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局部损伤偏心受压钢构件FRP加固后的大挠度屈曲分析
引用本文:李斌,李传习.局部损伤偏心受压钢构件FRP加固后的大挠度屈曲分析[J].北京工业大学学报,2016,42(3):399-405.
作者姓名:李斌  李传习
作者单位:长沙理工大学桥梁工程重点实验室,长沙 410076;湖南理工学院土木建筑工程学院,湖南 岳阳 414000;长沙理工大学桥梁工程重点实验室,长沙,410076
基金项目:国家自然科学基金资助项目(51378080),国家"973"计划资助项目(2015CB057701;2015CB057702),湖南省教育厅科研资助项目(15C0623)
摘    要:为了解决具有多区域局部损伤偏心受压钢构件FRP(纤维增强复合材料)加固后整体弯曲刚度的评价和大挠度屈曲分析计算缺乏实用方法的问题,考虑任意多区域局部损伤以及FRP对钢压杆整体弯曲刚度的贡献,采用能量方法推导损伤钢压杆FRP加固后的整体等效弯曲刚度. 基于大挠度理论,研究局部损伤偏心受压钢构件FRP加固后的变形特性,推导了杆件屈曲后的杆端转角、挠度与荷载之间的函数表达式,并对影响抗屈曲性能的主要参数(如损伤位置、FRP厚度及偏心距等)进行参数分析. 结果表明:损伤位置、FRP厚度及偏心距对钢压杆的抗屈曲性能影响明显,FRP 抗屈曲加固方法可以显著提高局部损伤偏心受压钢构件的抗屈曲能力.

关 键 词:纤维增强复合材料  偏心受压钢构件  防屈曲加固  局部损伤  大挠度

Analysis of Large Deflection Buckling of Eccentric Compression Steel Members With Local Damage by FRP Strengthening
LI Bin,LI Chuanxi.Analysis of Large Deflection Buckling of Eccentric Compression Steel Members With Local Damage by FRP Strengthening[J].Journal of Beijing Polytechnic University,2016,42(3):399-405.
Authors:LI Bin  LI Chuanxi
Abstract:A method of analyzing of large deflection buckling behaviors and calculating integral bending rigidity of eccentric compression steel members with local damage strengthened with FRP lacks practical was proposed in this paper. Considering the contribution of multiple local damage and FRP, integral equivalent bending rigidity was deduced by using energy approach. Based on the large displacement theory,the large deflection buckling of eccentric compression steel members with local damage by FRP strengthening was studied. The post buckling angle, deflection, load function of eccentric compression steel members was deduced. The influencing rule of damage position, FRP thickness and eccentricity of stability of hollow pipe with local damage by FRP strengthening was obtained. The analysis shows that the effect of damage position, FRP thickness and eccentricity of anti-buckling capability of steel compression members is obvious. And the carbon fiber reinforced method can significantly improve the ability of anti-buckling.
Keywords:fiber reinforced polymer  eccentric compression steel members  anti-buckling reinforce
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