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Cavity structure construction climbing system and climbing method thereof
The invention discloses a cavity structure construction climbing system and a climbing method thereof. The cavity structure construction climbing system comprises an inner truss, an outer truss, a driving mechanism, an upper support and a lower support, the outer truss is arranged outside the inner truss in a sleeving mode, the inner truss is connected with the lower support, the outer truss is connected with the upper support, and the length of supporting legs of the upper support and the length of supporting legs of the lower support can be adjusted so that the supporting legs can be detachably connected with embedded parts on the inner side wall of a cavity structure. A driving mechanism is connected between the inner truss and the outer truss, the driving mechanism drives the inner truss to vertically move relative to the outer truss, and the upper bearing and the lower bearing are each provided with a telescopic operation platform. According to the cavity structure construction climbing system, automatic climbing of the inner truss and the outer truss is achieved through the driving mechanism, hoisting of a hoisting mechanism is not needed, the length of the supporting legs of the upper bearing and the length of the supporting legs of the lower bearing of the climbing system can be adjusted, and therefore the climbing system can adapt to climbing of cavity structures with different sections, and the universality of the climbing platform is greatly improved.
本发明公开了一种空腔结构施工爬升系统及其爬升方法。本空腔结构施工爬升系统,包括内桁架、外桁架、驱动机构、上支承和下支承,所述外桁架套于内桁架外部,内桁架与下支承连接,外桁架与上支承连接,上支承和下支承的支撑腿长度均可调节以与空腔结构内侧壁的预埋件可拆卸连接,内桁架与外桁架之间连接有驱动机构,驱动机构驱动内桁架相对于外桁架竖向移动,上支承和下支承上均安装有可伸缩作业平台。本发明提出的空腔结构施工爬升系统,通过驱动机构实现内桁架和外桁架的自动爬升,不需要吊装机构吊装,本爬升系统因为上支承和下支承的支撑腿长度可调整,因此,可适应不同截面的空腔结构的爬升,大大提高了本爬升平台的通用性。
Cavity structure construction climbing system and climbing method thereof
The invention discloses a cavity structure construction climbing system and a climbing method thereof. The cavity structure construction climbing system comprises an inner truss, an outer truss, a driving mechanism, an upper support and a lower support, the outer truss is arranged outside the inner truss in a sleeving mode, the inner truss is connected with the lower support, the outer truss is connected with the upper support, and the length of supporting legs of the upper support and the length of supporting legs of the lower support can be adjusted so that the supporting legs can be detachably connected with embedded parts on the inner side wall of a cavity structure. A driving mechanism is connected between the inner truss and the outer truss, the driving mechanism drives the inner truss to vertically move relative to the outer truss, and the upper bearing and the lower bearing are each provided with a telescopic operation platform. According to the cavity structure construction climbing system, automatic climbing of the inner truss and the outer truss is achieved through the driving mechanism, hoisting of a hoisting mechanism is not needed, the length of the supporting legs of the upper bearing and the length of the supporting legs of the lower bearing of the climbing system can be adjusted, and therefore the climbing system can adapt to climbing of cavity structures with different sections, and the universality of the climbing platform is greatly improved.
本发明公开了一种空腔结构施工爬升系统及其爬升方法。本空腔结构施工爬升系统,包括内桁架、外桁架、驱动机构、上支承和下支承,所述外桁架套于内桁架外部,内桁架与下支承连接,外桁架与上支承连接,上支承和下支承的支撑腿长度均可调节以与空腔结构内侧壁的预埋件可拆卸连接,内桁架与外桁架之间连接有驱动机构,驱动机构驱动内桁架相对于外桁架竖向移动,上支承和下支承上均安装有可伸缩作业平台。本发明提出的空腔结构施工爬升系统,通过驱动机构实现内桁架和外桁架的自动爬升,不需要吊装机构吊装,本爬升系统因为上支承和下支承的支撑腿长度可调整,因此,可适应不同截面的空腔结构的爬升,大大提高了本爬升平台的通用性。
Cavity structure construction climbing system and climbing method thereof
空腔结构施工爬升系统及其爬升方法
WANG KAIQIANG (author) / SUN QING (author) / HE CHENGLIN (author) / YANG DENG (author) / WANG PENG (author) / FANG XIAOLIN (author) / ZHU LEILEI (author) / CAO GAOWEI (author)
2024-03-26
Patent
Electronic Resource
Chinese
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