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Hoisting construction system for door-shaped cable bent tower cross beam
The invention provides a hoisting construction system for a door-shaped cable bent tower beam, and relates to the field of door-shaped cable bent tower construction, the hoisting construction system comprises an assembling subsystem, a lifting subsystem, a supporting subsystem and a transverse supporting subsystem, the assembling subsystem is assembled on the ground, a beam profile steel mechanism is a hoisting supporting framework of the assembling subsystem, and after concrete pouring is completed, the beam profile steel mechanism is connected with the transverse supporting subsystem. The beam profile steel mechanism and the steel reinforcement framework are buried in a beam, the lifting subsystem is used for lifting the assembly subsystem to a set position, the supporting subsystem is used for locking the set position of the assembly subsystem on the inner side of a tower column, and the transverse supporting subsystem is arranged over the beam and used for finely adjusting and supporting the tower column in the early stage. And the transverse support subsystem is used for dismantling a template mechanism of the assembly subsystem in the later stage, so that the high-altitude operation risk and the construction difficulty can be greatly reduced, the construction period is shortened, the cost is saved, the system adapts to various geographical environments, the economical efficiency and the safety of the construction process are greatly improved, and the system has good use value for actual engineering.
本发明提供了一种门型索塔横梁的吊装施工系统,涉及门型索塔施工领域,包括拼装子系统、提升子系统、支撑子系统以及横撑子系统,拼装子系统在地面组装完成,横梁型钢机构是拼装子系统的吊装支撑骨架,混凝土浇筑完成后,横梁型钢机构和钢筋骨架埋设在横梁内,提升子系统用于吊装拼装子系统至设定位置,支撑子系统用于锁定拼装子系统在塔柱内侧的设定位置,横撑子系统布设在横梁的正上方,横撑子系统前期用于微调和支撑塔柱,横撑子系统后期用于拆除拼装子系统的模板机构,进而可以大幅降低高空作业风险和施工难度,缩短工期,节约成本,适应各种地理环境,极大提升施工过程的经济性和安全性,对实际工程具有很好的使用价值。
Hoisting construction system for door-shaped cable bent tower cross beam
The invention provides a hoisting construction system for a door-shaped cable bent tower beam, and relates to the field of door-shaped cable bent tower construction, the hoisting construction system comprises an assembling subsystem, a lifting subsystem, a supporting subsystem and a transverse supporting subsystem, the assembling subsystem is assembled on the ground, a beam profile steel mechanism is a hoisting supporting framework of the assembling subsystem, and after concrete pouring is completed, the beam profile steel mechanism is connected with the transverse supporting subsystem. The beam profile steel mechanism and the steel reinforcement framework are buried in a beam, the lifting subsystem is used for lifting the assembly subsystem to a set position, the supporting subsystem is used for locking the set position of the assembly subsystem on the inner side of a tower column, and the transverse supporting subsystem is arranged over the beam and used for finely adjusting and supporting the tower column in the early stage. And the transverse support subsystem is used for dismantling a template mechanism of the assembly subsystem in the later stage, so that the high-altitude operation risk and the construction difficulty can be greatly reduced, the construction period is shortened, the cost is saved, the system adapts to various geographical environments, the economical efficiency and the safety of the construction process are greatly improved, and the system has good use value for actual engineering.
本发明提供了一种门型索塔横梁的吊装施工系统,涉及门型索塔施工领域,包括拼装子系统、提升子系统、支撑子系统以及横撑子系统,拼装子系统在地面组装完成,横梁型钢机构是拼装子系统的吊装支撑骨架,混凝土浇筑完成后,横梁型钢机构和钢筋骨架埋设在横梁内,提升子系统用于吊装拼装子系统至设定位置,支撑子系统用于锁定拼装子系统在塔柱内侧的设定位置,横撑子系统布设在横梁的正上方,横撑子系统前期用于微调和支撑塔柱,横撑子系统后期用于拆除拼装子系统的模板机构,进而可以大幅降低高空作业风险和施工难度,缩短工期,节约成本,适应各种地理环境,极大提升施工过程的经济性和安全性,对实际工程具有很好的使用价值。
Hoisting construction system for door-shaped cable bent tower cross beam
一种门型索塔横梁的吊装施工系统
WANG BAOLIANG (Autor:in) / WANG CHANGJIANG (Autor:in) / LUO SHENGHONG (Autor:in) / WANG RENGUI (Autor:in) / ZHANG YAOLIN (Autor:in) / FU SHOUSHENG (Autor:in) / JIAN JIAXIN (Autor:in) / YU SHAOBIN (Autor:in) / SHA RENMING (Autor:in) / ZHANG CHENGJUN (Autor:in)
16.07.2024
Patent
Elektronische Ressource
Chinesisch
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