10] 李国强, 刘文洋, 陆烨, 等. 两边连接屈曲约束钢板剪力墙受力机理与等效支撑模型[J]. 建筑结构学报, 2015, 36(4):33-41. LI G Q, LIU W Y, LU Y, et al. Stressing mechanism and equivalent brace model for buckling restrained steel plate shear wall with two-sided connections[J]. Journal of Building Structures, 2015, 36(4):33-41. (in Chinese)
    [11] 张增德, 王静峰, 龚旭东, 等. 两边连接钢板剪力墙-装配式钢管混凝土框架结构抗震性能研究[J]. 土木工程学报, 2019, 52(7):38-47. ZHANG Z D, WANG J F, GONG X D, et al. Study on seismic performance of prefabricated CFST frames with beam-only-connected SPSWs[J]. China Civil Engineering Journal, 2019, 52(7):38-47. (in Chinese)
    [12] 赵秋红, 邱静, 郝博超, 等. 两边连接竖向波纹钢板剪力墙的抗侧性能[J]. 天津大学学报(自然科学与工程技术版), 2019,52(Sup2):46-53. ZHAO Q H, QIU J, HAO B C, et al. Lateral behavior of vertically-corrugated steel plate shear walls connected with beams only[J]. Journal of Tianjin University (Science and Technology), 2019, 52(Sup2):46-53. (in Chinese)
    [13] 陆烨. 大高宽比屈曲约束组合墙钢框架束柱体系性能研究[D]. 上海:同济大学, 2009. LU Y.Research on the steel frame of bound-column system with buckling restrained steel plate shear wall in large aspect ratio[D]. Shanghai:Tongji University, 2009. (in Chinese)
    [14] 沈金, 干钢, 童根树. 钢板剪力墙设计与施工的工程实例[J]. 建筑结构, 2013, 43(15):19-22. SHEN J, GAN G, TONG G S. Practical application of design and construction of steel shear walls[J]. Building Structure, 2013, 43(15):19-22. (in Chinese)
    [15] 陆金钰, 范圣刚, 闫鲁南, 等. 带缝钢板剪力墙弹塑性简化分析模型[J]. 土木建筑与环境工程, 2013, 35(2):46-51. LU J Y, FAN S G, YAN L N, et al. Simplified elasto-plastic analytical model for stiffened steel plate shear wall with slits[J]. Journal of Civil, Architectural & Environmental Engineering, 2013, 35(2):46-51. (in Chinese)
    [16] SABOURI-GHOMI S, VENTURA C E, KHARRAZI M H. Shear analysis and design of ductile steel plate walls[J]. Journal of Structural Engineering, 2005, 131(6):878-889.
    [17] 金双双, 欧进萍. 钢板剪力墙钢板与框架相互作用分析[J]. 土木工程学报, 2012, 45(Sup1):283-287. JIN S S, OU J P. Characteristics of the wall-frame interaction in steel plate shear walls[J]. China Civil Engineering Journal, 2012, 45(Sup1):283-287. (in Chinese)
    引证文献
引用本文

冯力强,牛昌林,李锋,何翰卿,杨溥,刘立平,李英民.钢板剪力墙振动台试验的等效模型[J].土木与环境工程学报(中英文),2021,43(3):16-23. FENG Liqiang, NIU Changlin, LI Feng, HE Hanqing, YANG Pu, LIU Liping, LI Yingmin. Equivalent model of steel plate shear walls in shaking table tests[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2021,43(3):16-23.10.11835/j. issn.2096-6717.2021.006

复制
分享
文章指标
  • 点击次数:826
  • 下载次数: 1221
  • HTML阅读次数: 456
  • 引用次数: 0
历史
  • 收稿日期:2020-08-24
  • 在线发布日期: 2021-04-09
文章二维码