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Glass-hyperboloid perforated aluminum plate composite curtain wall construction method and composite curtain wall
The invention relates to a glass-double-curved-surface perforated aluminum plate composite curtain wall construction method which comprises the steps that a composite curtain wall BIM model is constructed through BIM, and the visual blanking process of a composite curtain wall assembly is simulated; according to the constructed composite curtain wall BIM model, finite element stress simulation analysis is conducted on the composite curtain wall assembly, and composite curtain wall BIM parameters are obtained; a 3D geometric model of the composite curtain wall assembly is obtained through 3D laser scanning, and then accurate positioning of the composite curtain wall assembly is obtained; constructing a BIM coordinate system by using the original point of the composite curtain wall BIM model, and combining the BIM coordinate system with the 3D geometric model to mount the composite curtain wall to obtain the mounting precision of the composite curtain wall; a curtain wall is deeply designed through the BIM technology, a double-curved-surface perforated aluminum plate, a steel structure keel, an inclined keel, a connecting piece, a double-curved-surface perforated aluminum plate suspended ceiling and the like are visually blanked, material optimization is conducted, and time and economic cost are saved for material machining and installation.
本发明涉及一种玻璃‑双曲面穿孔铝板复合幕墙施工方法,包括通过BIM构建复合幕墙BIM模型,模拟复合幕墙组件的可视化下料过程;根据构建的复合幕墙BIM模型,对复合幕墙组件进行有限元受力模拟分析,得到复合幕墙BIM参数;通过3D激光扫描获取复合幕墙组件的3D几何模型,进而得到复合幕墙组件的精准定位;利用复合幕墙BIM模型的原点构建BIM坐标系统,将BIM坐标系统与3D几何模型相结合进行安装复合幕墙,得到复合幕墙的安装精度;通过BIM技术对幕墙深化设计,对双曲面穿孔铝板、钢结构龙骨、斜向龙骨、连接件、双曲面穿孔铝板吊顶等进行可视化下料,并进行材料优化,为材料的加工安装节省时间和经济成本。
Glass-hyperboloid perforated aluminum plate composite curtain wall construction method and composite curtain wall
The invention relates to a glass-double-curved-surface perforated aluminum plate composite curtain wall construction method which comprises the steps that a composite curtain wall BIM model is constructed through BIM, and the visual blanking process of a composite curtain wall assembly is simulated; according to the constructed composite curtain wall BIM model, finite element stress simulation analysis is conducted on the composite curtain wall assembly, and composite curtain wall BIM parameters are obtained; a 3D geometric model of the composite curtain wall assembly is obtained through 3D laser scanning, and then accurate positioning of the composite curtain wall assembly is obtained; constructing a BIM coordinate system by using the original point of the composite curtain wall BIM model, and combining the BIM coordinate system with the 3D geometric model to mount the composite curtain wall to obtain the mounting precision of the composite curtain wall; a curtain wall is deeply designed through the BIM technology, a double-curved-surface perforated aluminum plate, a steel structure keel, an inclined keel, a connecting piece, a double-curved-surface perforated aluminum plate suspended ceiling and the like are visually blanked, material optimization is conducted, and time and economic cost are saved for material machining and installation.
本发明涉及一种玻璃‑双曲面穿孔铝板复合幕墙施工方法,包括通过BIM构建复合幕墙BIM模型,模拟复合幕墙组件的可视化下料过程;根据构建的复合幕墙BIM模型,对复合幕墙组件进行有限元受力模拟分析,得到复合幕墙BIM参数;通过3D激光扫描获取复合幕墙组件的3D几何模型,进而得到复合幕墙组件的精准定位;利用复合幕墙BIM模型的原点构建BIM坐标系统,将BIM坐标系统与3D几何模型相结合进行安装复合幕墙,得到复合幕墙的安装精度;通过BIM技术对幕墙深化设计,对双曲面穿孔铝板、钢结构龙骨、斜向龙骨、连接件、双曲面穿孔铝板吊顶等进行可视化下料,并进行材料优化,为材料的加工安装节省时间和经济成本。
Glass-hyperboloid perforated aluminum plate composite curtain wall construction method and composite curtain wall
一种玻璃-双曲面穿孔铝板复合幕墙施工方法及复合幕墙
YE PENGFEI (Autor:in) / GENG GUOHUA (Autor:in) / BAO GUIBO (Autor:in)
23.12.2022
Patent
Elektronische Ressource
Chinesisch
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