LU Fang-wei, LI Si-ping, SUN Guo-jun. NONLINEAR FINITE ELEMENT ANALYSIS OF SQUARE CONCRETE-FILLED STEEL TUBE COLUMNS UNDER COMPRESSIVE LOAD[J]. Engineering Mechanics, 2007, 24(3): 110-114.
Citation: LU Fang-wei, LI Si-ping, SUN Guo-jun. NONLINEAR FINITE ELEMENT ANALYSIS OF SQUARE CONCRETE-FILLED STEEL TUBE COLUMNS UNDER COMPRESSIVE LOAD[J]. Engineering Mechanics, 2007, 24(3): 110-114.

NONLINEAR FINITE ELEMENT ANALYSIS OF SQUARE CONCRETE-FILLED STEEL TUBE COLUMNS UNDER COMPRESSIVE LOAD

More Information
  • Received Date: December 31, 1899
  • Revised Date: December 31, 1899
  • Finite element models for axially-loaded square CFT (concrete-filled steel tube) columns were proposed using the program ABAQUS. The effects of material nonlinear constitutive relationship and the variation of Poisson’s ratio under loading were taken into account. The contact pressure between the tube and the core concrete, the axial stress distribution of the core concrete under loading and the constraint of the tube to the core concrete were analyzed. The load-deformation curves of the axially loaded square CFT short columns were obtained, which agreed well with experimental data.
  • Related Articles

    [1]ZHANG Jun-feng, XU Shi-yao, PEI Hao, LIU Qing-shuai. STUDY ON FAILURE OF RC COOLING TOWER UNDER FLUCTUATING WIND LOADing CONSIDERING THE MATERIAL NONLINEARITY[J]. Engineering Mechanics, 2023, 40(10): 81-88, 140. DOI: 10.6052/j.issn.1000-4750.2022.01.0060
    [2]ZHANG Jun-feng, PEI Hao, ZHU Bing, LIU Qing-shuai. WIND-INDUCED FAILURE PROCESS OF RC HYPERBOLIC COOLING TOWERS CONSIDERING THE MATERIAL NONLINEARITY[J]. Engineering Mechanics, 2021, 38(3): 228-238. DOI: 10.6052/j.issn.1000-4750.2020.05.0324
    [3]HE Guang-hui, YANG Xiao. NONLINEAR ANALYSIS OF COMPOSITE BEAMS USINGREDDY’S HIGHER ORDER BEAM THEORY[J]. Engineering Mechanics, 2015, 32(8): 87-95. DOI: 10.6052/j.issn.1000-4750.2014.01.0047
    [4]WANG Zhe, LI Hong-nan. NONLINEAR FINITE ELEMENT ANALYSIS OF WALL STRUCTURE FILLED WITH VISCOELASTIC MATERIAL[J]. Engineering Mechanics, 2013, 30(1): 126-133. DOI: 10.6052/j.issn.1000-4750.2011.07.0451
    [5]YU Ying, XU Xian, LUO Yao-zhi. DYNAMIC NONLINEAR ANALYSIS OF STRUCTURES BASED ON THE FINITE PARTICLE METHOD[J]. Engineering Mechanics, 2012, 29(6): 63-69,84. DOI: 10.6052/j.issn.1000-4750.2010.08.0746
    [6]MENG Huan-ling. RESEARCH ON THE DOUBLE NONLINEAR ANALYSIS MODEL OF COMPOSITE COMPONENTS[J]. Engineering Mechanics, 2010, 27(7): 244-249.
    [7]WU Qing-xiong, CHEN Bao-chun, WEI Jian-gang. A FINITE ELEMENT METHOD FOR ANALYZING MATERIAL NONLINEARITY OF CONCRETE-FILLED STEEL TUBULAR STRUCTURES[J]. Engineering Mechanics, 2008, 25(6): 68-074.
    [8]LIU Xi-la, WANG Kai-jian, ZHANG Chun-jun. THE LARGE INCREMENT METHOD FOR NONLINEAR ELASTIC PROBLEMS OF TRUSS SYSTEMS[J]. Engineering Mechanics, 2005, 22(S1): 7-15.
    [9]HU Song, HE Yan-li, WANG Zhao-min. NONLINEAR ANALYSIS OF FLEXIBLE CABLE STRUCTURES USING THE FINITE ELEMENT METHOD[J]. Engineering Mechanics, 2000, 17(2): 36-43.
    [10]Liu Xiaoqiang, Wu Huibi. NONLINEAR ANALYSIS MODEL OF TALL FRAMEWORKS[J]. Engineering Mechanics, 1993, 10(4): 42-51.

Catalog

    Article Metrics

    Article views (1001) PDF downloads (384) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return