留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

组合加固足尺预应力混凝土空心板梁抗弯性能

王世超 王春生 王茜 田晓峰 段兰

王世超, 王春生, 王茜, 田晓峰, 段兰. 组合加固足尺预应力混凝土空心板梁抗弯性能[J]. 交通运输工程学报, 2018, 18(2): 31-41. doi: 10.19818/j.cnki.1671-1637.2018.02.004
引用本文: 王世超, 王春生, 王茜, 田晓峰, 段兰. 组合加固足尺预应力混凝土空心板梁抗弯性能[J]. 交通运输工程学报, 2018, 18(2): 31-41. doi: 10.19818/j.cnki.1671-1637.2018.02.004
WANG Shi-chao, WANG Chun-sheng, WANG Qian, TIAN Xiao-feng, DUAN Lan. Flexural behaviors of full-scale prestressed concrete hollow slab girders with composite strengthening[J]. Journal of Traffic and Transportation Engineering, 2018, 18(2): 31-41. doi: 10.19818/j.cnki.1671-1637.2018.02.004
Citation: WANG Shi-chao, WANG Chun-sheng, WANG Qian, TIAN Xiao-feng, DUAN Lan. Flexural behaviors of full-scale prestressed concrete hollow slab girders with composite strengthening[J]. Journal of Traffic and Transportation Engineering, 2018, 18(2): 31-41. doi: 10.19818/j.cnki.1671-1637.2018.02.004

组合加固足尺预应力混凝土空心板梁抗弯性能

doi: 10.19818/j.cnki.1671-1637.2018.02.004
基金项目: 

中央高校基本科研业务费专项资金项目 300102218519

中央高校基本科研业务费专项资金项目 300102218204

陕西省交通运输厅科研项目 16-31K

陕西省科技统筹创新工程重点实验室项目 2014SZS19-Z02

陕西省科技统筹创新工程重点实验室项目 2014SZS19-K03

详细信息
    作者简介:

    王世超(1989-), 男, 内蒙古赤峰人, 长安大学工学博士研究生, 从事桥梁加固研究

    王春生(1972-), 男, 黑龙江绥化人, 长安大学教授, 工学博士

  • 中图分类号: U448.35

Flexural behaviors of full-scale prestressed concrete hollow slab girders with composite strengthening

More Information
  • 摘要: 对3片足尺预应力混凝土空心板梁进行抗弯性能试验, 其中1片足尺梁不进行加固, 2片分别采用钢板-混凝土组合加固和钢板-预应力混凝土组合加固, 分析了试验梁主要部位的应变、滑移、裂缝分布、承载力、刚度和延性; 基于试验梁塑性破坏机理, 并考虑二次受力的影响, 推导了足尺试验梁的抗弯极限承载力计算公式。试验结果表明: 加固后试验梁的破坏形态表现为塑性弯曲破坏, 跨中横截面变形符合平截面假定; 组合加固钢板与新混凝土之间以及加固部分与原结构之间相对滑移小于0.05mm, 因此, 加固后试验梁各部分协同工作性能较好; 与未加固梁相比, 钢板-混凝土组合加固试验梁抗弯极限承载力提高了1.08倍, 钢板-预应力混凝土组合加固试验梁抗弯极限承载力提高了1.43倍, 因此, 组合加固能显著提高试验梁的极限承载力; 与未加固梁相比, 2片加固试验梁的延性系数均提高了21%, 当试验荷载为200kN时, 2片加固试验梁刚度分别提高了1.55、3.07倍, 因此, 组合加固能显著提高试验梁的刚度和延性; 与钢板-混凝土组合加固技术相比, 钢板-预应力混凝土组合加固技术对试验梁在使用阶段的承载性能和刚度的提高更加明显; 2片加固试验梁抗弯极限承载力的计算值与试验值的比值分别为0.94和0.96, 因此, 抗弯极限承载力计算公式计算精度较高, 可用于钢板-混凝土组合加固预应力混凝土空心板梁的抗弯承载性能计算与分析。

