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Construction operation method and system for outer curtain wall of high-altitude large-span building corridor
The invention discloses a construction operation method and system for an outer curtain wall of a high-altitude large-span building corridor, a truss is supported and matched on rails on two sides through a bottom walking mechanism, winches and cantilevers are arranged on two sides of the top of the truss, and guide wheel trains for mounting lifting ropes and guide wheel trains for mounting transfer ropes are arranged on the cantilevers; the transfer rope is driven by a winch; the hoister drives the hoisting construction platform to ascend to the position near the bottom of the corridor through the hoisting rope, a longitudinal bottom construction hanging rope is arranged near the bottom of the corridor, and a safety rope is hung on the bottom construction hanging rope for corridor bottom ceiling construction; the hoister on the hanging basket drives the hanging basket to rise to the side face of the corridor through the hoisting rope, the safety rope and the side face construction hanging rope are connected for corridor side face curtain wall construction, and construction materials are obtained by driving the transfer rope to transfer back and forth between the ground and the construction area through the winch on the side where the construction materials are located. Integrated construction of a bottom suspended ceiling and a side curtain wall is achieved, and material transfer and installation construction are achieved under the condition that constructors do not fall to the ground.
本发明公开了一种高空大跨度建筑连廊外幕墙施工作业方法及系统,桁架通过底部行走机构支撑配合在两侧轨道上,桁架顶部两侧均设有卷扬机和悬臂,悬臂上均设有安装提升绳的导向轮系和安装转运绳的导向轮系,转运绳由卷扬机驱动;提升机通过提升绳带动吊装施工平台上升至连廊底部附近,连廊底部附近设有纵向的底部施工挂绳,将安全绳挂在底部施工挂绳上进行连廊底部吊顶施工;吊篮上的提升机通过提升绳带动吊篮上升至连廊侧面,将安全绳与侧面施工挂绳连接进行连廊侧面幕墙施工,施工材料通过所在侧的卷扬机驱动转运绳在地面与施工区域之间来回转运获得。本分实现了底部吊顶和侧面幕墙的一体化施工、施工人员不落地状态下材料转运和安装施工。
Construction operation method and system for outer curtain wall of high-altitude large-span building corridor
The invention discloses a construction operation method and system for an outer curtain wall of a high-altitude large-span building corridor, a truss is supported and matched on rails on two sides through a bottom walking mechanism, winches and cantilevers are arranged on two sides of the top of the truss, and guide wheel trains for mounting lifting ropes and guide wheel trains for mounting transfer ropes are arranged on the cantilevers; the transfer rope is driven by a winch; the hoister drives the hoisting construction platform to ascend to the position near the bottom of the corridor through the hoisting rope, a longitudinal bottom construction hanging rope is arranged near the bottom of the corridor, and a safety rope is hung on the bottom construction hanging rope for corridor bottom ceiling construction; the hoister on the hanging basket drives the hanging basket to rise to the side face of the corridor through the hoisting rope, the safety rope and the side face construction hanging rope are connected for corridor side face curtain wall construction, and construction materials are obtained by driving the transfer rope to transfer back and forth between the ground and the construction area through the winch on the side where the construction materials are located. Integrated construction of a bottom suspended ceiling and a side curtain wall is achieved, and material transfer and installation construction are achieved under the condition that constructors do not fall to the ground.
本发明公开了一种高空大跨度建筑连廊外幕墙施工作业方法及系统,桁架通过底部行走机构支撑配合在两侧轨道上,桁架顶部两侧均设有卷扬机和悬臂,悬臂上均设有安装提升绳的导向轮系和安装转运绳的导向轮系,转运绳由卷扬机驱动;提升机通过提升绳带动吊装施工平台上升至连廊底部附近,连廊底部附近设有纵向的底部施工挂绳,将安全绳挂在底部施工挂绳上进行连廊底部吊顶施工;吊篮上的提升机通过提升绳带动吊篮上升至连廊侧面,将安全绳与侧面施工挂绳连接进行连廊侧面幕墙施工,施工材料通过所在侧的卷扬机驱动转运绳在地面与施工区域之间来回转运获得。本分实现了底部吊顶和侧面幕墙的一体化施工、施工人员不落地状态下材料转运和安装施工。
Construction operation method and system for outer curtain wall of high-altitude large-span building corridor
高空大跨度建筑连廊外幕墙施工作业方法及系统
ZHANG BO (Autor:in) / LI LING (Autor:in) / XU SHIJIE (Autor:in) / HU XIAOGUANG (Autor:in) / WANG HUOHUA (Autor:in) / LIU JUNFENG (Autor:in) / XU XIAOQIN (Autor:in) / PENG KUN (Autor:in) / SU PEIJUN (Autor:in) / DAI WANTING (Autor:in)
22.07.2022
Patent
Elektronische Ressource
Chinesisch
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