Please wait a minute...
J4  2010, Vol. 44 Issue (10): 1876-1882    DOI: 10.3785/j.issn.1008-973X.2010.10.006
岩土工程、土木及建筑工程     
钢管混凝土梁柱节点受力性能有限元分析
苏锋1, 蒋晔2, 蔡永昌1
1. 同济大学 地下建筑与工程系,上海 200092; 2.中铁第四勘察设计院集团有限公司,湖北 武汉 430063
Finite element analysis of steel beam and concretefilled circular column joints bearing capacity
SU Feng1, JIANG Ye2, CAI Yongchang1
1. Department of Geotechnical Engineering, Tongji University, Shanghai 200092, China; 2. China Railway Siyuan Survey and Design Group Limited Company, Wuhan 430063, China
 全文: PDF  HTML
摘要:

采用大型有限元分析软件ANSYS,对深圳福田大型地下车站主体结构标准段的钢管混凝土柱顶横纵梁、柱脚底纵梁以及柱地下1层梁等节点在梁端及柱端的弯矩、剪力和轴力等荷载作用下的力学性能进行模拟和分析.从钢管混凝土梁柱节点的受力状态出发,分析在梁端及柱端的弯矩、轴力和剪力等荷载作用下节点模型各组成构件(包括柱钢管、梁、加强环梁、承台、抗拔桩等部位)的主应力及切应力分布情况、变形情况和各个截面的内力分布情况等,与各个构件所对应的设计强度值进行对比分析,根据分析结果建议了更合理的节点结构设计与加固方案.

Abstract:

The mechanical behavior of concretefilled steel tubular column (CFSTC) joint was modeled and analyzed using the finite element software ANSYS. The problems were taken from the substantial structure of a subway station located in Futian, Shenzhen, China. Different types of joints used in the structure, including column capital and transverse beam joint, column footing and downward beam joint, and column and ground floor beam joint, were modeled under various loading conditions namely, bending moment, shear forces and axial forces. Distribution of principal stress, shear stress and deformation of the CFSTC joint as well as its components, including the steel columns, beams, reinforcing ring, pile cap and uplift pile etc, were analyzed and compared with the allowable strengths. Then an improved structural design and reinforcement scheme was proposed.

出版日期: 2010-10-01
:  TU 411  
基金资助:

铁道部科技研究开发计划资助项目(2007G045D).

作者简介: 苏锋(1979—),男,甘肃兰州人,博士生, 从事岩土数值计算理论研究. E-mail:sufeng0205@163.com
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  

引用本文:

苏锋, 蒋晔, 蔡永昌. 钢管混凝土梁柱节点受力性能有限元分析[J]. J4, 2010, 44(10): 1876-1882.

SU Feng, JIANG Ye, CA Yong-Chang. Finite element analysis of steel beam and concretefilled circular column joints bearing capacity. J4, 2010, 44(10): 1876-1882.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2010.10.006        http://www.zjujournals.com/eng/CN/Y2010/V44/I10/1876