     

  • 图  1  加载方案

    Figure  1.  Loading plan

    图  2  试验梁M3构造(单位: cm)

    Figure  2.  Configuration of test girder M3 (unit: cm)

    图  3  试验梁M3A-A截面(单位: cm)

    Figure  3.  A-A section of test girder M3 (unit: cm)

    图  4  试验梁M3B-B截面(单位: cm)

    Figure  4.  B-B section of test girder M3 (unit: cm)

    图  5  加载装置布置(单位: cm)

    Figure  5.  Loading device layout (unit: cm)

    图  6  加载装置三维模型Fig 6 3D model of loading device

    图  7  实际加载装置Fig 7 Actual loading device

    图  8  测点布置

    Figure  8.  Arrangement of measuring points

    图  9  跨中荷载-挠度曲线

    Figure  9.  Mid-span load-deflection curves

    图  10  M1梁弯曲破坏形态

    Figure  10.  Flexural failure mode of girder M1

    图  11  M2梁弯曲破坏形态

    Figure  11.  Flexural failure mode of girder M2

    图  12  M3梁弯曲破坏形态

    Figure  12.  Flexural failure mode of girder M3

    图  13  裂缝分布

    Figure  13.  Crack distributions

    图  14  荷载-刚度曲线

    Figure  14.  Load-stiffness curves

    图  15  M2梁跨中截面应变曲线

    Figure  15.  Mid-span section strain curves of girder M2

    图  16  M3梁跨中截面应变曲线

    Figure  16.  Mid-span section strain curves of girder M3

    图  17  跨中荷载-顶板混凝土应变曲线

    Figure  17.  Mid-span curves of load-strain of top flange concrete

    图  18  跨中底板钢筋荷载-应变曲线

    Figure  18.  Mid-span curves of load-strain of bottom steel bar

    图  19  跨中钢板荷载-应变曲线

    Figure  19.  Mid-span curves of load-strain of steel plate

    图  20  新老混凝土之间荷载-相对滑移曲线

    Figure  20.  Curves of load-relative slip between new and old concrete

    图  21  钢板与加固混凝土之间荷载-相对滑移曲线

    Figure  21.  Curves of load-relative slip between steel plate and strengthening concrete

    图  22  xhf时抗弯极限承载力计算图式

    Figure  22.  Calculation diagrams of ultimate flexural capacity when xhf

    图  23  x > hf时抗弯极限承载力计算图式

    Figure  23.  Calculation diagrams of ultimate flexural capacity when x > hf

    表  1  材料性能参数

    Table  1.   Material performance parameters

    下载: 导出CSV

    表  2  承载力试验结果

    Table  2.   Test results of bearing capacity

    下载: 导出CSV

    表  3  延性试验结果

    Table  3.   Test results of ductility

    下载: 导出CSV

    表  4  计算值与试验值对比

    Table  4.   Comparison of calculated values and test values

    下载: 导出CSV
  • [1] 冯正霖. 我国桥梁技术发展战略的思考[J]. 中国公路, 2015 (11): 38-41. doi: 10.3969/j.issn.1006-3897.2015.11.003

    FENG Zheng-lin. Thinking on the development strategy of bridge technology in China[J]. China Highway, 2015 (11): 38-41. (in Chinese). doi: 10.3969/j.issn.1006-3897.2015.11.003
    [2] 袁爱民, 周元华, 戴航, 等. 克服典型病害的新型预应力混凝土空心板梁设计[J]. 重庆大学学报, 2012, 35 (10): 124-129. doi: 10.11835/j.issn.1000-582X.2012.10.019

    YUAN Ai-min, ZHOU Yuan-hua, DAI Hang, et al. A new type of prestressed concrete hollow girder design for overcoming the typical diseases[J]. Journal of Chongqing University, 2012, 35 (10): 124-129. (in Chinese). doi: 10.11835/j.issn.1000-582X.2012.10.019
    [3] 单成林. 粘贴钢板或碳纤维加固受弯构件效果对比试验研究[J]. 应用基础与工程科学学报, 2011, 19 (1): 36-43. doi: 10.3969/j.issn.1005-0930.2011.01.005

