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BIM technology-assisted double-curved-surface aluminum veneer construction method
The invention discloses a BIM technology-assisted double-curved-surface aluminum veneer construction method. The method comprises the steps of 1, auditing and confirming a drawing, putting the construction drawing on a drawing placement frame, carefully knowing the construction drawing of aluminum veneer installation, and knowing parameters of all installation nodes and a related spatial position relationship; and 2, establishing a BIM three-dimensional model, analyzing and confirming the two-dimensional design construction drawing, and establishing a three-dimensional BIM visual construction model on the basis; before construction, performing data analysis and extraction through a special-shaped structure part in the three-dimensional model so as to assist in field construction; according to the BIM construction technology, visual construction management is carried out on the project, three-dimensional visualization, controllability and intelligent refinement of field construction are achieved, the purposes of enhancing the construction quality and reducing the construction cost are achieved, the construction time is greatly shortened, and the material cost is reduced; and the drawing placement frame is arranged, so that the angle of the drawing on the placement plate can be adjusted, the drawing can be conveniently watched, the watching effect is improved, the method is relatively perfect, drawings with different sizes can be conveniently fixed, and the application range of equipment is enlarged.
本发明公开了一种BIM技术辅助双曲面铝单板施工方法,步骤一:图纸审核及确认,把施工图放在图纸放置架上,认真熟悉铝单板安装的施工图纸,了解各个安装节点的参数,以及相关空间位置关系;步骤二:建立BIM三维模型,通过对二维设计施工图纸进行分析确认,在此基础之上建立三维BIM可视化施工模型;施工前,通过三维模型中异形结构部位进行数据分析提取,从而辅助现场施工;BIM施工技术,对工程进行直观的施工管理,实现现场施工三维可视化、可控化、智能精细化,达到了强化施工质量、降低施工成本的目的,大大减少了施工时间,降低了材料费用;还有设置的图纸放置架,可以调节放置板上图纸角度,便于观看图纸,增加观看效果,比较完善,便于固定大小不一的图纸,增加了设备的使用范围。
BIM technology-assisted double-curved-surface aluminum veneer construction method
The invention discloses a BIM technology-assisted double-curved-surface aluminum veneer construction method. The method comprises the steps of 1, auditing and confirming a drawing, putting the construction drawing on a drawing placement frame, carefully knowing the construction drawing of aluminum veneer installation, and knowing parameters of all installation nodes and a related spatial position relationship; and 2, establishing a BIM three-dimensional model, analyzing and confirming the two-dimensional design construction drawing, and establishing a three-dimensional BIM visual construction model on the basis; before construction, performing data analysis and extraction through a special-shaped structure part in the three-dimensional model so as to assist in field construction; according to the BIM construction technology, visual construction management is carried out on the project, three-dimensional visualization, controllability and intelligent refinement of field construction are achieved, the purposes of enhancing the construction quality and reducing the construction cost are achieved, the construction time is greatly shortened, and the material cost is reduced; and the drawing placement frame is arranged, so that the angle of the drawing on the placement plate can be adjusted, the drawing can be conveniently watched, the watching effect is improved, the method is relatively perfect, drawings with different sizes can be conveniently fixed, and the application range of equipment is enlarged.
本发明公开了一种BIM技术辅助双曲面铝单板施工方法,步骤一:图纸审核及确认,把施工图放在图纸放置架上,认真熟悉铝单板安装的施工图纸,了解各个安装节点的参数,以及相关空间位置关系;步骤二:建立BIM三维模型,通过对二维设计施工图纸进行分析确认,在此基础之上建立三维BIM可视化施工模型;施工前,通过三维模型中异形结构部位进行数据分析提取,从而辅助现场施工;BIM施工技术,对工程进行直观的施工管理,实现现场施工三维可视化、可控化、智能精细化,达到了强化施工质量、降低施工成本的目的,大大减少了施工时间,降低了材料费用;还有设置的图纸放置架,可以调节放置板上图纸角度,便于观看图纸,增加观看效果,比较完善,便于固定大小不一的图纸,增加了设备的使用范围。
BIM technology-assisted double-curved-surface aluminum veneer construction method
一种BIM技术辅助双曲面铝单板施工方法
ZHOU GUANGFU (Autor:in) / LI WEI (Autor:in) / WEI BO (Autor:in) / HU CHUANGUI (Autor:in) / SUN YUANBING (Autor:in) / ZHAI FENG (Autor:in) / NI JIDONG (Autor:in) / WU YINZHU (Autor:in)
29.06.2021
Patent
Elektronische Ressource
Chinesisch
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