Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Architectural Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
Volume 56 Issue 1
Jan.  2026
Turn off MathJax
Article Contents
ZHANG Ailin, FAN Saixue, JIANG Ziqin. Research on Hysteretic Performance of Prefabricated Column-Base Joints with Replaceable Composite Energy-Dissipation Components[J]. INDUSTRIAL CONSTRUCTION, 2026, 56(1): 22-31. doi: 10.3724/j.gyjzG25040203
Citation: ZHANG Ailin, FAN Saixue, JIANG Ziqin. Research on Hysteretic Performance of Prefabricated Column-Base Joints with Replaceable Composite Energy-Dissipation Components[J]. INDUSTRIAL CONSTRUCTION, 2026, 56(1): 22-31. doi: 10.3724/j.gyjzG25040203

Research on Hysteretic Performance of Prefabricated Column-Base Joints with Replaceable Composite Energy-Dissipation Components

doi: 10.3724/j.gyjzG25040203
  • Received Date: 2025-04-02
    Available Online: 2026-02-26
  • Publish Date: 2026-01-22
  • Based on the design concepts of plastic damage control and replaceable energy-dissipation components, a prefabricated column-base joint with replaceable composite energy-dissipation components is proposed. The joint consists of H-shaped steel columns and composite energy-dissipation components (including L-shaped tension-compression energy-dissipation plates and shear energy-dissipation devices) assembled with high-strength bolts, forming a “tension/compression-shear” dual energy-dissipation mechanism that ensures the bearing capacity and enables damage control and post-earthquake replacement. A total of ten joint models were established in ABAQUS software to simulate their behavior under cyclic loading. The hysteretic curves, skeleton curves,and stress distribution differences of joint models with different parameters were compared and analyzed, and the influence laws of key parameters on the hysteretic performance of joints were summarized. The results showed that the width ratio and thickness ratio of the L-shaped tension-compression energy-dissipation plates, as well as the axial compression ratio, were all important parameters affecting the hysteretic performance of the novel column-base joints. Increasing the width ratio and thickness ratio of L-shaped tension-compression energy-dissipation plates effectively improved the bearing capacity of the joints, but also increased the stress in the structural columns. It was suggested that the width ratio and thickness ratio should be in the ranges of 0.3-0.7 and 0.5-1.0, respectively. Increasing the axial compression ratio reduced the ductility of the joints, thereby affecting the safety and reliability of the structure.
  • loading
  • [1]
    张爱林,张艳霞. 工业化装配式高层钢结构新体系关键问题研究和展望[J]. 北京建筑大学学报,2016,32(3):21-28.
    [2]
    沈祖炎,罗金辉,李元齐. 以钢结构建筑为抓手 推动建筑行业绿色化、工业化、信息化协调发展[J]. 建筑钢结构进展,2016,18(2):1-6.
    [3]
    李国强,汪绍洋,钟云龙. 半刚性可更换消能高强钢柱脚抗震性能试验研究[J]. 建筑结构学报,2023,44(10):26-37.
    [4]
    LI Y W,KOETAKA Y. Steel rocking column bases with replaceable cover plates:cyclic loading behaivour and practical design[J]. Engineering Structures,2022,264:114467.
    [5]
    CUI Y,WANG F,HE Y,et al. Experimental study on seismic performance of replaceable exposed⁃type column bases[J]. Structures,2022,37:551-560.
    [6]
    胡方鑫,陈鹏,潘建荣,等. 可更换屈曲约束耗能板的钢框架柱脚节点抗震性能试验研究[J]. 建筑结构学报,2023,44(增刊1):112-119.
    [7]
    LIU Y,GUO Z,LIU X,et al. An innovative resilient rocking column with replaceable steel slit dampers:experimental program on seismic performance[J]. Engineering Structures,2019,183:830-840.
    [8]
    刘小娟,刘阳,黄泽伟,等. 震后可恢复功能摇摆柱抗震性能试验研究[J]. 建筑结构学报,2021,42(8):204-212.
