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Intelligent adjustable method for steel structure curved roof
The invention discloses an intelligent adjustable method for a steel structure curved roof. The intelligent adjustable method comprises the following steps: 1) determining component parameters; 2) mounting the steel member; (3) four nodes are arranged at the four corners below the roof panel, node prisms are arranged below the nodes, and the two ends of connecting rods are hinged to the connecting nodes and the connecting pieces respectively; one end of the dowel bar is spherical and is rotatably arranged in the upper spherical hinge, the other end of the dowel bar is fixedly connected with the dowel bar magnet, the dowel bar magnet is arranged in the moving space of the lower spherical hinge, and the lower half part of a bar body is matched with the lower spherical hinge; the lower spherical hinge is placed in a hinge support, and the hinge support is connected with the keel through fixing pieces distributed at the four corners of the hinge support; the components are sequentially assembled according to the sequence; 4) debugging the device; (5) fixing the support; (6) adjusting parameters are obtained; 7) height adjustment; 8) angle adjustment; and (9) the steps (6)-(8) are repeated to complete installation of other roof panels of the whole equipment. The support can be effectively adjusted, and the device is simple, easy to operate, convenient to operate and low in manufacturing cost.
一种钢结构曲面屋面的智能可调节方法,包括以下步骤:1)、确定构件参数;2)、钢构件安装;3)、在屋面板下方四角设立四个节点,节点下方设置节点棱镜,连杆的两端分别与连接节点和连接件铰接;传力杆一端为球形,可旋转地内置在上球铰中,另一端与传力杆磁铁固定连接,传力杆磁铁内置在下球铰的移动空间中,杆身下半部分与下球铰匹配;下球铰放置在铰支座中,铰支座通过分布在其四角的固定片与龙骨连接;将各构件按照顺序依次组装;4)、装置调试;5)、支座固定;6)、调节参数获取;7)、高度调整;8)、角度调整;9)、重复步骤6)~8)完成整个设备的其余屋面板安装。本发明能有效的调整支座,而且简单易行、操作方便、造价低。
Intelligent adjustable method for steel structure curved roof
The invention discloses an intelligent adjustable method for a steel structure curved roof. The intelligent adjustable method comprises the following steps: 1) determining component parameters; 2) mounting the steel member; (3) four nodes are arranged at the four corners below the roof panel, node prisms are arranged below the nodes, and the two ends of connecting rods are hinged to the connecting nodes and the connecting pieces respectively; one end of the dowel bar is spherical and is rotatably arranged in the upper spherical hinge, the other end of the dowel bar is fixedly connected with the dowel bar magnet, the dowel bar magnet is arranged in the moving space of the lower spherical hinge, and the lower half part of a bar body is matched with the lower spherical hinge; the lower spherical hinge is placed in a hinge support, and the hinge support is connected with the keel through fixing pieces distributed at the four corners of the hinge support; the components are sequentially assembled according to the sequence; 4) debugging the device; (5) fixing the support; (6) adjusting parameters are obtained; 7) height adjustment; 8) angle adjustment; and (9) the steps (6)-(8) are repeated to complete installation of other roof panels of the whole equipment. The support can be effectively adjusted, and the device is simple, easy to operate, convenient to operate and low in manufacturing cost.
一种钢结构曲面屋面的智能可调节方法,包括以下步骤:1)、确定构件参数;2)、钢构件安装;3)、在屋面板下方四角设立四个节点,节点下方设置节点棱镜,连杆的两端分别与连接节点和连接件铰接;传力杆一端为球形,可旋转地内置在上球铰中,另一端与传力杆磁铁固定连接,传力杆磁铁内置在下球铰的移动空间中,杆身下半部分与下球铰匹配;下球铰放置在铰支座中,铰支座通过分布在其四角的固定片与龙骨连接;将各构件按照顺序依次组装;4)、装置调试;5)、支座固定;6)、调节参数获取;7)、高度调整;8)、角度调整;9)、重复步骤6)~8)完成整个设备的其余屋面板安装。本发明能有效的调整支座,而且简单易行、操作方便、造价低。
Intelligent adjustable method for steel structure curved roof
钢结构曲面屋面的智能可调节方法
YANG YONG (author) / WANG CHANGCHUN (author) / MENG DESHENG (author) / WANG YANG (author) / WANG ZHENYA (author) / LAN YU (author)
2023-08-18
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
G01D
MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE
,
Anzeigen oder Aufzeichnen in Verbindung mit Messen allgemein
/
G05D
SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
,
Systeme zum Steuern oder Regeln nichtelektrischer veränderlicher Größen
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