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高强不锈钢绞线网-渗透性聚合砂浆加固的T型梁桥试验

, PP. 83-90

Keywords: 桥梁工程,T型梁桥,试验研究,抗弯加固,高强不锈钢铰线网,渗透性聚合砂浆

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Abstract:

?以采用高强不锈钢绞线网-渗透性聚合砂浆加固技术加固的某大桥为工程背景,采用大比例模型试验,分析加固T型梁抗弯承载力的影响因素及其破坏特征。在试验研究的基础上,给出采用此法进行抗弯加固的T型梁承载力、刚度以及最大裂缝宽度的计算公式。同时对试验桥梁在加固前后进行了静力荷载试验。结果表明:该加固措施有效提高了梁的抗弯承载力和刚度,显著减小了桥梁裂缝宽度,并延迟了裂缝的出现;该加固技术可在不影响桥梁通行的情况下进行,具有良好的经济与社会效益。

References

[1]  项贻强, 姚永丁, 胡峰强, 等.体外索加固T型刚构桥的静动力性能研究[J].中国公路学报, 2004, 17(1):39-44.
[2]  俞茂宏, ODA Y, 盛 谦, 等.统一强度理论的发展及其在土木水利等工程中的应用和经济意义[J].建筑科学与工程学报, 2005, 22(1):24-41.
[3]  邓宗才.碳纤维布增强钢筋混凝土梁抗弯力学性能研究[J].中国公路学报, 2001, 14(2):45-51.
[4]  楼梦麟, 白建方.FRP加固梁模态分析的摄动解法[J].建筑科学与工程学报, 2005, 22(2):21-24.
[5]  贺拴海, 任 伟.纤维增强塑料加固混凝土结构研究[J].建筑科学与工程学报, 2005, 22(3):20-24.
[6]  徐 岳, 武同乐.桥梁加固工程生命周期成本横向对比分析[J].长安大学学报:自然科学版, 2004, 24(3):30-34.
[7]  ZHANG Yang, LI Guo-qiang.Application of Universal Bank of Natural Frequency Indexes in Damage Location of Beams with Fixed Ends[J].Journal of Architecture and Civil Engineering, 2005, 22(4):40-44.
[8]  ZHU Hao-ming, ZHOU Qi-yuan, GAO Xuan-neng, et al.Normal Section Bearing Capacity of RC Beams Strengthened by Bonded Steel Plates[J].Journal of Architecture and Civil Engineering, 2006, 23(3):54-60.
[9]  JIN Cheng-xun, FANG Jing-lu.Test Results of Tensile Strength of Stainless Steel Wire[R].Beijing:Tsinghua University, 2000.
[10]  清华大学建筑材料实验室.渗透性聚合物砂浆的试验报告[R].北京:清华大学, 2000.
[11]  聂建国, 王寒冰, 张天申, 等.高强不锈钢绞线网-渗透性聚合砂浆抗弯加固的试验研究[J].建筑结构学报, 2005, 26(2):1-9.
[12]  吴 刚, 安 琳, 吕志涛.碳纤维布用于钢筋混凝土梁抗弯加固的试验研究[J].建筑结构, 2000, 30(7):3-6.
[13]  XIANG Yi-qiang, YAO Yong-ding, HU Feng-qiang, et al.Study of Static and Dynamic Behavior of T-shape Rigid Frame Bridge Reinforced by Prestressed External Tendon[J].China Journal of Highway and Transport, 2004, 17(1):39-44.
[14]  YU Mao-hong, ODA Y, SHENG Qian, et al.Development of Unified Strength Theory and Its Applications in Civil Engineering and Its Economic Significance[J].Journal of Architecture and Civil Engineering, 2005, 22(1):24-41.
[15]  DENG Zong-cai.Flexural Strengthening of Reinforced Concrete Beams with Externally Bonded Composite Laminates[J].China Journal of Highway and Transport, 2001, 14(2):45-51.
[16]  LOU Meng-lin, BAI Jian-fang.Perturbation Solution for Modal Characteristics of Beam Strengthened by FRP[J].Journal of Architecture and Civil Engineering, 2005, 22(2):21-24.
[17]  HE Shuan-hai, REN Wei.Research on Reinforced Concrete Structure with FRP[J].Journal of Architecture and Civil Engineering, 2005, 22(3):20-24.
[18]  XU Yue, WU Tong-le.Comparative Analysis of Life-cycle Cost for Bridges Strengthening[J].Journal of Changan University:Natural Science Edition, 2004, 24(3):30-34.
[19]  张 杨, 李国强.通用频率指纹库在固接梁损伤定位中的应用[J].建筑科学与工程学报, 2005, 22(4):40-44.
[20]  朱皓明, 周期源, 高轩能, 等.粘钢加固RC梁的正截面承载力[J].建筑科学与工程学报, 2006, 23(3):54-60.
[21]  金成勋, 房敬律.不锈钢铰线抗拉强度试验结果[R].北京:清华大学, 2000.
[22]  金成勋, 金成秀, 房敬律.渗透性聚合砂浆的评估[R].北京:清华大学, 2000.
[23]  JIN Cheng-xun, JIN Cheng-xiu, FANG Jing-lu.Performance Evaluation of Permeability Polymer Mortar[R].Beijing:Tsinghua University, 2000.
[24]  Laboratory of Building Material of Tsinghua University.Test Report of Permeability Polymer Mortar[R].Beijing:Tsinghua University, 2000.
[25]  NIE Jian-guo, WANG Han-bing, ZHANG Tian-shen, et al.Experimental Study on Flexural Behavior of RC Beams Strengthened with Stainless Steel Wire Mesh and Permeability Polymer Mortar[J].Journal of Building Structures, 2005, 26(2):1-9.
[26]  WU Gang, AN Lin, LU Zhi-tao.Experimental Study on Flexural Behavior of RC Beams Strengthened by CFRP-sheet[J].Building Structure, 2000, 30(7):3-6.

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