[1] 蔡绍怀.现代钢管混凝土结构[M].北京:人民交通出版社,2003: 3-8.
[2] 钟善桐.钢管混凝土结构[M].北京:清华大学出版社,2003: 6-56.
[3] 蔡绍怀.我国钢管混凝土结构技术的最新进展\
[J].土木工程学报,1999,32(4): 16-26.
CAI Shaohuai. Recent development of steel tube confined concrete structures in China [J].China Civil Engineering Journal, 1999, 32(4): 16-26.
[4] JEROME F. Composite steel and concrete structural systems for seismic engineering [J]. Journal of  Construction Steel Research, 2002, 28(5): 65-72.
[5] 黄汉炎.钢管混凝土柱RC梁板节点拟静力三向加载试验研究[J].建筑结构学报,2001,22(6): 3-13.
HUANG Hanyan. Study on quasistatic 3D loading test for concretefilled steel tubular column and RC beamslab joints [J]. Journal of Building Structures, 2001, 22(6): 3-13.
[6] 方小丹,李少云,陈爱军.新型钢管混凝土柱节点的试验研究[J].建筑结构学报,1999,20(5): 2-15.
FANG Xiaodan, LI Shaoyun, CHEN Aijun. Experimental research on concrete filled steel tubular column joints [J]. Journal of Building Structures, 1999, 20(5): 2-15.
[7] 褚云朋,雷劲松.新型方钢管混凝土梁柱节点力学性能分析[J].四川建筑科学研究,2009,35(4): 36-39.
CHU Yunpeng, LEI Jinsong. Mechanical property analysis on steel plate joint of concretefilled square steel tubular column with RC beam [J]. Journal of Building Science Research of Sichuan, 2009, 35(4): 36-39.
[8] 王清湘,孙健.新型穿心钢筋暗牛腿钢管混凝土梁柱节点动力性能研究[J].钢结构,2009,24(1): 14-20.
WANG Qingxiang, SUN Jian. Mechanics behavior of a new type of concretefilled circular steel tubular column joint with piercing reinforcing bar hidden bracket [J]. Journal of Steel Construction, 2009, 24(1): 14-20.
[9] TOSHIAKI F, AKIYISHI M, NISHIYAMA K. Behavior of eccentrically loaded concretefilled steel tubular columns [J]. Journal of Structure Engineering, 2004, 34(8): 600-601.
[10] RICLES J M, PENG S W, LU L W. Seismic behavior of composite concretefilled steel tubular columnwide flange beam moment connections [J]. Journal of Structure Engineering, 2004, 38(8): 23-232.
[11] 韩林海.钢管混凝土结构的理论与实践[M].北京:科学出版社,2004: 24-69.
[12] 韩林海,杨有福.现代钢管混凝土结构技术[M].北京:中国建筑工业出版社,2004: 20-32.
[13] 翟渊军,李晓芬,马文亮,等. SOLID65单元在钢筋混凝土结构非线性分析中的应用[J].电网与水力发电进展,2007,23(8): 97-101.
ZHAI Yuanjun, LI XiaoFen, MA Wenliang, et al. Application of SOLID65 element in nonlinear analysis on reinforced concrete structure [J]. Journal of  Advances of Power System and Hydroelectric, 2007, 23(8): 97-101.
[14] 王国强.实用工程数值模拟技术及其在Ansys上的实践[M].西安:西北工业大学出版社,2000: 221-230.

[1] 刘长殿, 孙红月, 康剑伟, 杜丽丽. 土体的充气阻渗试验[J]. J4, 2014, 48(2): 236-241.
[2] 柯瀚,王文芳,魏长春,陈云敏,詹良通. 填埋体饱和渗透系数影响因素室内研究[J]. J4, 2013, 47(7): 1164-1170.
[3] 余钊圣, 王宇, 邵雪明, 吴腾虎. 中性悬浮大颗粒对湍槽流影响的数值研究[J]. J4, 2013, 47(1): 109-115.
[4] 王林涛,龚国芳,施虎,刘怀印. 基于盾构密封舱压力直接反馈地表变形控制[J]. J4, 2012, 46(7): 1182-1188.
[5] 刘永莉,孙红月,于洋,詹伟,尚岳全. 基于BOTDR监测技术抗滑桩上滑坡推力确定[J]. J4, 2012, 46(5): 798-803.
[6] 林巍, 楼文娟, 申屠团兵, 黄铭枫. 高层建筑脉动风压的非高斯峰值因子方法[J]. J4, 2012, 46(4): 691-697.
[7] 刘永莉, 孙红月, 于洋, 詹伟, 尚岳全. 抗滑桩内力的BOTDR监测分析[J]. J4, 2012, 46(2): 243-249.
[8] 徐日庆,张俊,朱剑锋, 王兴陈. 考虑扰动影响的修正Duncan-Chang模型[J]. J4, 2012, 46(1): 1-7.
[9] 周建, 郑鸿镔, 温晓贵, 管林波, 邓以亮. 考虑中主应力系数影响的主应力轴旋转下
原状软黏土变形研究
[J]. J4, 2011, 45(12): 2134-2141.
[10] 薛文, 金伟良, 横田弘. 养护条件与暴露环境对氯离子传输的耦合作用[J]. J4, 2011, 45(8): 1416-1422.
[11] 陈贵锋,马晓薇,吴建海,马巧云,薛晶晶,郝秋艳. 快速热处理对高能粒子辐照硅中氧沉淀的影响[J]. J4, 2011, 45(5): 928-933.
[12] 陈国红, 谢康和, 程永峰, 徐妍. 考虑涂抹区渗透系数变化的砂井地基固结解[J]. J4, 2011, 45(4): 665-670.
[13] 王艳, 李海峰, 徐熙平. 双灯投影机方棒照明系统的设计[J]. J4, 2011, 45(2): 382-386.
[14] 施虎,龚国芳,杨华勇,汪慧. 盾构掘进机推进力计算模型[J]. J4, 2011, 45(1): 126-131.
[15] 桂跃, 高玉峰, 张庆, 陈国栋, 李振山. 疏浚淤泥生石灰-磷石膏材料化处理效果[J]. J4, 2010, 44(10): 1974-1978.