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Cable-stayed bridge cable monitoring and maintaining device
The invention provides a cable-stayed bridge inhaul cable monitoring and maintaining device, and relates to the technical field of monitoring and maintaining devices.The cable-stayed bridge inhaul cable monitoring and maintaining device comprises an upper shell and a lower shell which are arranged on the outer side of an inhaul cable in a sleeving mode, the upper shell is detachably arranged above the lower shell, an overhauling mechanism is arranged between the upper shell and the lower shell, and an unmanned aerial vehicle is arranged above the upper shell through a second air cylinder; one side of the outer portion of the lower shell is in assembly connection with the bottom of the unmanned aerial vehicle through a fixing frame, one side of the upper shell and one side of the lower shell are rotationally connected through a hinge structure, the hinge structure is arranged on the side, close to the fixing frame, of the lower shell, and an upper mounting plate and a lower mounting plate are arranged on the outer side of the lower portion of the upper shell and the outer side of the upper portion of the lower shell correspondingly. And an inserting rod is adjustably arranged in the lower mounting plate. Through cooperation of the unmanned aerial vehicle, the upper shell, the lower shell, the hinge structure, the insertion plate and the insertion rod structure, the overhauling device can be automatically taken down from one inhaul cable and installed on the other inhaul cable, and the labor force of taking down the overhauling device and then installing the overhauling device after one inhaul cable is detected is saved.
本发明提供一种斜拉桥拉索监测维修装置,涉及监测维修装置技术领域,包括用于套设在拉索外侧的上壳体和下壳体,上壳体可拆卸设置在下壳体上方,上壳体与下壳体之间设有检修机构,上壳体的上方通过第二气缸设有无人机,下壳体外部一侧通过固定架与无人机底部装配连接,上壳体与下壳体之间一侧通过铰接结构转动连接,铰接结构设置在下壳体靠近固定架的一侧,上壳体的下方和下壳体上方的外侧分别设有上安装板和下安装板,下安装板内可调节设有插杆。本发明通过无人机、上壳体、下壳体、铰接结构、插板和插杆结构的配合,可实现对该检修装置自动从一个拉索上取下并安装至另一个拉索上,节省了检测完一个拉索后工作人员将其取下再安装的劳动力。
Cable-stayed bridge cable monitoring and maintaining device
The invention provides a cable-stayed bridge inhaul cable monitoring and maintaining device, and relates to the technical field of monitoring and maintaining devices.The cable-stayed bridge inhaul cable monitoring and maintaining device comprises an upper shell and a lower shell which are arranged on the outer side of an inhaul cable in a sleeving mode, the upper shell is detachably arranged above the lower shell, an overhauling mechanism is arranged between the upper shell and the lower shell, and an unmanned aerial vehicle is arranged above the upper shell through a second air cylinder; one side of the outer portion of the lower shell is in assembly connection with the bottom of the unmanned aerial vehicle through a fixing frame, one side of the upper shell and one side of the lower shell are rotationally connected through a hinge structure, the hinge structure is arranged on the side, close to the fixing frame, of the lower shell, and an upper mounting plate and a lower mounting plate are arranged on the outer side of the lower portion of the upper shell and the outer side of the upper portion of the lower shell correspondingly. And an inserting rod is adjustably arranged in the lower mounting plate. Through cooperation of the unmanned aerial vehicle, the upper shell, the lower shell, the hinge structure, the insertion plate and the insertion rod structure, the overhauling device can be automatically taken down from one inhaul cable and installed on the other inhaul cable, and the labor force of taking down the overhauling device and then installing the overhauling device after one inhaul cable is detected is saved.
本发明提供一种斜拉桥拉索监测维修装置,涉及监测维修装置技术领域,包括用于套设在拉索外侧的上壳体和下壳体,上壳体可拆卸设置在下壳体上方,上壳体与下壳体之间设有检修机构,上壳体的上方通过第二气缸设有无人机,下壳体外部一侧通过固定架与无人机底部装配连接,上壳体与下壳体之间一侧通过铰接结构转动连接,铰接结构设置在下壳体靠近固定架的一侧,上壳体的下方和下壳体上方的外侧分别设有上安装板和下安装板,下安装板内可调节设有插杆。本发明通过无人机、上壳体、下壳体、铰接结构、插板和插杆结构的配合,可实现对该检修装置自动从一个拉索上取下并安装至另一个拉索上,节省了检测完一个拉索后工作人员将其取下再安装的劳动力。
Cable-stayed bridge cable monitoring and maintaining device
一种斜拉桥拉索监测维修装置
CHEN KANG (Autor:in) / LUO GANG (Autor:in) / QI XINGYUAN (Autor:in) / ZI HE (Autor:in) / TIAN XINGWANG (Autor:in) / LUN YANSHENG (Autor:in) / HUANG RUIZHI (Autor:in) / WEI QINGZHU (Autor:in) / SUN SHANGPING (Autor:in) / ZHANG XIAOLEI (Autor:in)
26.03.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
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