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高强混凝土偏心受压柱中焊接环式箍筋的约束作用研究*
李升才,章炯
摘 要
李升才,章炯
(华侨大学土木工程学院, 泉州 362021)
 
[摘要]以偏心距为主要控制参数,对两组共6个密置焊接环式复合箍筋约束高强混凝土柱进行大、小偏心受压静力加载试验研究和有限元数值模拟对比分析。研究结果表明,焊接环式箍筋的约束作用可以较大地提高高强混凝土偏心受压柱的极限承载力、延性性能和受压区混凝土的极限压应变,对改善柱的受力和变形性能、提高结构的抗震性能具有重要意义。
建议考虑密置焊接环式复合箍筋对混凝土的约束作用,适当修改规范中偏心受压柱极限承载力计算公式。
[关键词]高强混凝土偏心受压柱;焊接环式箍筋;约束作用;承载力;延性
中图分类号:TU317+.1, TU398      文献标识码:A      文章编号:1002-848X(2013)10-0071-05
 
Research on confinement effect of welding ring stirrups in eccentrically loaded high-strength concrete columns
Li Shengcai, Zhang Jiong
 (College of Civil Engineering, Huaqiao University, Quanzhou 362021, China)
 
Abstract: Using eccentricity as the main controlling parameter, two groups of six high-strength concrete columns confined by closely arranged welding composite ring stirrups were researched under large eccentric and small eccentric compression static loading tests, and comparative analysis of the columns by finite element numerical simulation was performed. The research results show that ultimate bearing capacity, ductility and concrete ultimate compressive strain of eccentrically loaded high-strength concrete columns are greatly improved by confinement effect of welding ring stirrups, which has great significance to improve the mechanical behavior and deformation property of columns, as well as the seismic performance of the structure. It is recommended to consider the confinement role of the closely arranged welding ring stirrups and appropriately adjust the ultimate bearing capacity calculation formula of eccentric compression column in the code.
Keywords: eccentrically loaded high-strength concrete column; welding ring stirrup; confinement effect; bearing capacity; ductility
*国家自然科学基金项目(50948036),福建省自然科学基金计划项目(E0810022),福建省科技计划重点项目(2012H0028)。
作者简介:李升才,博士,教授,Email:lsc50605@hqu.edu.cn。
 
参考文献
[1]YUENGAR S R, BESAYIP, REDDY K N. Stress-strain characteristic of concrete confined in steel binders [J]. Magazine of Concrete Research, 1970, 22(72): 173-184.
[2]CHAN W W L. The ultimate strength and deformation of plastic hinges in reinforce framework [J]. Magazine of Concrete Research, 1975, 27(21): 121-132.
[3]EID R, DANCYGIER A N. Confinement effectiveness in circular concrete columns [J]. Engineering Structures, 2006, 28(13): 1885-1896.
[4]SATO Y, NAGATOMO K, NAKAMURA Y. Bond strengthening hooks for RC members with 1300mpa-class shear-reinforcing spirals. PartⅡ: Shear strength estimation based on the BCJC1166 guideline [J]. Journal of Asian Architecture and Building Engineering, 2006, 5(2): 317-324.
[5]GIUSEPPE CAMPIONE, MARINELLA FOSSETTI. Compressive behavior of concrete elliptical columns confined by single hoops [J]. Engineering Structures, 2007, 29(3): 408-417.
[6]史庆轩, 杨坤, 姜维山,等. 高强箍筋约束高强混凝土柱的偏心受压试验研究[J]. 工业建筑, 2009, 39(10): 76-80.
[7]司炳君, 孙治国, 王东升,等. 高强箍筋约束高强混凝土柱抗震性能研究综述[J]. 土木工程学报, 2009, 42(4): 1-9.
[8]过镇海, 时旭东. 钢筋混凝土原理和分析[M]. 北京: 清华大学出版社, 2003.
[9]SHEIKN S A, UZUMERI S M. Strength and ductility of tied concrete columns[J]. Journal of Structural Division, 1980, 106(5): 243-254.
[10]赵东. 高强箍筋约束混凝土偏心受压构件试验及非线性分析[D]. 西安: 西安建筑科技大学, 2008.
[11]姜安庆, 苏旭霖, 陆洲导. 碳纤维布加固小偏心受压钢筋混凝土柱承载力分析[J]. 四川建筑科学研究, 2006, 32(3): 53-55.
[12]唐飞, 孙静, 刘家蓬. 芳纶纤维布加固小偏心受压混凝土柱试验研究[J]. 水利与建筑工程学报, 2009, 7(2): 95-98.
[13]尚守平, 蒋隆敏, 张毛心. 钢筋网水泥复合砂浆加固RC偏心受压柱的试验研究[J]. 建筑结构学报, 2005, 26(2): 18-25,33.
[14]刘立新, 李洪彦, 张艳丽,等. 500MPa级钢筋混凝土偏心受压柱受力性能的试验研究[J]. 郑州大学学报:工学版, 2007, 6(28): 30-32.
[15]MANDER J B, PRIESTLEY M J N, PARK R. Theoretical stress-strain model for confined concrete [J]. Journal of Structural Engineering, 1988, 114(8): 1804-1826.
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