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Cantilever concrete structure with stay cables and construction method thereof
The invention discloses a cantilever concrete structure with a stay cable and a construction method thereof, and belongs to the technical field of building construction, the cantilever concrete structure comprises a building main body, a cantilever concrete structure and a stay cable, the stay cable comprises a cable body mounting seat, the mounting seat comprises a hollow base, and the interior area of the base is exposed out of the building main body and the cantilever concrete structure; a mounting sleeve is coaxially arranged in the base, a coaxial mounting cavity is formed in the side wall in the base, a plurality of connecting discs extending into the mounting cavity are coaxially arranged on the peripheral side of the mounting sleeve, and a plurality of radial adjusting structures used for moving the mounting sleeve in the radial direction of the base are arranged between the connecting discs and the mounting cavity; the installation sleeve is coaxially provided with a supporting sleeve used for being connected with a cable body, and the supporting sleeve and the installation sleeve are provided with a perpendicularity adjusting structure used for adjusting the perpendicularity of the supporting sleeve. The ends of the cable bodies are connected with the corresponding supporting sleeves. The invention aims to solve the problem that the internal force of the stay cable is changed and cannot be adjusted after the temporary support of the cantilever concrete structure with the stay cable is unloaded.
本发明公开了一种带斜拉索的悬挑混凝土结构及其施工方法,属于建筑施工技术领域,包括建筑主体、悬挑混凝土结构以及拉索,拉索包括索体安装座,安装座包括中空的基座,且基座内部区域均露出建筑主体、悬挑混凝体结构;基座内部同轴设置有安装套筒,基座内部侧壁上设置有同轴线的安装腔,安装套筒周侧同轴设置有若干伸入安装腔的连接盘,连接盘与安装腔之间设置有若干用于沿基座径向移动安装套筒的径向调节结构;安装套同轴设置有用于连接索体的支撑套筒,支撑套筒与安装套筒设置有用于调节支撑套筒垂直度的垂直调节结构;索体端部与对应支撑套筒连接;其目的在于解决带斜拉索的悬挑混凝土结构在临时支撑卸载后,拉索内力发生变化而无法调节的问题。
Cantilever concrete structure with stay cables and construction method thereof
The invention discloses a cantilever concrete structure with a stay cable and a construction method thereof, and belongs to the technical field of building construction, the cantilever concrete structure comprises a building main body, a cantilever concrete structure and a stay cable, the stay cable comprises a cable body mounting seat, the mounting seat comprises a hollow base, and the interior area of the base is exposed out of the building main body and the cantilever concrete structure; a mounting sleeve is coaxially arranged in the base, a coaxial mounting cavity is formed in the side wall in the base, a plurality of connecting discs extending into the mounting cavity are coaxially arranged on the peripheral side of the mounting sleeve, and a plurality of radial adjusting structures used for moving the mounting sleeve in the radial direction of the base are arranged between the connecting discs and the mounting cavity; the installation sleeve is coaxially provided with a supporting sleeve used for being connected with a cable body, and the supporting sleeve and the installation sleeve are provided with a perpendicularity adjusting structure used for adjusting the perpendicularity of the supporting sleeve. The ends of the cable bodies are connected with the corresponding supporting sleeves. The invention aims to solve the problem that the internal force of the stay cable is changed and cannot be adjusted after the temporary support of the cantilever concrete structure with the stay cable is unloaded.
本发明公开了一种带斜拉索的悬挑混凝土结构及其施工方法,属于建筑施工技术领域,包括建筑主体、悬挑混凝土结构以及拉索,拉索包括索体安装座,安装座包括中空的基座,且基座内部区域均露出建筑主体、悬挑混凝体结构;基座内部同轴设置有安装套筒,基座内部侧壁上设置有同轴线的安装腔,安装套筒周侧同轴设置有若干伸入安装腔的连接盘,连接盘与安装腔之间设置有若干用于沿基座径向移动安装套筒的径向调节结构;安装套同轴设置有用于连接索体的支撑套筒,支撑套筒与安装套筒设置有用于调节支撑套筒垂直度的垂直调节结构;索体端部与对应支撑套筒连接;其目的在于解决带斜拉索的悬挑混凝土结构在临时支撑卸载后,拉索内力发生变化而无法调节的问题。
Cantilever concrete structure with stay cables and construction method thereof
一种带斜拉索的悬挑混凝土结构及其施工方法
WANG XIAOLIN (author) / ZHANG MING (author) / MIAO FENG (author) / MA YUEYANG (author) / LI ZI'ANG (author) / YANG XU (author) / CHEN RUI (author) / ZHAO YUCHAO (author) / CHEN JINYANG (author)
2024-04-09
Patent
Electronic Resource
Chinese
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