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Large-span steel structure corridor through type node hydraulic lifting and sliding in-place construction device
The invention discloses a large-span steel structure corridor through type node hydraulic lifting sliding in-place construction device, and relates to the technical field of steel corridors, the large-span steel structure corridor through type node hydraulic lifting sliding in-place construction device comprises a bearing base, hydraulic cylinders are fixedly arranged on the outer walls of the four corners of the top of the bearing base, and the piston ends of the four hydraulic cylinders are fixedly connected with the same lifting frame; the top of the lifting frame is connected with a U-shaped rotating frame through an electric rotating mechanism, the top of the U-shaped rotating frame is connected with a horizontal sliding plate through an electric sliding mechanism, and a centering and righting mechanism is arranged on the horizontal sliding plate. The centering and righting mechanism is designed, a centering sliding block connected to a connecting rod is controlled to move through contraction of a piston rod of an air cylinder, and under transmission of a transmission block and two transmission arms, the two centering sliding blocks can drive two righting plates to be centered and drawn close to automatically conduct precise centering and righting on the steel corridor placed on a horizontal sliding plate; and the operation difficulty is reduced, a large amount of adjustment time is saved, and the construction efficiency is effectively improved.
本发明公开了大跨度钢结构连廊贯通式节点液压提升滑移就位施工装置,涉及钢连廊技术领域,其包括承载底座,所述承载底座的顶部四角外壁均固设有液压缸,且四个液压缸的活塞端固定连接有同一个提升架,所述提升架的顶部通过电动旋转机构连接有U型旋转架,U型旋转架的顶部通过电动滑移机构连接有水平滑移板,且水平滑移板上设有对中扶正机构。本发明本发明设计有对中扶正机构,通过气缸活塞杆的收缩操控连接杆上连接的一个对中滑块移动,在传动块和两个传动臂的传动下,两个对中滑块会带动两个扶正板对中靠拢自动将放置在水平滑移板上的钢连廊进行精准的对中扶正,降低了操作难度,节省了大量的调整时间,有效的提高了施工效率。
Large-span steel structure corridor through type node hydraulic lifting and sliding in-place construction device
The invention discloses a large-span steel structure corridor through type node hydraulic lifting sliding in-place construction device, and relates to the technical field of steel corridors, the large-span steel structure corridor through type node hydraulic lifting sliding in-place construction device comprises a bearing base, hydraulic cylinders are fixedly arranged on the outer walls of the four corners of the top of the bearing base, and the piston ends of the four hydraulic cylinders are fixedly connected with the same lifting frame; the top of the lifting frame is connected with a U-shaped rotating frame through an electric rotating mechanism, the top of the U-shaped rotating frame is connected with a horizontal sliding plate through an electric sliding mechanism, and a centering and righting mechanism is arranged on the horizontal sliding plate. The centering and righting mechanism is designed, a centering sliding block connected to a connecting rod is controlled to move through contraction of a piston rod of an air cylinder, and under transmission of a transmission block and two transmission arms, the two centering sliding blocks can drive two righting plates to be centered and drawn close to automatically conduct precise centering and righting on the steel corridor placed on a horizontal sliding plate; and the operation difficulty is reduced, a large amount of adjustment time is saved, and the construction efficiency is effectively improved.
本发明公开了大跨度钢结构连廊贯通式节点液压提升滑移就位施工装置,涉及钢连廊技术领域,其包括承载底座,所述承载底座的顶部四角外壁均固设有液压缸,且四个液压缸的活塞端固定连接有同一个提升架,所述提升架的顶部通过电动旋转机构连接有U型旋转架,U型旋转架的顶部通过电动滑移机构连接有水平滑移板,且水平滑移板上设有对中扶正机构。本发明本发明设计有对中扶正机构,通过气缸活塞杆的收缩操控连接杆上连接的一个对中滑块移动,在传动块和两个传动臂的传动下,两个对中滑块会带动两个扶正板对中靠拢自动将放置在水平滑移板上的钢连廊进行精准的对中扶正,降低了操作难度,节省了大量的调整时间,有效的提高了施工效率。
Large-span steel structure corridor through type node hydraulic lifting and sliding in-place construction device
大跨度钢结构连廊贯通式节点液压提升滑移就位施工装置
MA MING (author) / QIN BAOTONG (author) / WANG MENGMENG (author) / YANG XIAOMENG (author) / LI HAIFENG (author) / LI YING (author) / YUAN SHUAI (author) / JIAO TAOTAO (author) / ZHENG SHUO (author) / LIU HUAN (author)
2023-12-26
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
G05D
SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
,
Systeme zum Steuern oder Regeln nichtelektrischer veränderlicher Größen
/
G08C
Übertragungssysteme für Messwerte, Regel-, Steuer- oder ähnliche Signale
,
TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
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