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Combined elevator shaft climbing cylinder formwork device and construction method thereof
The invention discloses a combined elevator shaft climbing cylinder formwork device and a construction method thereof.The combined elevator shaft climbing cylinder formwork device comprises a supporting inner and outer formwork frame which climbs around an elevator shaft in a segmented concrete pouring mode, the supporting inner formwork frame is supported on a climbing ladder, the climbing ladder comprises an upper operation platform and a lower operation platform, the supporting inner formwork frame is supported on the upper operation platform, and the lower operation platform is supported on the lower operation platform; a guide rail frame is vertically and fixedly arranged in the center of the lower operation platform, a climbing rack is arranged on the guide rail frame, the upper operation platform is embraced with the guide rail frame through a guide wheel, a climbing motor is arranged on the upper operation platform, a climbing gear is arranged on the climbing motor through a reduction gearbox, and the climbing gear is meshed with the climbing rack. Forward rotation and reverse rotation of the climbing motor are controlled, and then the upper operation platform and the lower operation platform are controlled to climb upwards alternately; the elevator shaft main body structure is constructed through the method, the structure construction safety and the system stability are guaranteed, and the construction efficiency and quality are improved.
本发明公开了一种组合式电梯井道爬升筒模装置及其施工方法,包括围绕电梯井道分段混凝土浇筑爬升的支撑内外模框,支撑内模框被支撑在一个爬升梯上,所述爬升梯包括上操作平台和下操作平台,支撑内模框被支撑在上操作平台上,在下操作平台中央竖直固定设置有导轨架,导轨架上设置有爬升齿条,上操作平台通过导轮与导轨架相抱,在上操作平台上设置有爬升电机,爬升电机通过减速箱设置有爬升齿轮,爬升齿轮与爬升齿条相互啮合,控制爬升电机的正转和反转进而控制上操作平台和下操作平台向上交替爬升;通过本发明进行梯井主体结构施工,保证了结构施工安全和系统稳定性,提高了施工效率和质量。
Combined elevator shaft climbing cylinder formwork device and construction method thereof
The invention discloses a combined elevator shaft climbing cylinder formwork device and a construction method thereof.The combined elevator shaft climbing cylinder formwork device comprises a supporting inner and outer formwork frame which climbs around an elevator shaft in a segmented concrete pouring mode, the supporting inner formwork frame is supported on a climbing ladder, the climbing ladder comprises an upper operation platform and a lower operation platform, the supporting inner formwork frame is supported on the upper operation platform, and the lower operation platform is supported on the lower operation platform; a guide rail frame is vertically and fixedly arranged in the center of the lower operation platform, a climbing rack is arranged on the guide rail frame, the upper operation platform is embraced with the guide rail frame through a guide wheel, a climbing motor is arranged on the upper operation platform, a climbing gear is arranged on the climbing motor through a reduction gearbox, and the climbing gear is meshed with the climbing rack. Forward rotation and reverse rotation of the climbing motor are controlled, and then the upper operation platform and the lower operation platform are controlled to climb upwards alternately; the elevator shaft main body structure is constructed through the method, the structure construction safety and the system stability are guaranteed, and the construction efficiency and quality are improved.
本发明公开了一种组合式电梯井道爬升筒模装置及其施工方法,包括围绕电梯井道分段混凝土浇筑爬升的支撑内外模框,支撑内模框被支撑在一个爬升梯上,所述爬升梯包括上操作平台和下操作平台,支撑内模框被支撑在上操作平台上,在下操作平台中央竖直固定设置有导轨架,导轨架上设置有爬升齿条,上操作平台通过导轮与导轨架相抱,在上操作平台上设置有爬升电机,爬升电机通过减速箱设置有爬升齿轮,爬升齿轮与爬升齿条相互啮合,控制爬升电机的正转和反转进而控制上操作平台和下操作平台向上交替爬升;通过本发明进行梯井主体结构施工,保证了结构施工安全和系统稳定性,提高了施工效率和质量。
Combined elevator shaft climbing cylinder formwork device and construction method thereof
一种组合式电梯井道爬升筒模装置及其施工方法
CAO LIANGQING (author) / DAI LIANSHUANG (author) / GAO BAOYONG (author) / FANG LIANSHENG (author) / XUE HONGBO (author) / WAN MINGLI (author) / YANG CHEN (author) / NIU SHUQIANG (author) / ZHANG HONGLING (author) / WANG KE (author)
2023-08-11
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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