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Frame assembly construction method for upper platform of offshore wind power booster station
The invention discloses a frame assembly construction method for an upper platform of an offshore wind power booster station, and relates to the technical field of offshore wind power booster stations. The frame assembly construction method comprises a bottom mounting frame, a first sliding groove is formed in the top of the bottom mounting frame, and a first sliding block is slidably connected into the first sliding groove; the top of the first sliding block is rotationally connected with an upper mounting frame, a third sliding groove is formed in one side of the upper mounting frame, a first rotating lead screw is rotationally connected into the third sliding groove, and a third sliding block is slidably connected into the third sliding groove. The device has the beneficial effects that the clamping range of the frame assembly can be adjusted more conveniently by using the first sliding block with the angle and the position convenient to adjust, and the stability of the frame assembly during lifting can be improved while the device is used through the auxiliary lifting rope which is arranged above the side mounting frame and used for auxiliary lifting; the possibility of faults is avoided, and the safety is improved.
本发明公开了一种用于海上风电升压站上部平台的框架组装施工方法,涉及海上风电升压站技术领域,包括底安装架,所述底安装架的顶部开设有第一滑动槽,所述第一滑动槽的内部滑动连接有第一滑动块,所述第一滑动块的顶部转动连接有上安装架,所述上安装架的一侧开设有第三滑动槽,所述第三滑动槽的内部转动连接有第一转动丝杆,所述第三滑动槽的内部滑动连接有第三滑动块,本发明的有益效果为:通过使用便于调节角度和位置的第一滑动块,可以更加方便的对框架组件的夹持范围进行调整,并且通过在侧安装架的上方用于进行辅助上升的辅助升降绳,可以在使用的同时增加进行框架组件升降时的稳定性,避免出现故障的可能,提高了安全性。
Frame assembly construction method for upper platform of offshore wind power booster station
The invention discloses a frame assembly construction method for an upper platform of an offshore wind power booster station, and relates to the technical field of offshore wind power booster stations. The frame assembly construction method comprises a bottom mounting frame, a first sliding groove is formed in the top of the bottom mounting frame, and a first sliding block is slidably connected into the first sliding groove; the top of the first sliding block is rotationally connected with an upper mounting frame, a third sliding groove is formed in one side of the upper mounting frame, a first rotating lead screw is rotationally connected into the third sliding groove, and a third sliding block is slidably connected into the third sliding groove. The device has the beneficial effects that the clamping range of the frame assembly can be adjusted more conveniently by using the first sliding block with the angle and the position convenient to adjust, and the stability of the frame assembly during lifting can be improved while the device is used through the auxiliary lifting rope which is arranged above the side mounting frame and used for auxiliary lifting; the possibility of faults is avoided, and the safety is improved.
本发明公开了一种用于海上风电升压站上部平台的框架组装施工方法,涉及海上风电升压站技术领域,包括底安装架,所述底安装架的顶部开设有第一滑动槽,所述第一滑动槽的内部滑动连接有第一滑动块,所述第一滑动块的顶部转动连接有上安装架,所述上安装架的一侧开设有第三滑动槽,所述第三滑动槽的内部转动连接有第一转动丝杆,所述第三滑动槽的内部滑动连接有第三滑动块,本发明的有益效果为:通过使用便于调节角度和位置的第一滑动块,可以更加方便的对框架组件的夹持范围进行调整,并且通过在侧安装架的上方用于进行辅助上升的辅助升降绳,可以在使用的同时增加进行框架组件升降时的稳定性,避免出现故障的可能,提高了安全性。
Frame assembly construction method for upper platform of offshore wind power booster station
一种用于海上风电升压站上部平台的框架组装施工方法
LI ZHIXIANG (author) / SHANG ZHENYI (author) / JIANG KUNSONG (author) / QIU LU (author) / LI JIN (author) / LIU QIANG (author) / WU CAN (author) / LIN WEI (author) / XU WENZHANG (author)
2024-12-06
Patent
Electronic Resource
Chinese
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