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Biaxial Shear Load Capacity of Anchor System for Quick-Hardening Track on Railway Bridges

机译:铁路桥梁快速加固轨道锚固系统的双轴抗剪承载力

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摘要

Quick-hardening railway track was developed to rapidly convert old-style ballast track to slab track in order to improve its maintainability and ride comfort. On bridges, quick-hardening track is applied in a segmented structure to reduce the temperature constraint, and anchors at the centers of the segments securely couple the track to the bridge. In this study, an anchor system is proposed that facilitates fast construction, and two designs for the proposed anchor systems are provided along with experimental test results of the same. Two anchor system designs were developed to allow for the maximum possible longitudinal and transverse loads in high-speed railways while considering the frictional resistance between the track slab and bridge deck. The biaxial shear capacity of each design was investigated experimentally, and the structural capacity for biaxial shear loads was evaluated using an elliptical curve to represent the longitudinal and transverse shear capacities. The minimum friction coefficient was determined based on the results of the evaluation to minimize damage to the anchor. The results obtained from the experiments confirmed that the proposed anchor systems possess sufficient shear capacity for application on high-speed railway bridges.
机译:快速硬化铁路轨道的开发是为了将旧式道track轨道迅速转换为平板轨道,以提高其可维护性和乘坐舒适性。在桥梁上,快速硬化的轨道以分段结构的形式应用,以减少温度限制,并且在分段中心的锚点将轨道牢固地连接到桥梁。在这项研究中,提出了一种有助于快速建造的锚固系统,并针对该锚固系统提供了两种设计以及相同的实验测试结果。考虑到轨道板与桥面板之间的摩擦阻力,开发了两种锚固系统设计,以允许高速铁路中最大的纵向和横向载荷。对每种设计的双轴抗剪承载力进行了实验研究,并使用椭圆曲线表示了纵向和横向抗剪承载力,评估了双轴抗剪承载力的结构承载力。根据评估结果确定最小摩擦系数,以最大程度地减少对锚的损坏。从实验中获得的结果证实,所提出的锚固系统具有足够的剪切能力,可用于高速铁路桥梁。

著录项

  • 来源
    《Advances in civil engineering》 |2018年第7期|9179343.1-9179343.14|共14页
  • 作者单位

    Kyungpook Natl Univ, Dept Civil Engn, 80 Daehakro, Daegu 41566, South Korea;

    KRRI, Adv Railrd Civil Engn Div, 176 Cheoldobangmulgwan Ro, Uiwang Si 16105, Gyeonggi Do, South Korea;

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