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斜拉桥索鞍的抗滑键基于超张负摩阻锁紧的作用原理及施工工艺研究
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(上海市城市建设设计研究总院, 上海 200125)

作者简介:

黄锦源

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中图分类号:

TU753.3

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Research on the Principle and Construction Process of Anti-slip Key for Cable Saddle in Cable-stayed Bridges based on Super-Tension Negative Friction Locking Mechanism
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(Shanghai Urban Construction Design& Research Institute, Shanghai 200125, China)

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    摘要:

    斜拉桥中采用塔上鞍座锚固的钢绞线拉索在金属分丝管道内受到摩阻效应的影响而具有抗滑锚固性能。分析斜拉索钢绞线单侧布置抗滑键进行锁定、抗滑键双向交叉布置的型式实现拉索整体抗滑锚固构造的传力机理,同时提出斜拉索基于超张负摩阻锁紧抗滑键的作用原理及施工工艺。且考虑到有个别分丝管在施工中难免会变形或堵塞,造成钢绞线不能穿孔而形成质量事故,有必要采取措施防止。在原有的分丝管中增加备用管道是比较简单的有效方法,也可作为今后桥梁加固所需的备用管道。

    Abstract:

    The steel strand cables anchored on the anchorage saddle on the tower in cable-stayed bridges have anti-sliding anchoring properties due to the frictional effect inside the metal splitting tubes. This study analyzes the transmission mechanism of the overall anti-sliding anchoring structure of the cables by implementing single-side arrangement of anti-sliding keys or dual-directional crossing arrangement of anti-sliding keys. Additionally, the principles and construction techniques of using ultra-tensile negative friction lock-in anti-sliding keys for cable-stayed bridges are proposed. Considering the possibility of deformation or blockage of individual splitting tubes during construction, which may prevent the steel strands from passing through and result in quality accidents, preventive measures are necessary. Adding spare conduits within the existing splitting tubes is a simple and effective method, which can also serve as backup pipes for future bridge reinforcement needs.

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Jinyuan Huang Research on the Principle and Construction Process of Anti-slip Key for Cable Saddle in Cable-stayed Bridges based on Super-Tension Negative Friction Locking Mechanism. Prestress Technology 2017,21(04):26-29,32. 10.59238/j. pt.2017.04.006

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  • 在线发布日期: 2023-07-25
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