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Cyclic lateral load test and finite element analysis of high-strength concrete- filled steel box columns under high axial compression

机译:高强度混凝土钢箱柱循环横向载荷试验及有限元分析在高轴压下压缩下的高强度混凝箱柱

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This paper presents an experimental study of the seismic performance of high-strength concrete-filled box columns (CFBCs) under combined axial and cyclic lateral loads. Specimens were made of high-strength SM 570 M steel (with yield strengths between 520 and 580 MPa), and concrete with compressive strength (f(c)) greater than 80 MPa. Three parameters that affect the seismic performance of CFBCs were investigated: the width-to-thickness (b/t) ratio of the steel column, magnitude of the axial load, and the addition of concrete infill. The specimens, which were 280-420 mm in width and 2000 mm in height, were tested under combined axial (4058-10,090 kN) and cyclic lateral loads. Experimental results indicated that the lateral displacement ductility decreases significantly with an increase in either the axial load or b/t ratio. The addition of concrete infill inside a hollow steel box column does not improve the lateral displacement ductility of CFBCs under high axial load. Although the CFBC specimens satisfied the b/t requirement of a highly ductile member, as per AISC Seismic Provisions (2016), specimens under high axial load (40%P-n) failed at 4% drift, indicating that the requirement does not guarantee that CFBCs will sustain high axial load under significant drift (i.e., 3%). The Eurocode 4 (2009), AISC Specification (2010), and Architectural Institute of Japan (2014) reasonably estimate the flexural strength of high-strength CFBCs under axial load; however, ACI 318 (2011) does not. The finite element analysis program ABAQUS can be used to estimate the hysteretic behavior of specimens before significant strength degradation.
机译:本文介绍了在组合轴向和循环载荷下高强度混凝土箱柱(CFBC)的地震性能的实验研究。试样由高强度SM 570 M钢(520和580MPa之间的屈服强度),并且具有大于80MPa的压缩强度(F(c))的混凝土。研究了影响CFBCS地震性能的三个参数:钢柱的宽度 - 厚度(B / T)比,轴向载荷的大小,以及加入混凝土填充物。在组合轴向(4058-10,090kN)和循环横向载荷的情况下,测试宽度为280-420mm的标本。实验结果表明,横向位移延展性随着轴向载荷或B / T比的增加而显着降低。在高轴向载荷下,中空钢箱柱内的混凝土填充物不会改善CFBC的横向位移延性。尽管CFBC样本满足高度延展构件的B / T要求,但根据AISC地震规定(2016),在高轴向载荷(40%PN)下的试样减少了4%漂移,表明要求不保证CFBC将在显着漂移(即> 3%)下维持高轴向载荷。欧元建4(2009),AISC规范(2010年),日本建筑学院(2014年)合理地估算了轴向载荷下高强度CFBC的弯曲强度;但是,ACI 318(2011)没有。有限元分析程序ABAQUS可用于在显着强度降解之前估计标本的滞后行为。

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