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不锈钢冷成型管截面轴心受压构件的有限元分析

郑宝锋 舒赣平 沈晓明

郑宝锋, 舒赣平, 沈晓明. 不锈钢冷成型管截面轴心受压构件的有限元分析[J]. 工业建筑, 2012, 42(5): 12-20. doi: 10.13204/j.gyjz2011205002
引用本文: 郑宝锋, 舒赣平, 沈晓明. 不锈钢冷成型管截面轴心受压构件的有限元分析[J]. 工业建筑, 2012, 42(5): 12-20. doi: 10.13204/j.gyjz2011205002
Zheng Baofeng, Shu Ganping, Shen Xiaoming. FINITE ELEMENT ANALYSIS OF STAINLESS STEEL COLD- FORMED TUBULAR COLUMNS UNDER AXIAL LOAD[J]. INDUSTRIAL CONSTRUCTION, 2012, 42(5): 12-20. doi: 10.13204/j.gyjz2011205002
Citation: Zheng Baofeng, Shu Ganping, Shen Xiaoming. FINITE ELEMENT ANALYSIS OF STAINLESS STEEL COLD- FORMED TUBULAR COLUMNS UNDER AXIAL LOAD[J]. INDUSTRIAL CONSTRUCTION, 2012, 42(5): 12-20. doi: 10.13204/j.gyjz2011205002

不锈钢冷成型管截面轴心受压构件的有限元分析

doi: 10.13204/j.gyjz2011205002
基金项目: 

江苏省自然科学基金资助项目(BK2009287);国家自然科学基金资助项目(51178098)

详细信息
    作者简介:

    郑宝锋,男,1984年出生,博士研究生。

  • 中图分类号: TU392.3

FINITE ELEMENT ANALYSIS OF STAINLESS STEEL COLD- FORMED TUBULAR COLUMNS UNDER AXIAL LOAD

  • 摘要: 采用有限元软件ANSYS对不锈钢冷成型管截面轴心受压长柱进行模拟,有限元模型中考虑不锈钢材料的非线性本构关系、冷加工效应、构件的初始缺陷以及构件中的残余应力。将模拟结果与国内外的试验数据进行对比。对比表明:有限元模型能够准确地模拟不锈钢构件的受力全过程,模拟平均误差小于5%;对影响不锈钢轴心受压构件受力性能的因素进行分析,分析表明:方矩管截面的转角区冷加工效应,不锈钢材料力学性能参数变化以及构件的整体缺陷取值对构件的整体稳定性能影响较大,而不锈钢构件的截面对稳定系数影响很小。分析结论可作为建立不锈钢轴心受压构件稳定承载力设计公式的参考。
  • 孙玉福. 钢铁材料速查手册[M]. 北京:机械工业出版社,2009.
    [2] 沈晓明. 不锈钢受弯构件及构件中的受压板件(组) 的理论分析和试验研究[D]. 南京:东南大学,2010.
    [3] 郑宝锋. 不锈钢冷弯薄壁型钢轴心受压和偏心受压构件理论 分析和试验研究[D]. 南京:东南大学,2010.
    [4] Ashraf M,Gardner L,Nethercot D A. Finite Element Modeling of Structural Stainless Steel Cross-Sections [J]. Thin-Wall Structures,2006,44(10):1048-1062.
    [5] Jandera M,Gardner L,Machacek J. Residual Stresses in Cold- Rolled Stainless Steel Hollow Sections [J]. Journal of Constructional Steel Research,2008,64(11):1255-1263.
    [6] Rachel B Cruise,Gardner L. Strength Enhancements Induced During Cold Forming of Stainless Steel Sections [J]. Journal of Constructional Research,2008,64 (1):1310-1316.
    [7] Chou S M,Chai G B. Ultimate Design Load of Thin-Walled Stub- Columns[J]. Int J Computer Appl Tech,1997,10(1 /2):27-33.
    [8] Gardner L,Nethercot D A. Numerical Modeling of Stainless Steel Structural Components: A Consistent Approach[J]. Journal of Structural Engineering,ASCE,2004,130(10):1586-1601.
    [9] Lecce M,Rasmussen R. Distortional Buckling of Cold-Formed Stainless Steel Sections: Finite-Element Modeling and Design[J] . Journal of Structural Engineering,ASCE,2006,132(4):505 -514.
    [10] Yang D,Hancock G J. Numerical Simulation of High-Strength Steel Box-Shaped Columns Failing in Local and Overall Buckling Modes[J]. Journal of Structural Engineering,ASCE,2006,132 (4):541-549.
    [11] Becque J. The Interaction of Local and Overall Buckling of Cold- Formed Stainless Steel Columns[D]. Sydney: School of Civil Engineering,The University of Sydney,2008.
    [12] Chen W F,Ross D A. Test of Fabricated Tubular Columns[J]. J. Struct. Div. ASCE,1977,103(3):619-634.
    [13] Gao S,Usami T,Ge H. Ductility of Steel Short Cylinders in Compression and Bending[J]. J. Eng. Mech.,1998,124(2): 176-183.
    [14] Key P W,Hancock G J. Column Behavior of Cold-Formed Hollow Sections[J]. Journal of Structural Engineering,ASCE,1988,114 (2):390-407.
    [15] Rassmusen K J R,Hancock G J. Design of Cold-Formed Stainless Steel Tubular Members. I: Columns [J]. Journal of Structural Engineering,ASCE,1993,119(8):2349-2367.
    [16] Cruise R B,Gardner L. Residual Stress Analysis of Structural Stainless Steel Sections [J]. Journal of Constructional Steel Research,2008,64(3):352-366.
    [17] Young B,Lui W M. Behaviour of Cold-Formed High Strength Stainless Steel Sections[J]. Journal of Structural Engineering,2005,131(11):1738-1745.
    [18] Gardner L,Cruise R B. Modeling of Residual Stresses in Structural Stainless Steel Sections [J]. Journal of Structural Engineering,2009,135(1):42-53.
    [19] Weng C C,White R N. Residual Stresses in Cold-Bent Thick Steel Plates[J]. Journal of Structural Engineering,1990,116(1): 24-39.
    [20] Quach W M,Teng J G,Chung K F. Residual Stresses in Press- Braked Stainless Steel Sections I: Coiling and Uncoiling of Sheets [J]. Engineering Structures,2009,65(11):1803-1815.
    [21] Quach W M,Teng J G,Chung K F. Residual Stresses in Press- Braked Stainless Steel Sections II: Press-Braking Operations[J]. Engineering Structures,2006,28(11):1609-1619.
    [22] Ellobody E,Young B. Structural Performance of Cold-Formed High Strength Stainless Steel Columns [J]. Journal of Constructional Steel Research,2005,61(12):1631-1649.
    [23] 夏志皋. 塑性力学[M]. 上海,同济大学出版社,1991.
    [24] Gardner L. A New Approach to Stainless Steel Structural Design [D]. London: Department of Civil and Environmental Engineering,Imperial College,2002.
    [25] Quach W M,Teng J G,Chung K F. The-Stage Full-Range Stress- Stain Model for Stainless Steel [J]. Journal of Structural Engineering,2008,134(9):1518-1527.
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出版历程
  • 收稿日期:  2011-12-20
  • 刊出日期:  2012-05-20

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