<listing id="l9bhj"><var id="l9bhj"></var></listing>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<var id="l9bhj"></var><cite id="l9bhj"><video id="l9bhj"></video></cite>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"><listing id="l9bhj"></listing></strike></cite><cite id="l9bhj"><span id="l9bhj"><menuitem id="l9bhj"></menuitem></span></cite>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<ins id="l9bhj"><span id="l9bhj"></span></ins>
Volume 39 Issue 11
Nov.  2017
Turn off MathJax
Article Contents
HAO Ting-yue, CAO Wan-lin. Study on axial compressive bearing capacity of composite shear wall with double-skin steel plate[J]. Chinese Journal of Engineering, 2017, 39(11): 1765-1773. doi: 10.13374/j.issn2095-9389.2017.11.020
Citation: HAO Ting-yue, CAO Wan-lin. Study on axial compressive bearing capacity of composite shear wall with double-skin steel plate[J]. Chinese Journal of Engineering, 2017, 39(11): 1765-1773. doi: 10.13374/j.issn2095-9389.2017.11.020

Study on axial compressive bearing capacity of composite shear wall with double-skin steel plate

doi: 10.13374/j.issn2095-9389.2017.11.020
  • Received Date: 2016-12-01
  • This study conducted a steel-plate buckling analysis and a stress analysis of confined core concrete in a composite shear wall with a double-skin steel plate. Using the bottom shear wall of a core tube in the Beijing Chinese Statue as a prototype, the study tested the 1/4-scale concrete composite shear wall with a double-skin steel plate and a composite shear wall with an embedded steel plate with respect to axial compression, and then compared and analyzed the axial bearing capacity and load-displacement curves. Considering the influence of steel-plate buckling on the axial bearing capacity and the improved compressive strength of confined concrete, this paper proposes a calculation formula for the bearing capacity of a composite shear wall with a double-skin steel plate. Comparing this calculated values with those of other methods, the calculated values of this proposed method fits best. Based on relevant data in the literature regarding axial compression performance tests of composite shear walls with a double-skin steel plate, the axial compressive bearing capacity values obtained by this proposed formula are in good agreement with experimental results.

     

  • loading
  • [2]
    Yan J B, Liu X M, Liew J Y R, et al. Steel-concrete-steel sandwich system in Arctic offshore structure:materials, experiments, and design. Mater Des, 2016, 91:111
    [3]
    Wright H D, Gallocher S C. The behavior of composite walling under construction and service loading. J Construction Steel Res, 1995, 35(3):257
    [4]
    Wright H. The axial load behaviour of composite walling. J Construction Steel Res, 1998, 45(3):353
    [5]
    Mydin M A O, Wang Y C. Structural performance of lightweight steel-foamed concrete-steel composite walling system under compression. Thin-Walled Struct, 2011, 49(1):66
    [6]
    Uy B, Bradford M A. Elastic local buckling of steel plates in composite steel-concrete members. Eng Struct, 1996, 18(3):193
    [7]
    Liang Q Q, Uy B. Theoretical study on the post-local buckling of steel plates in concrete-filled box columns. Comput Struct, 2000, 75(5):479
    [8]
    Huang Z Y, Liew J Y R. Compressive resistance of steel-concretesteel sandwich composite walls with J-hook connectors. J Constructional Steel Res, 2016, 124:142
    [14]
    Mander J B, Priestley M J N, Park R. Theoretical stress-strain model for confined concrete. J Struct Eng, 1998, 114(8):1804
    [19]
    The Standards Policy and Strategy Committee. BS EN 1994-1-1:2004 Eurocode 4:Design of Composite Steel and Concrete Structures:Part 1-1:General Rules and Rules for Buildings. London:British Standards Institution, 2004
    [21]
    Wright H D. Local stability of filled and encased steel sections. J Struct Eng, 1995, 121(10):1382
    [22]
    Yang Y L, Wang Y Y, Fu F. Effect of reinforcement stiffeners on square concrete-filled steel tubular columns subjected to axial compressive load. Thin-Walled Struct, 2014, 82:132
  • 加載中

Catalog

    通訊作者: 陳斌, bchen63@163.com
    • 1. 

      沈陽化工大學材料科學與工程學院 沈陽 110142

    1. 本站搜索
    2. 百度學術搜索
    3. 萬方數據庫搜索
    4. CNKI搜索
    Article views (706) PDF downloads(21) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return
    久色视频