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Experimental study on torsional behavior of spatial main cable for a self-anchored suspension bridge

机译:自锚式悬索桥空间主缆扭转性能的试验研究

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摘要

In order to understand the torsional behavior of the spatial main cable between two saddles for a self-anchored suspension bridge during the transition process from construction state to completed state, a scaled model (1:15) was prepared and tested. First, the cable anchorage system and cable measurement device were designed. Then, a series of model tests under the conditions of different preloading angles and different tensioning forces for hangers were carried out. Finally, the regularity of the torsional properties was revealed on the basis of the measured twist angle of the main cable. The experimental study shows that the transverse pre-deflected angle of the cable clamp has a decisive influence on the torsional angle of the main cable sections near the cable clamp, but for the main cable sections far from the pre-deflected cable clamp, this influence can almost be negligible. The torsional angle changes linearly within adjacent cable clamps. When inclined angle of the hanger is larger than the pre-deflected angle of the cable clamp, the cable clamp will cause the main cable section to twist in the positive direction, otherwise, the result is reverse. With the increase in the hanger force, the direction of hanger force passes through the cross-sectional center of the main cable, resulting in an unchanged twisting angle. In addition, a three-dimensional finite element model of the test specimen was established and used to analyze the influence of pre-deflected angle of a cable clamp on the torsion angle of the main cable, the same results can be found in finite element analyses in comparison with the test results. Therefore, a reasonable pre-deflected angle of cable clamp can be determined by the finite element model in the primary design state before the construction stage.
机译:为了了解自锚式悬索桥从施工状态到完工状态的过渡过程中,两个鞍座之间的空间主缆索的扭转行为,准备并测试了比例模型(1:15)。首先,设计了电缆锚固系统和电缆测量装置。然后,在不同的预紧角度和不同的张紧力条件下,进行了一系列的模型试验。最后,根据测得的主电缆扭曲角揭示了扭转性能的规律性。实验研究表明,电缆夹的横向预偏角对靠近电缆夹的主电缆段的扭转角具有决定性的影响,但对于远离预弯电缆夹的主电缆段的扭角,则有影响。几乎可以忽略不计。扭角在相邻的电缆夹中线性变化。当吊架的倾斜角度大于电缆夹的预偏转角度时,电缆夹将使主电缆部分向正方向扭曲,否则结果相反。随着吊架力的增加,吊架力的方向穿过主电缆的横截面中心,从而导致不变的扭曲角。此外,建立了试样的三维有限元模型,并用于分析电缆夹的预偏角对主电缆扭转角的影响,在有限元分析中也可以得到相同的结果。与测试结果比较。因此,在施工阶段之前的主要设计状态下,可以通过有限元模型确定电缆夹的合理预偏角。

著录项

  • 来源
    《Advances in Structural Engineering》 |2019年第14期|3086-3099|共14页
  • 作者

    Chuanxi Li; You Li; Jun He;

  • 作者单位

    School of Civil Engineering Changsha University of Science & Technology Changsha China|Key Laboratory for Safety Control of Bridge Engineering Ministry of Education Beijing China;

    School of Civil Engineering Changsha University of Science & Technology Changsha China;

    School of Civil Engineering Changsha University of Science & Technology Changsha China|Institute for Infrastructure and Environment Heriot-Watt University Edinburgh UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    main cable; model test; self-anchored suspension bridge; spatial cable; torsional effect; torsional property;

    机译:主电缆模型测试;自锚式悬索桥;空间电缆;扭转效应扭转财产;

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