    [9]
    ZHANG A L,CHEN X,JIANG Z Q,et al. Experiment on seismic behavior of earthquake⁃resilience prefabricated cross hinge column foot joint[J]. Journal of Constructional Steel Research,2022,189:107056.
    [10]
    BORZOUIE J,MACRAE G A,CHASE J G,et al. Experimental studies on cyclic performance of column base weak axis aligned asymmetric friction connection[J]. Journal of Constructional Steel Research,2015,112:252-262.
    [11]
    BORZOUIE J,MACRAE G A,CHASE J G,et al. Experimental studies on cyclic performance of column base strong axis⁃aligned asymmetric friction connection[J]. Journal of Structural Engineering,2016,142(1):04015078.
    [12]
    LI C,WANG F,ZHU A. Seismic performance of H⁃shaped steel column with replaceable slip friction joints[J]. Buildings,2022,12(12):2240.
    [13]
    DENG K,PAN P,WANG C. Development of crawler steel damper for bridges[J]. Journal of Constructional Steel Research,2013,85:140-150.
    [14]
    JIANG Z Q,CHEN M L,ZHANG L K,et al. Seismic performance and design method of U⁃shaped damper with corrugated energy⁃consuming component[J]. Journal of Constructional Steel Research,2024,221:108882.
    [15]
    QU C,XU Y,GAO J,et al. Mechanical performance study of beam⁃column connection with U⁃shaped steel damper[J]. Materials,2022,15(20):7085.
    [16]
    KOETAKA Y,CHUSILP P,ZHANG Z,et al. Mechanical property of beam⁃to⁃column moment connection with hysteretic dampers for column weak axis[J]. Engineering Structures,2005,27(1):109-117.
    [17]
    EBADI J M,EBRAHIMI A H,SHOKRI A M. Experimental and numerical investigation of steel moment resisting frame with U‑shaped metallic yielding damper[J]. International Journal of Steel Structures,2019,19(3):806-818.
    [18]
    MIRZAIE M,BAHAARI M R,EMAM S H. Numerical simulation of the new post tensioned column base with bolted T⁃stubs[J]. ISIJ International,2014,54(1):179-187.
    [19]
    ZHANG Y X,HANG Z W,LI Y L,et al. Experimental and numerical investigation of prefabricated prestressed vertical steel strand core tube flange column connection joint[J]. Journal of Constructional Steel Research,2022,190:107124.
    [20]
    JIANG Z Q,CHEN P Q,NIU Z Y,et al. Design theory of self⁃centering column foot joint with dog bone weakened flange cover plate[J]. Structures,2024,69:107589.
    [21]
    QIU C,LIU J,JIANG T,et al. Experimental study on a steel self⁃centering rocking column with SMA slip friction dampers[J]. Engineering Structures,2023,274:115126.
    [22]
    LATOUR M,RIZZANO G,SANTIAGO A,et al. Experimental response of a low⁃yielding,self⁃centering,rocking column base joint with friction dampers[J]. Soil Dynamics and Earthquake Engineering,2019,116:580-592.
    [23]
    王枫智,崔瑶,李浩,等. 设置带削弱段连接板的钢柱脚抗震性能有限元研究[J]. 建筑结构学报,2022,43(6):95-102.
    [24]
    中华人民共和国住房和城乡建设部. 钢结构设计标准:GB 50017—2017[S]. 北京:中国建筑工业出版社,2018.
    [25]
    JIANG Z Q,YANG X F,ZHANG A L,et al. Design theory of earthquake⁃resilient prefabricated column foot joint with lateral force⁃resisting energy⁃consuming device[J]. Journal of Construction Steel Research,2022,252:113578.
    [26]
    冯鹏,强翰霖,叶列平. 材料、构件、结构的屈服点定义与讨论[J]. 工程力学,2017,34(3):36-46.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (20) PDF downloads(1) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return