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Scaffold-free hyperbolic roof cornice curtain wall construction method based on BIM (Building Information Modeling)
The invention discloses a construction method for a hyperbolic roof cornice curtain wall based on a BIM and free of scaffold building. The invention discloses a hyperbolic roof cornice construction method based on BIM (Building Information Modeling), which comprises the following steps: establishing a U-shaped keel skeleton model of a hyperbolic roof cornice curtain wall based on visual programming of a BIM technology, and exporting a keel processing drawing, a positioning drawing and a material detail table; according to an on-site hoisting scheme, determining an optimal hoisting unit by utilizing finite element analysis; according to the keel machining drawing and the material detailed statement, machining of the optimal hoisting unit is completed on the ground, and hoisting is conducted; after the optimal hoisting unit is fixed with the main body, the internal structure is supplemented to form a keel frame; and the panel installation of the hyperbolic roof cornice curtain wall is implemented by taking the keel frame as a working platform. The method has the advantages that the manufacturing and mounting precision of the curtain wall is guaranteed; the keel frame is used as a working platform to install the auxiliary keel and the aluminum veneer, a scaffold does not need to be disassembled and assembled in the whole installation process, the construction risk is reduced, the construction progress and efficiency are improved, and finally the construction cost is saved.
基于BIM免搭脚手架的双曲屋面挑檐幕墙施工方法。本发明公开了一种基于BIM的双曲屋面挑檐施工方法,包括基于BIM技术的可视化编程建立双曲屋面挑檐幕墙的U型龙骨骨架模型,导出龙骨加工图、定位图、材料明细表;根据现场起吊方案,利用有限元分析确定最佳的吊装单元;按照所述龙骨加工图和所述材料明细表,在地面上完成所述最佳吊装单元的加工,并吊装;最佳吊装单元与主体固定后,补齐内部结构,形成龙骨框架;以所述龙骨框架为工作平台实施双曲屋面挑檐幕墙的面板安装。本发明优点在于保证了幕墙的制作安装精度;以龙骨框架为工作平台安装副龙骨和铝单板等其他施工工序,整个安装过程中不需要拆装脚手架,减少了施工风险,加快施工进度和效率,最终实现节约施工成本。
Scaffold-free hyperbolic roof cornice curtain wall construction method based on BIM (Building Information Modeling)
The invention discloses a construction method for a hyperbolic roof cornice curtain wall based on a BIM and free of scaffold building. The invention discloses a hyperbolic roof cornice construction method based on BIM (Building Information Modeling), which comprises the following steps: establishing a U-shaped keel skeleton model of a hyperbolic roof cornice curtain wall based on visual programming of a BIM technology, and exporting a keel processing drawing, a positioning drawing and a material detail table; according to an on-site hoisting scheme, determining an optimal hoisting unit by utilizing finite element analysis; according to the keel machining drawing and the material detailed statement, machining of the optimal hoisting unit is completed on the ground, and hoisting is conducted; after the optimal hoisting unit is fixed with the main body, the internal structure is supplemented to form a keel frame; and the panel installation of the hyperbolic roof cornice curtain wall is implemented by taking the keel frame as a working platform. The method has the advantages that the manufacturing and mounting precision of the curtain wall is guaranteed; the keel frame is used as a working platform to install the auxiliary keel and the aluminum veneer, a scaffold does not need to be disassembled and assembled in the whole installation process, the construction risk is reduced, the construction progress and efficiency are improved, and finally the construction cost is saved.
基于BIM免搭脚手架的双曲屋面挑檐幕墙施工方法。本发明公开了一种基于BIM的双曲屋面挑檐施工方法,包括基于BIM技术的可视化编程建立双曲屋面挑檐幕墙的U型龙骨骨架模型,导出龙骨加工图、定位图、材料明细表;根据现场起吊方案,利用有限元分析确定最佳的吊装单元;按照所述龙骨加工图和所述材料明细表,在地面上完成所述最佳吊装单元的加工,并吊装;最佳吊装单元与主体固定后,补齐内部结构,形成龙骨框架;以所述龙骨框架为工作平台实施双曲屋面挑檐幕墙的面板安装。本发明优点在于保证了幕墙的制作安装精度;以龙骨框架为工作平台安装副龙骨和铝单板等其他施工工序,整个安装过程中不需要拆装脚手架,减少了施工风险,加快施工进度和效率,最终实现节约施工成本。
Scaffold-free hyperbolic roof cornice curtain wall construction method based on BIM (Building Information Modeling)
基于BIM免搭脚手架的双曲屋面挑檐幕墙施工方法
ZHANG CHENGYU (author) / XU LIZAN (author) / WANG ZHIJU (author) / HUO RAN (author) / ZHANG YONGJUN (author) / DU YUNLONG (author) / WU LEIYONG (author) / PENG LEI (author) / SU XIAOBING (author) / LI YONGGAN (author)
2022-07-15
Patent
Electronic Resource
Chinese
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