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Cable-stayed and diagonal bracing type supporting structure of cantilever structure of high-rise building
The invention discloses a high-rise building cantilever structure cable-stayed and diagonal bracing type supporting structure which comprises a structural plate and structural beams in the upper direction and the lower direction of the structural plate, an extending cantilever steel beam is arranged on the structural plate, and a length-adjustable cable-stayed rod is hinged between the front end of the cantilever steel beam and the structural beam above the cantilever steel beam. And a lower inclined strut is arranged between the front end of the cantilever steel beam and the structural beam below the cantilever steel beam. The invention has the following beneficial effects: the tying mode is simple, convenient and rapid to install; the stability of a supporting system in the construction of the cantilever structure of the high-rise building is effectively ensured; the occupied time of mechanical equipment such as a tower crane is shortened, the comprehensive production utilization rate of the mechanical equipment such as the tower crane is achieved, the construction efficiency is improved, and the construction period is shortened; safety risks caused by uneven stress when the steel wire rope is pulled and knotted and falling of tool parts when the steel wire rope is installed are reduced, and the overall engineering quality is improved; the welding and cutting operations are obviously reduced; the method is green, environment-friendly, energy-saving and material-saving, can be recycled and reused, and can be smelted and regenerated.
本发明公开了一种高层建筑悬挑结构斜拉斜撑式支撑结构,包括结构板和结构板上下方位的结构梁,结构板上设有伸出的悬挑钢梁,悬挑钢梁的前端与上方的结构梁之间铰接有长度可调的斜拉杆,悬挑钢梁的前端与下方的结构梁之间设有下斜撑。本发明的有益效果:本拉结方式安装简便、快捷;有效保证高层建筑悬挑结构施工中支撑体系的稳固性;减少对塔吊等机械设备的占用时间,发挥塔吊等机械设备的综合生产利用率,施工效率得以提升,缩短工期;减少了因钢丝绳拉结时受力不均匀和安装时工具零部件的掉落带来的安全风险,提高整体工程质量;显著减少焊接和切割作业;绿色,环保,节能,节材,可循环重复利用,可冶炼再生。
Cable-stayed and diagonal bracing type supporting structure of cantilever structure of high-rise building
The invention discloses a high-rise building cantilever structure cable-stayed and diagonal bracing type supporting structure which comprises a structural plate and structural beams in the upper direction and the lower direction of the structural plate, an extending cantilever steel beam is arranged on the structural plate, and a length-adjustable cable-stayed rod is hinged between the front end of the cantilever steel beam and the structural beam above the cantilever steel beam. And a lower inclined strut is arranged between the front end of the cantilever steel beam and the structural beam below the cantilever steel beam. The invention has the following beneficial effects: the tying mode is simple, convenient and rapid to install; the stability of a supporting system in the construction of the cantilever structure of the high-rise building is effectively ensured; the occupied time of mechanical equipment such as a tower crane is shortened, the comprehensive production utilization rate of the mechanical equipment such as the tower crane is achieved, the construction efficiency is improved, and the construction period is shortened; safety risks caused by uneven stress when the steel wire rope is pulled and knotted and falling of tool parts when the steel wire rope is installed are reduced, and the overall engineering quality is improved; the welding and cutting operations are obviously reduced; the method is green, environment-friendly, energy-saving and material-saving, can be recycled and reused, and can be smelted and regenerated.
本发明公开了一种高层建筑悬挑结构斜拉斜撑式支撑结构,包括结构板和结构板上下方位的结构梁,结构板上设有伸出的悬挑钢梁,悬挑钢梁的前端与上方的结构梁之间铰接有长度可调的斜拉杆,悬挑钢梁的前端与下方的结构梁之间设有下斜撑。本发明的有益效果:本拉结方式安装简便、快捷;有效保证高层建筑悬挑结构施工中支撑体系的稳固性;减少对塔吊等机械设备的占用时间,发挥塔吊等机械设备的综合生产利用率,施工效率得以提升,缩短工期;减少了因钢丝绳拉结时受力不均匀和安装时工具零部件的掉落带来的安全风险,提高整体工程质量;显著减少焊接和切割作业;绿色,环保,节能,节材,可循环重复利用,可冶炼再生。
Cable-stayed and diagonal bracing type supporting structure of cantilever structure of high-rise building
一种高层建筑悬挑结构斜拉斜撑式支撑结构
WANG CHENGJIAN (author) / MING YANJUN (author) / ZHANG XIAOLIANG (author) / HE GANG (author) / CHEN CHANGJUN (author) / CUI DONG (author) / WU PING (author) / HUANG TIANWEN (author) / SANG XIAOLONG (author) / YANG ZHUOPENG (author)
2022-11-01
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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