A high-altitude large-space suspended ceiling assembly type block installation construction method

By using BIM technology and a customized hoisting system, the entire process of high-altitude, large-space suspended ceilings is digitally controlled and assembled on the ground, solving the safety risks, accuracy, and efficiency problems in traditional suspended ceiling construction, and achieving efficient, safe, and low-carbon construction results.

CN122406950APending Publication Date: 2026-07-17CHINA CONSTRUCTION THIRD ENGINEERING BUREAU GENERAL CONTRACTING CONSTRUCTION CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA CONSTRUCTION THIRD ENGINEERING BUREAU GENERAL CONTRACTING CONSTRUCTION CO LTD
Filing Date
2026-06-09
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional suspended ceiling construction suffers from high safety risks, difficulty in ensuring accuracy, low efficiency, high material loss rate, and high cost under complex high-altitude conditions. It is particularly difficult to adapt to the high headroom, large span, and multi-functional space design of large public buildings.

Method used

BIM technology is used for collaborative detailed design and segment division, steel keel is assembled on the ground, a customized hoisting system and multi-point synchronous lifting are used, combined with wind speed monitoring, to achieve full-process digital control from design to installation, reduce high-altitude operations, and adopt standardized factory processing and ground assembly.

Benefits of technology

It significantly reduces the time spent working at heights and the frequency of hot work, improves construction safety and precision, shortens the construction cycle, reduces material waste and costs, and meets green and environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种高空大空间吊顶装配式分块安装施工方法,包括以下步骤:BIM协同深化设计与分榀划分:地面拼装胎架制作:装配式分榀桁架单元地面组装;定制吊装系统布设;装配式分榀桁架单元整体吊装与微调就位;相邻单元拼接固定与面板收尾。本发明有益效果:将90%以上的焊接、组装作业转移至地面完成,大幅减少高空作业时间和动火作业频次;采用定制吊装系统替代大吨位汽车吊,避免了高空临边作业的安全风险,通过BIM技术实现从设计、加工到安装的全流程数字化管控,提前化解专业碰撞,精准指导材料下料和组装;地面组装可有效控制龙骨焊接变形和面板安装精度,双曲造型曲率与BIM模型完全一致,整体吊顶曲面顺滑无折线。
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