Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Installation method of ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate
The invention relates to a mounting method of a ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate. The mounting method comprises the following steps: surveying and setting out; deeply designing the model; deepened drawings are exported and blanked; a construction operation platform is built on the steel structure; mounting the column body and the ceiling main and auxiliary keels; mounting the column body and the ceiling multi-curved-surface special-shaped honeycomb aluminum plate; re-checking and adjusting the multi-curved-surface special-shaped aluminum honeycomb plate; splitting the aluminum plate; dismantling the working platform, and cleaning and repairing the main steel structure. According to the installation method of the ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate, three-dimensional laser scanning, an automatic measuring and paying-off robot and a digital information technology are comprehensively and cooperatively applied; the problems of difficulty in paying off and positioning, low processing precision of special-shaped materials, inaccuracy in mounting, difficulty in quality control and the like of the integral design of the hyperboloid special-shaped aluminum honeycomb plate ceiling column are successfully solved, the construction quality is ensured, the effect to be expressed by the design is perfectly shown, and higher economic and social benefits are obtained.
本发明涉及一种天花柱体一体化造型多曲面异形蜂窝铝板安装方法,包括测量放线;模型深化设计;深化图纸导出及下料;在钢结构上搭建施工作业平台;柱体和天花主副龙骨安装;柱体和天花多曲面异形蜂窝铝板安装;多曲面异形蜂窝铝板复核调整;铝板分缝处理;作业平台拆除,主钢结构清理修复。本发明的天花柱体一体化造型多曲面异形蜂窝铝板安装方法通过三维激光扫描,自动测量放线机器人、数字化信息技术的综合协同运用,成功解决了双曲面异形蜂窝铝板天花柱体一体化设计的放线定位困难、异形材料加工精度不高、安装不准确、质量控制困难等难题,保证了施工质量,完美展现了设计所要表达的效果,取得了较高的经济和社会效益。
Installation method of ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate
The invention relates to a mounting method of a ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate. The mounting method comprises the following steps: surveying and setting out; deeply designing the model; deepened drawings are exported and blanked; a construction operation platform is built on the steel structure; mounting the column body and the ceiling main and auxiliary keels; mounting the column body and the ceiling multi-curved-surface special-shaped honeycomb aluminum plate; re-checking and adjusting the multi-curved-surface special-shaped aluminum honeycomb plate; splitting the aluminum plate; dismantling the working platform, and cleaning and repairing the main steel structure. According to the installation method of the ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate, three-dimensional laser scanning, an automatic measuring and paying-off robot and a digital information technology are comprehensively and cooperatively applied; the problems of difficulty in paying off and positioning, low processing precision of special-shaped materials, inaccuracy in mounting, difficulty in quality control and the like of the integral design of the hyperboloid special-shaped aluminum honeycomb plate ceiling column are successfully solved, the construction quality is ensured, the effect to be expressed by the design is perfectly shown, and higher economic and social benefits are obtained.
本发明涉及一种天花柱体一体化造型多曲面异形蜂窝铝板安装方法,包括测量放线;模型深化设计;深化图纸导出及下料;在钢结构上搭建施工作业平台;柱体和天花主副龙骨安装;柱体和天花多曲面异形蜂窝铝板安装;多曲面异形蜂窝铝板复核调整;铝板分缝处理;作业平台拆除,主钢结构清理修复。本发明的天花柱体一体化造型多曲面异形蜂窝铝板安装方法通过三维激光扫描,自动测量放线机器人、数字化信息技术的综合协同运用,成功解决了双曲面异形蜂窝铝板天花柱体一体化设计的放线定位困难、异形材料加工精度不高、安装不准确、质量控制困难等难题,保证了施工质量,完美展现了设计所要表达的效果,取得了较高的经济和社会效益。
Installation method of ceiling cylinder integrated modeling multi-curved-surface special-shaped aluminum honeycomb plate
天花柱体一体化造型多曲面异形蜂窝铝板安装方法
ZHOU XIAOFEI (Autor:in) / HU YAKE (Autor:in) / LI YEFENG (Autor:in) / LU XIN (Autor:in) / AN QI (Autor:in) / ZHU LELE (Autor:in) / ZHANG WEN (Autor:in) / WANG FAKAI (Autor:in) / LI QIANG (Autor:in)
17.05.2024
Patent
Elektronische Ressource
Chinesisch
Europäisches Patentamt | 2023
|Europäisches Patentamt | 2022
|Europäisches Patentamt | 2020
|Europäisches Patentamt | 2020
|