    SHAN Cheng-lin. Contrast experimental effect between flexural member strengthened with bonding steel plate or CFRP[J]. Journal of Basic Science and Engineering, 2011, 19 (1): 36-43. (in Chinese). doi: 10.3969/j.issn.1005-0930.2011.01.005
    [4] 郭彤, 李爱群, 姚秋来, 等. 钢绞线网片-聚合物砂浆加固钢筋混凝土箱梁试验[J]. 中国公路学报, 2010, 23 (2): 36-42. doi: 10.3969/j.issn.1001-7372.2010.02.007

    GUO Tong, LI Ai-qun, YAO Qiu-lai, et al. Experiment on reinforced concrete box-girder strengthened by steel stranded wire mesh and polymer mortar[J]. China Journal of Highway and Transport, 2010, 23 (2): 36-42. (in Chinese). doi: 10.3969/j.issn.1001-7372.2010.02.007
    [5] 吴刚, 吴智深, 魏洋, 等. 预应力高强钢丝绳抗弯加固钢筋混凝土梁的理论分析[J]. 土木工程学报, 2007, 40 (12): 28-37. doi: 10.3321/j.issn:1000-131x.2007.12.004

    WU Gang, WU Zhi-shen, WEI Yang, et al. Theoretical analysis of the flexural behavior of RC beams strengthened with prestressed high strength steel wire ropes[J]. China Civil Engineering Journal, 2007, 40 (12): 28-37. (in Chinese). doi: 10.3321/j.issn:1000-131x.2007.12.004
    [6] 聂建国, 陶慕轩, 吴丽丽, 等. 钢-混凝土组合结构桥梁研究新进展[J]. 土木工程学报, 2012, 45 (6): 110-122. https://www.cnki.com.cn/Article/CJFDTOTAL-TMGC201206016.htm

    NIE Jian-guo, TAO Mu-xuan, WU Li-li, et al. Advances of research on steel-concrete composite bridges[J]. China Civil Engineering Journal, 2012, 45 (6): 110-122. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-TMGC201206016.htm
    [7] BASKAR K, SHANMUGAM N E. Steel-concrete composite plate girders subject to combined shear and bending[J]. Journal of Constructional Steel Research, 2003, 59 (4): 531-557. doi: 10.1016/S0143-974X(02)00042-1
    [8] FRAGIACOMO M, AMADIO C, MACORINI L. Finiteelement model for collapse and long-term analysis of steelconcrete composite beams[J]. Journal of Structural Engineering, 2004, 130 (3): 489-497. doi: 10.1061/(ASCE)0733-9445(2004)130:3(489)
    [9] PI Yong-lin, BRADFORD M A, UY B. Second order nonlinear inelastic analysis of composite steel-concrete members. Ⅰ: theory[J]. Journal of Structural Engineering, 2006, 132 (5): 751-761. doi: 10.1061/(ASCE)0733-9445(2006)132:5(751)
    [10] PI Yong-lin, BRADFORD M A, UY B. Second order nonlinear inelastic analysis of composite steel-concrete members. Ⅱ: applications[J]. Journal of Structural Engineering, 2006, 132 (5): 762-771. doi: 10.1061/(ASCE)0733-9445(2006)132:5(762)
    [11] FAELLA C, MARTINELLI E, NIGRO E. Steel-concrete composite beams in partial interaction: closed-form"exact"expression of the stiffness matrix and the vector of equivalent nodal forces[J]. Engineering Structures, 2010, 32 (9): 2744-2754. doi: 10.1016/j.engstruct.2010.04.044
    [12] 聂建国, 赵洁. 钢板-混凝土组合加固钢筋混凝土简支梁试验研究[J]. 建筑结构学报, 2008, 29 (5): 50-56. doi: 10.3321/j.issn:1000-6869.2008.05.007

