ULTIMATE CAPACITY OF AXIALLY-LOADED RECTANGULAR CFT STUB COLUMNS
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摘要: 提出一种矩形钢管混凝土短柱轴压承载力计算的新方法。与已有的计算方法不同之处在于,所提出的方法考虑了矩形钢管截面长边、短边对核心混凝土约束作用大小不同的特点,应用基于混凝土真三轴受力试验的破坏准则确定管内核心混凝土的峰值强度;同时,考虑矩形钢管截面长边、短边的竖向强度的差异,分别计算矩形钢管长、短边的竖向强度。应用新方法对56根矩形钢管混凝土柱试件的轴压承载力进行计算,计算结果与试验结果比较表明,两者吻合良好。Abstract: A new method is proposed for calculating ultimate capacity of axially loaded rectangular CFT stub columns. Compared with the previous methods, the method considers the difference between concrete confinement effect provided by broad faces and that provided by narrow faces of the steel tube. The failure criterion for concrete based on true triaxial compression test is used to predict the ultimate strength of concrete core. Also, longitudinal steel strength of broad faces and that of narrow faces are respectively calculated due to considering the difference between longitudinal steel strength of broad faces and that of narrow faces. The new method is used to calculate ultimate capacity of 56 axially loaded rectangular CFT stub column specimens. The calculated results are compared with experimental results, which show a good agreement.
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Key words:
- rectangular CFT /
- bearing capacity /
- stub column /
- confinement effect /
- failure criterion
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Liu Dalin,Gho Wie-Min. Axial Load Behavior of High -Strength Rectangular Concrete-Filled Steel Tubular Stub Columns [J]. Thin-Walled Structures,2005,43(8) :1131-1142. [2] Schneider S P. Axially Loaded Concrete-Filled Steel Tubes[J].Journal of Structural Engineering, ASCE, 1998, 124 (10) :1125-1138. [3] Han Linhai. Tests on Stub Columns Concrete-Filled RHS Sections [J]. Journal of Constructional Steel Research,2002,58 (3) :353-372. [4] Sakino K,Nakahara H,Morino S,et al. Behaviour of Centrally Loaded Concrete-Filled Steel-Tube Short Columns [J]. Journal of Structural Engineering,ASCE,2004,130 (2) : 180-188. [5] Lue D M,Liu J L,Yen T. Experimental Study on Rectangular CFT Columns with High-Strength [J]. Journal of Constructional Steel Research,2007,63: 37-44. [6] CECS 159∶ 2004 矩形钢管混凝土结构技术规程[S]. [7] Eurocode 4,ENV 1994-1-1. Design of Composite Steel and Concrete Structures. Part 1. 1. General Rules and Rules for Buildings [S]. London: British Standards Institution,2004. [8] American Institute of Steel Construction. Load and Resistance Factor Design Specification for Structural Steel Buildings[S].Chicago: 1999. [9] American Concrete Institute. Building Code Requirements for Reinforced Concrete and Commentary [S]. Detroit:2005. [10] GJB 41422000 战时军港抢修早强型组合结构技术规程[S]. [11] 过镇海,王传志,张秀琴. 多轴应力下混凝土的强度和破坏准则[J]. 土木工程学报,1991,24(3) :1-14. [12] Mander J B,Priestley M J N,Park R. Theoretical Stress-Strain Model for Confined Concrete [J]. Journal of Structural Engineering,ASCE,1988,114(8) :1804-1826. [13] Ge H B,Usami T. Strength Analysis of Concrete Filled Thin-Walled Steel Box Columns [J]. Journal of Constructional Steel Research,1994(30) :259-281.
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