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High-altitude large-span steel structure corridor and lifting construction method thereof
The invention discloses a high-altitude large-span steel structure corridor and a lifting construction method thereof, and relates to the technical field of building construction steel structure corridor lifting. The technical scheme is that the high-altitude large-span steel structure corridor comprises a middle lifting unit and hoisting units arranged on the two sides of the lifting unit, wherein the lifting unit comprises an ellipsoidal middle lifting section; each hoisting unit comprises a first hoisting end, a second hoisting end and a bulk section. The high-altitude large-span steel structure corridor has the beneficial effects that the comprehensive lifting construction method is used, so that the whole steel corridor is divided into the combination of three parts; the construction mode of two-side segmented lifting and middle overall lifting is adopted, so that the construction speed, construction safety and construction quality of steel structure corridor installation are improved, and the overall stability of the steel structure corridor is improved; the installation and construction difficulty is greatly reduced, and control over quality, safety, construction period, construction cost and the like is facilitated.
本发明公开了一种高空大跨度钢结构连廊及其提升施工方法,涉及建筑施工钢结构连廊提升技术领域,技术方案为,包括中间的提升单元和设置在提升单元两侧的吊装单元,提升单元包括椭球形的中间提升段,吊装单元包括位于中间提升段两侧的吊装端部一和吊装端部二以及散装段。本发明的有益效果是:本发明通过使用综合提升施工方法,将钢连廊整体分为三个部分的组合,采用“两侧分段吊装+中间整体提升”的施工方式,提高钢结构连廊安装的施工速度、施工安全性、施工质量、提高钢结构连廊的整体稳定性;将大大降低安装施工难度,于质量、安全、工期和施工成本控制等均有利。
High-altitude large-span steel structure corridor and lifting construction method thereof
The invention discloses a high-altitude large-span steel structure corridor and a lifting construction method thereof, and relates to the technical field of building construction steel structure corridor lifting. The technical scheme is that the high-altitude large-span steel structure corridor comprises a middle lifting unit and hoisting units arranged on the two sides of the lifting unit, wherein the lifting unit comprises an ellipsoidal middle lifting section; each hoisting unit comprises a first hoisting end, a second hoisting end and a bulk section. The high-altitude large-span steel structure corridor has the beneficial effects that the comprehensive lifting construction method is used, so that the whole steel corridor is divided into the combination of three parts; the construction mode of two-side segmented lifting and middle overall lifting is adopted, so that the construction speed, construction safety and construction quality of steel structure corridor installation are improved, and the overall stability of the steel structure corridor is improved; the installation and construction difficulty is greatly reduced, and control over quality, safety, construction period, construction cost and the like is facilitated.
本发明公开了一种高空大跨度钢结构连廊及其提升施工方法,涉及建筑施工钢结构连廊提升技术领域,技术方案为,包括中间的提升单元和设置在提升单元两侧的吊装单元,提升单元包括椭球形的中间提升段,吊装单元包括位于中间提升段两侧的吊装端部一和吊装端部二以及散装段。本发明的有益效果是:本发明通过使用综合提升施工方法,将钢连廊整体分为三个部分的组合,采用“两侧分段吊装+中间整体提升”的施工方式,提高钢结构连廊安装的施工速度、施工安全性、施工质量、提高钢结构连廊的整体稳定性;将大大降低安装施工难度,于质量、安全、工期和施工成本控制等均有利。
High-altitude large-span steel structure corridor and lifting construction method thereof
一种高空大跨度钢结构连廊及其提升施工方法
CHENG FEI (author) / ZHOU CHUNYU (author) / WANG YAKUN (author) / ZHOU LONG (author) / ZHAO WEIPENG (author) / GUO CHAO (author) / BI LEI (author) / FU SHULI (author) / LIU PENG (author) / XUE XIAOJIAN (author)
2022-01-07
Patent
Electronic Resource
Chinese
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