    NIE Jian-guo, ZHAO Jie. Experimental study on simply supported RC beams strengthened by steel plate-concrete composite technique[J]. Journal of Building Structures, 2008, 29 (5): 50-56. (in Chinese). doi: 10.3321/j.issn:1000-6869.2008.05.007
    [13] 聂建国, 赵洁. 钢板-混凝土组合抗弯加固中滑移分布分析[J]. 清华大学学报: 自然科学版, 2007, 47 (12): 2085-2088, 2094. doi: 10.3321/j.issn:1000-0054.2007.12.001

    NIE Jian-guo, ZHAO Jie. Slip distribution analysis of steel plate-concrete composite flexural members[J]. Journal of Tsinghua University: Science and Technology, 2007, 47 (12): 2085-2088, 2094. (in Chinese). doi: 10.3321/j.issn:1000-0054.2007.12.001
    [14] 赵洁, 聂建国. 钢板-混凝土组合加固钢筋混凝土梁的非线性有限元分析[J]. 计算力学学报, 2009, 26 (6): 906-912. https://www.cnki.com.cn/Article/CJFDTOTAL-JSJG200906024.htm

    ZHAO Jie, NIE Jian-guo. Nonlinear finite element analysis of RC beams strengthened using steel plate-concrete composite technique[J]. Chinese Journal of Computational Mechanics, 2009, 26 (6): 906-912. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-JSJG200906024.htm
    [15] 聂建国, 赵洁, 唐亮. 钢板-混凝土组合在钢筋混凝土梁加固中的应用[J]. 桥梁建设, 2007 (3): 76-79. https://www.cnki.com.cn/Article/CJFDTOTAL-QLJS200703020.htm

    NIE Jian-guo, ZHAO Jie, TANG Liang. Application of steel plate and concrete composite to strengthening of reinforced concrete girder[J]. Bridge Construction, 2007 (3): 76-79. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-QLJS200703020.htm
    [16] 聂建国, 王宇航. 钢板-混凝土组合受弯加固梁疲劳性能试验研究[J]. 建筑结构学报, 2011, 32 (2): 1-9. https://www.cnki.com.cn/Article/CJFDTOTAL-JZJB201102002.htm

    NIE Jian-guo, WANG Yu-hang. Experimental research on fatigue behavior of RC beams strengthened by steel plateconcrete composite technique[J]. Journal of Building Structures, 2011, 32 (2): 1-9. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-JZJB201102002.htm
    [17] 王春生, 高珊, 任腾先, 等. 钢板-凝土组合加固带损伤钢筋混凝土T梁的抗弯性能试验[J]. 建筑科学与工程学报, 2010, 27 (3): 94-101.

    WANG Chun-sheng, GAO Shan, REN Teng-xian, et al. Bending behavior experiment of damaged RC T-beams with steel plate and concrete composite strengthening[J]. Journal of Architecture and Civil Engineering, 2010, 27 (3): 94-101. (in Chinese).
    [18] 王春生, 袁卓亚, 高珊, 等. 钢板-混凝土组合加固矩形梁的抗弯性能试验[J]. 中国公路学报, 2011, 24 (5): 65-73. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGL201105012.htm

    WANG Chun-sheng, YUAN Zhuo-ya, GAO Shan, et al. Flexural behavior test of rectangular reinforced concrete beams of steel plate-concrete composite strengthening[J]. China Journal of Highway and Transport, 2011, 24 (5): 65-73. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGL201105012.htm
    [19] 王春生, 袁卓亚, 郭晓宇, 等. 钢板-混凝土组合加固混凝土T梁的抗弯性能试验[J]. 交通运输工程学报, 2010, 10 (6): 21-29. http://transport.chd.edu.cn/article/id/201006006

    WANG Chun-sheng, YUAN Zhuo-ya, GUO Xiao-yu, et al. Flexural behavior experiment of reinforced concrete T-beams with steel plate-concrete composite strengthening[J]. Journal of Traffic and Transportation Engineering, 2010, 10 (6): 21-29. (in Chinese). http://transport.chd.edu.cn/article/id/201006006
    [20] 冯林军. 钢板-混凝土组合加固试验与实桥应用研究[D]. 西安: 长安大学, 2011.

