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空间缆悬索桥主缆牵引系统的布置和施工
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作者 徐靖 《四川水泥》 2024年第4期264-265,270,共3页
主缆牵引施工为悬索桥上部结构施工中重要工序,其设计的合理性直接影响牵引效率和施工工期。挪威哈罗格兰德大桥特殊的空间主缆和A型塔设计对于悬索桥上部结构施工提出新的挑战,针对空间主缆的施工方法及该桥实际主缆施工数量和施工周... 主缆牵引施工为悬索桥上部结构施工中重要工序,其设计的合理性直接影响牵引效率和施工工期。挪威哈罗格兰德大桥特殊的空间主缆和A型塔设计对于悬索桥上部结构施工提出新的挑战,针对空间主缆的施工方法及该桥实际主缆施工数量和施工周期需求,提出左右幅大循环牵引系统的施工方法,通过2台卷扬机、K岸和O岸转向架、简易通道、塔顶锚碇导轮组等形成牵引系统。在完成一个牵引施工的时间内,利用牵引期间人工需求较少的状态完成另一根索股的入鞍施工,提升了施工效率,节省了施工设备的投入,为空间缆悬索桥主缆牵引施工提供了新型解决方案。 展开更多
关键词 空间悬索桥 主缆牵引 牵引系统布置
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Construction techniques of super-length main cable of Taizhou Bridge
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作者 Shen Liangcheng Liang Jinda 《Engineering Sciences》 EI 2011年第2期51-56,共6页
Taizhou Bridge is a highway three-pylon two-span bridge with span arrangement of 1 080 m + 1 080 m and the length of the main cable is more than 3 100 m. It is the longest cable in China. As the erection of the main c... Taizhou Bridge is a highway three-pylon two-span bridge with span arrangement of 1 080 m + 1 080 m and the length of the main cable is more than 3 100 m. It is the longest cable in China. As the erection of the main cable needs to cross over three towers and the cables undulate acutely, general problems like the twist, spread and swell of strands and shedding of the zinc coating are prone to arise, which make it difficult to guarantee the quantity of cable traction construction. In this paper, the hauling, shaping and saddling of strands and sag adjusting are illustrated in detail and how to execute the refined construction control to guarantee the erection quality is also covered. 展开更多
关键词 Taizhou Bridge super-length main cable CONSTRUCTION
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