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碳、玻璃层内混杂纤维布加固梁抗弯性能研究
引用本文:张小冬,王耀杰,邓宗才,黄莹. 碳、玻璃层内混杂纤维布加固梁抗弯性能研究[J]. 建筑技术, 2010, 41(10): 945-948
作者姓名:张小冬  王耀杰  邓宗才  黄莹
作者单位:[1]中国建筑科学研究院,北京100013 [2]北京工业大学建筑工程学院,北京100124
基金项目:"十一五"国家科技支撑计划项目
摘    要:通过对8根钢筋混凝土梁的抗弯试验,研究了不同比例及层数的碳、玻璃层内混杂纤维布对加固梁抗弯性能的影响。研究发现当纤维布层数相同时,碳、玻璃层内混杂纤维布加固梁的极限承载力比单一碳纤维布加固梁降低了5.5%~18.7%,位移延性系数提高了18.6%~45.2%,能量延性系数提高了22.5%~45.1%。试验结果表明碳、玻璃层内混杂纤维布加固梁的延性明显优于单一碳纤维布加固梁。在试验研究的基础上,采用弹塑性截面分析法计算了混杂纤维布加固梁的承载力,理论计算值与试验值吻合良好。

关 键 词:加固  层内混杂  延性  钢筋混凝土梁  抗弯性能

FLEXURAL PERFORMANCE OF REINFORCED CONCRETE BEAMS STRENGTHENED WITH CARBON/GLASS INTRAPLY HYBRID FIBER SHEETS
ZHANG Xiao-dong,WANG Yao-jie,DENG Zong-cai,HUANG Ying. FLEXURAL PERFORMANCE OF REINFORCED CONCRETE BEAMS STRENGTHENED WITH CARBON/GLASS INTRAPLY HYBRID FIBER SHEETS[J]. Architecture Technology, 2010, 41(10): 945-948
Authors:ZHANG Xiao-dong  WANG Yao-jie  DENG Zong-cai  HUANG Ying
Affiliation:1.China Academy of Building Research, 100013, Beijing, China; 2.College of Architecture and Civil Engineering, Beijing University of Technology, 100124, Beijing, China)
Abstract:In this paper the effects of different proportions and layers of carbon/glass intraply hybrid fiber sheets on the flexural behavior of beams strengthened with hybrid fiber sheets were investigated. It has been found that maximum load of RC beams strengthened with carbon/glass intraply hybrid fiber sheets are 5.5%- 18.7% less than that of the RC beam strengthened with single carbon fiber sheets, while the displacement ductility index increases 18.6% -45.2% and the energy ductility index increases 22.5%-45.1%, when strengthened with the same total layers of fiber sheets. The results confirmed that the ductility of the carbon/ glass hybrid fiber sheets were better significantly than that of single carbon fiber sheets. Based on the experimental research, an elastoplastic section analysis method is conducted to predict the bearing capacity of RC beams strengthened with hybrid fiber sheets, the results from the theoretical predictions and the experiment agree well.
Keywords:reinforcement  intraply hybrid  ductility  reinforced beam  flexural performance
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