    FENG Lin-jun. Experimental investigation and study on the bridges strengthened using steel plate and concrete composite strengthening technique[D]. Xi'an: Chang'an University, 2011. (in Chinese).
    [21] WANG Chun-sheng, WANG Qian, LIU Hao, et al. Study on shear resistance of full-scale PC box girder reinforced by SPCCS method[C]//TORERO J L, TENG Jin-guang, FERNANDO D. 2th International Conference on Performancebased and Life-cycle Structural Engineering. Brisbane: The University of Queensland, 2015: 512-521.
    [22] WANG Qian, LI Rui, LUO Qiao, et al. Study on full-scale bending experiment of concrete girder reinforced by steel plate and concrete composite strengthening method[C]//IABSE. IABSE Conference Geneva 2015: Structural Engineering: Providing Solutions to Global Challenges. Zürich: IABSE, 2015: 1-8.
    [23] DUAN Lan, GUO Yun-fei, WEN Yi-ping, et al. Shear Behaviour experimental study for full-scale PC box girder strengthened by composite strengthening method[C]//IABSE. IABSE Conference Guangzhou 2016: Bridges and Structures Sustainability-Seeking Intelligent Solutions. Zürich: IABSE, 2016: 98-105.
    [24] 方志, 汪建群, 何鑫, 等. 预应力混凝土简支箱梁受力性能足尺模型试验[J]. 中国公路学报, 2011, 24 (6): 49-56. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGL201106010.htm

    FANG Zhi, WANG Jian-qun, HE Xin, et al. Full-scale model test of loading behavior of prestressed concrete simply supported box girder[J]. China Journal of Highway and Transport, 2011, 24 (6): 49-56. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-ZGGL201106010.htm
    [25] HARRIES K A. Structural testing of prestressed concrete girders from the lake view drive bridge[J]. Journal of Bridge Engineering, 2009, 14 (2): 78-92.
    [26] ZHANG Jian-ren, LI Chuang-xi, XU Fei-hong, et al. Test and analysis for ultimate load-carrying capacity of existing reinforced concrete arch ribs[J]. Journal of Bridge Engineering, 2007, 12 (1): 4-12.
    [27] 张建仁, 彭晖, 张克波, 等. 锈蚀钢筋混凝土旧桥超限及极限荷载作用的现场破坏性试验研究[J]. 工程力学, 2009, 26 (增Ⅱ): 213-223. https://www.cnki.com.cn/Article/CJFDTOTAL-GCLX2009S2018.htm

    ZHANG Jian-ren, PENG Hui, ZHANG Ke-bo, et al. Test study on overload and ultimate behavior of old reinforced concrete bridge through destructive test of corroded bridge[J]. Engineering Mechanics, 2009, 26 (SⅡ): 213-223. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-GCLX2009S2018.htm
    [28] 钱永久, 滕蕴珊, 朱延明. 极限荷载作用下铁路钢筋混凝土旧桥的受力行为试验研究[J]. 西南交通大学学报, 1994, 29 (4): 423-428. https://www.cnki.com.cn/Article/CJFDTOTAL-XNJT404.014.htm

    QIAN Yong-jiu, TENG Yun-shan, ZHU Yan-ming. Experimental research on flexural behavior of a deteriorated RC bridge under ultimate loading[J]. Journal of Southwest Jiaotong University, 1994, 29 (4): 423-428. (in Chinese). https://www.cnki.com.cn/Article/CJFDTOTAL-XNJT404.014.htm
  • 加载中
图(23) / 表(4)
计量
  • 文章访问数:  714
  • HTML全文浏览量:  112
  • PDF下载量:  515
  • 被引次数: 0
出版历程
  • 收稿日期:  2017-10-26
  • 刊出日期:  2018-04-25

目录

    /

    返回文章
    返回