ZHAO Ping-rui, YANG Rong-shan, LIU Xue-yi. Interlaminar connection design of continuous combined ballastless track on simply supported bridge[J]. Journal of Traffic and Transportation Engineering, 2008, 8(2): 14-17.
Citation: ZHAO Ping-rui, YANG Rong-shan, LIU Xue-yi. Interlaminar connection design of continuous combined ballastless track on simply supported bridge[J]. Journal of Traffic and Transportation Engineering, 2008, 8(2): 14-17.

Interlaminar connection design of continuous combined ballastless track on simply supported bridge

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  • Author Bio:

    Zhao Ping-rui(1978-), male, doctoral student, +86-28-87601210, przhao@163.com

    Liu Xue-yi(1962-), male, PhD, professor, +86-28-87600270, xyliu@home.swjtu.edu.cn

  • Received Date: 2007-09-25
  • Publish Date: 2008-04-25
  • The interlaminar shear force of continuous combined ballastless track on 32 m simply supported bridge was studied under train load, temperature difference between track slab and support slab and braking force with conversion section method, finite element method and rigid simplified method respectively, its distribution diagram was gotten, and the interlaminar connection design was proposed based on the diagram.The result shows that the shear force under train load linear decreases from the bridge end to the middle; the shear force is concentrated in the 5 m region next to the bridge end when there is a 10 ℃ temperature difference between track slab and support slab; the shear force under braking force evenly distributes along the bridge, which equals to the longitudinal resistance of fastener; when the three factors act together, the shear force is controlled by the temperature difference, so more dowels and connection rebars should be set in the 5 m region, which is heavily influenced by the temperature difference.

     

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  • [1]
    Leykauf G, Lechner B, Stahl W. Trends in the use of slab track/ballastless tracks[J]. Rail way Track Review, 2006, 46(Special): 10-17.
    [2]
    赵国堂. 高速铁路无碴轨道技术[M]. 北京: 中国铁道出版社, 2005.
    [3]
    Esveld C. Recent development in slab track[J]. European Rail way Review, 2003, 9(2): 81-86.
    [4]
    吴克俭, 辛学忠. 遂渝铁路无碴轨道工程技术创新研究与实践[J]. 中国铁路, 2007, 46(3): 9-15.

    Wu Ke-jian, Xin Xue-zhong. Innovative study and practice on the engineering technologies of ballastless track on Suining-Chongqing rail way[J]. Chinese Rail way, 2007, 46(3): 9-15. (in Chinese)
    [5]
    吴冲. 现代钢桥(上册)[M]. 北京: 人民交通出版社, 2006.
    [6]
    铁建设[2007]47号, 新建时速300-350公里客运专线铁路设计暂行规定(上/下)[S].
    [7]
    赵坪锐, 杨荣山, 刘学毅, 等. 客运专线无碴轨道理论研究报告[R]. 成都: 西南交通大学, 2007.
    [8]
    铁道科学研究院. WJ-7扣件组装技术条件[M]. 北京: 中国铁道出版社, 2007.
    [9]
    顾兴宇, 吴一鸣. 钢桥桥面铺装层间剪应力影响因素及简化计算[J]. 交通运输工程学报, 2007, 7(3): 70-75.

    Gu Xing-yu, Wu Yi-ming. Influence factors and simplified calculation of interbedded shear stress of asphalt paving on steel bridge[J]. Journal of Traffic and Transportation Engineering, 2007, 7(3): 70-75. (in Chinese)
    [10]
    GB50010—2002, 混凝土结构设计规范[S].
    [11]
    李庆华. 材料力学[M]. 成都: 西南交通大学出版社, 2005.
    [12]
    TB10002.3—2005, 铁路桥涵钢筋混凝土和预应力混凝土结构设计规范[S].
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