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Interface performance of horizontally placed cable-saddle in looping cable-anchored suspension bridge

delete2026-07-02
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PRE
AI
X
Xiaoming Wang
X
Xiaochen Wang
Y
Yong Shuai
Y
Yuan Sun *
C
Chenxi Li
Q
Qian Wu
DOI:10.1080/15732479.2026.2693132delete
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Abstract

Abstract

En 中文
For a looping cable-anchored suspension bridge, in which a main cable system is horizontally looped around deflection saddles, adequate cable-saddle slip resistance is required to ensure structural safety. However, the force-transfer mechanism within these anchorages is complicated, which makes the cable-saddle interfaces performance challenging. This study investigated the interfacial frictional resistance by analysing the cable-saddle interface of such a structure. An analytical method for evaluating anti-slip behaviour considering the lateral force of the main cable, including the effect of the self-weight of the cable strand, was derived in accordance with the structural characteristics. A numerical contact-friction model of the main cable–saddle interaction is established to validate the proposed method. The results demonstrate that the model realistically evaluates anti-slip capacity and accurately captures contact forces and stress distributions within the saddle groove. Quantitative analyses reveal that the vertical partitions inside the saddle significantly enhance the cable’s anti-slip capacity, and incorporating the self-weight of the main cable strand yields a refined 0.04% further increase in the calculated anti-slip safety factor. Accurately accounting for self-weight enables a precise determination of the anti-slip safety factor, facilitating refined safety assessments. This method provides a theoretical basis for the anti-slip design and safety assessment of looping-cable suspension bridges.
Keywords:
Lateral cable force
antislip performance
suspension bridge
looping cable
deflection saddle
interface analysis

Journal

Structure and Infrastructure Engineering cover
Structure and Infrastructure Engineering
IF:
2.6
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451
Citations:
5.3K

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C
CTCE Group
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3
Papers: 3
Citations: 0
C
cccc second highway consultants co., ltd
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5
Papers: 3
Citations: 0
C
Chang'an University
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3.1K
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H
huazhong university of science and technology
Scholars:
2.3W
Papers: 7.2K
Citations: 5
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