Source Journal for Chinese Scientific and Technical Papers
Core Journal of RCCSE
Included in JST China
Included in the Hierarchical Directory of High-quality Technical Journals in Architecture Science Field
Volume 53 Issue 12
Dec.  2023
Turn off MathJax
Article Contents
CHEN Yang, NING Jian, REN Chong, YANG Yong. Numerical Study on Shear Performance of Grouped Large Headed Stud Connectors in Prefabricated Steel-Thin UHPC Composite Girder[J]. INDUSTRIAL CONSTRUCTION, 2023, 53(12): 164-174. doi: 10.13204/j.gyjzG23070905
Citation: CHEN Yang, NING Jian, REN Chong, YANG Yong. Numerical Study on Shear Performance of Grouped Large Headed Stud Connectors in Prefabricated Steel-Thin UHPC Composite Girder[J]. INDUSTRIAL CONSTRUCTION, 2023, 53(12): 164-174. doi: 10.13204/j.gyjzG23070905

Numerical Study on Shear Performance of Grouped Large Headed Stud Connectors in Prefabricated Steel-Thin UHPC Composite Girder

doi: 10.13204/j.gyjzG23070905
  • Received Date: 2023-07-09
    Available Online: 2024-02-28
  • In order to study the shear performance of grouped large headed stud connectors in prefabricated steel-thin UHPC composite girder, 19 push-out specimens were established by finite element software ABAQUS to study the influence of casting method, stud spacing, key group spacing, and key group number on the shear bearing capacity, shear stiffness, and load-slip curve of the specimens. The results showed that the failure mode of specimens was mainly the shear failure at the root of studs and the local crushing of concrete slabs. The shear bearing capacity of prefabricated specimens was reduced by 10% compared with the cast-in-place specimens. The shear bearing capacity of the specimens decreased significantly when the spacing of studs was less than 2.5 times the diameter of studs. The shear bearing capacity and shear stiffness of individual stud in the key group were reduced by the increase of the spacing and number of key groups. The theoretical model for predicting the load-slip relation of the prefabricated steel-thin UHPC grouped large headed stud connectors was proposed. Moreover, the results of the shear capacity from ABAQUS were compared with the calculated results from the code, and a design method for prefabricated steel-thin UHPC composite girder bridge grouped large headed stud connectors was obtained.
  • loading
  • [1]
    聂建国, 刘明, 叶列平. 钢-混凝土组合结构[M]. 北京:中国建筑工业出版社, 2005.
    [2]
    VIEST I M. Investigation of stud shear connectors for composite concrete and steel T beams[J]. Journal of the American Concrete Institute, 1956, 27(8):875-891.
    [3]
    VIEST I M. Review of research on composite steel-concrete beams[J]. American Society of Civil Engineers, 1961, 126(2):1101-1121.
    [4]
    OKADA J, YODA T. Influence of stud size and stud strength of smaller spaced grouped arrangement of headed stud connectors on shear strength behavior and evaluation of shear strength of slabs[J]. Doboku Gakkai Ronbunshuu A, 2006, 62(3):556-559.
    [5]
    苏庆田, 李雨. 高强度砂浆群钉连接件抗剪承载力试验[J]. 同济大学学报(自然科学版), 2015, 43(5):699-705.
    [6]
    WANG Y H, YU J, LIU J P, et al. Shear behavior of shear stud groups in precast concrete decks[J]. Engineering Structures, 2019, 187:73-84.
    [7]
    魏振. 预制装配式钢-混凝土组合梁栓钉抗剪连接件推出试验研究[D]. 厦门:华侨大学, 2019.
    [8]
    韦建刚, 罗霞, 陈宝春, 等. 圆高强钢管UHPC梁抗弯性能研究[J]. 工程力学, 2021, 38(1):183-194.
    [9]
    邵旭东, 胡伟业, 邱明红, 等. 组合梁负弯矩区UHPC接缝抗弯性能试验研究[J]. 中国公路学报, 2021, 34(8):246-260.
    [10]
    樊健生, 王哲, 杨松, 等. 钢-超高性能混凝土组合箱梁弹性弯曲性能试验研究及解析解[J]. 工程力学, 2020, 37(11):36-46.
    [11]
    邵旭东, 曹君辉, 易笃韬, 等. 正交异性钢板-薄层RPC组合桥面基本性能研究[J]. 中国公路学报, 2012, 25(2):40-45.
    [12]
    CAO J H, SHAO X D, DENG L, et al. Static and fatigue behavior of short-headed studs embedded in a thin ultrahigh-performance concrete layer[J]. Journal of Bridge Engineering, 2017, 22(5):1-16.
    [13]
    谢宏伟. 钢-超高性能混凝土组合结构大直径栓钉的抗剪性能研究[D]. 成都:西南交通大学, 2019.
    [14]
    XU C, SUGIURA K, WU C, et al. Parametrical static analysis on group studs with typical push-out tests[J]. Journal of Constructional Steel Research, 2012, 72(5):84-96.
    [15]
    SHIM C S, KIM D W. Design Code on Stud Shear Connectors for New Details[C]//Composite Construction in Steel and Concrete VII. 2016:703-711.
    [16]
    中华人民共和国住房和城乡建设部.钢-混凝土组合桥梁设计规范:GB 50917-2013[S]. 北京:中国标准出版社, 2013.
    [17]
    中华人民共和国交通运输部.公路钢结构桥梁设计规范:JTG D64-2015[S]. 北京:人民交通出版社, 2015.
    [18]
    李昊煜. RPC材料的塑性损伤本构模型参数识别及有限元验证[D]. 北京:北京交通大学, 2009.
    [19]
    WANG J Q, XU Q Z, YAO Y M, et al. Static behavior of grouped large headed stud-UHPC shear connectors in composite structures[J]. Composite Structures, 2018, 206(12):202-214.
    [20]
    XUE W C, DING M, WANG H, et al. Static behavior and theoretical model of stud shear connectors[J]. Journal of Bridge Engineering, 2008, 13(6):623-634.
    [21]
    SU Q T, YANG G, BRADFORD M A. Static behaviour of multi-row stud shear connectors in high-strength concrete[J]. Steel and Composite Structures, 2014, 17(6):967-980.
    [22]
    DING J N, ZHU J S, KANG J F, et al. Experimental study on grouped stud shear connectors in precast steel-UHPC composite bridge[J/OL]. Engineering Structures, 2021, 242(1)[2021-09-01].https://doi.org/10.1016/j.engstruct.2021.112479.
    [23]
    刘沐宇, 李苏, 张强. 集束式长短剪力钉抗剪性能参数影响研究[J]. 华中科技大学学报(自然科学版), 2019, 47(7):19-23.
    [24]
    ECS. Design of composite steel and concrete structure:EN 1994-Eurocode 4[S]. England:European Committee for Standardization, 1994.
    [25]
    AASHTO LRFD. Bridge design specification:AASHTO LRFD[S]. Washington D C:Amercian Association of State Highway and Transportation Officials, 2007.
    [26]
    JSCE. Standard specification for steel and composite structures[S]. Japan:Japan Society of Civil Engineers, 2007.
  • 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 (47) PDF downloads(0) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return