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The water gate energy dissipation device based on the woven structure is used for being arranged on a gate chamber bottom plate at the front end of a gate and comprises an energy dissipation mechanism arranged on the gate chamber bottom plate, and the energy dissipation mechanism comprises a lifting supporting seat, a friction structure, a stress plate, a reset spring, a transmission assembly and a supporting assembly; the rear end of the lifting supporting seat is hinged to a lock chamber bottom plate. The friction structure comprises a plurality of strip-shaped friction belts and a plurality of annular friction belts, and any two adjacent annular friction belts are attached to the two sides of the strip-shaped friction belts; the stress plate is fixed to the translation supporting frame and located on one side of the upper end of the rotating supporting frame. The transmission assembly is connected with the stress plate and the rotating supporting frame. The reset spring is arranged between the stress plate and the rotating supporting frame. The supporting assembly comprises a plurality of telescopic connecting rods, one ends of the telescopic connecting rods are fixedly connected with the stress plate, and the other ends of the telescopic connecting rods are hinged to the lock chamber bottom plate.
本发明涉及一种基于编织结构的水闸消能装置,用于设置在闸门的前端的闸室底板上,包括设置在闸室底板上的耗能机构,所述耗能机构包括升降支撑座、摩擦结构、受力板、复位弹簧、传动组件和支撑组件;所述升降支撑座的后端铰接于闸室底板;所述摩擦结构包括若干条形摩擦带和多个环形摩擦带,所述任意相邻的两个环形摩擦带贴靠在条形摩擦带的两侧;所述受力板固定在平移支撑架上,所述受力板位于转动支撑架的上端一侧;所述传动组件连接受力板和转动支撑架;所述复位弹簧设置在受力板和转动支撑架之间;所述支撑组件包括多个可伸缩连接杆,所述可伸缩连接杆的一端与受力板固定连接,另一端与闸室底板相铰接。
The water gate energy dissipation device based on the woven structure is used for being arranged on a gate chamber bottom plate at the front end of a gate and comprises an energy dissipation mechanism arranged on the gate chamber bottom plate, and the energy dissipation mechanism comprises a lifting supporting seat, a friction structure, a stress plate, a reset spring, a transmission assembly and a supporting assembly; the rear end of the lifting supporting seat is hinged to a lock chamber bottom plate. The friction structure comprises a plurality of strip-shaped friction belts and a plurality of annular friction belts, and any two adjacent annular friction belts are attached to the two sides of the strip-shaped friction belts; the stress plate is fixed to the translation supporting frame and located on one side of the upper end of the rotating supporting frame. The transmission assembly is connected with the stress plate and the rotating supporting frame. The reset spring is arranged between the stress plate and the rotating supporting frame. The supporting assembly comprises a plurality of telescopic connecting rods, one ends of the telescopic connecting rods are fixedly connected with the stress plate, and the other ends of the telescopic connecting rods are hinged to the lock chamber bottom plate.
本发明涉及一种基于编织结构的水闸消能装置,用于设置在闸门的前端的闸室底板上,包括设置在闸室底板上的耗能机构,所述耗能机构包括升降支撑座、摩擦结构、受力板、复位弹簧、传动组件和支撑组件;所述升降支撑座的后端铰接于闸室底板;所述摩擦结构包括若干条形摩擦带和多个环形摩擦带,所述任意相邻的两个环形摩擦带贴靠在条形摩擦带的两侧;所述受力板固定在平移支撑架上,所述受力板位于转动支撑架的上端一侧;所述传动组件连接受力板和转动支撑架;所述复位弹簧设置在受力板和转动支撑架之间;所述支撑组件包括多个可伸缩连接杆,所述可伸缩连接杆的一端与受力板固定连接,另一端与闸室底板相铰接。
Water gate energy dissipation device based on woven structure
一种基于编织结构的水闸消能装置
GAO SHAN (author)
2024-06-11
Patent
Electronic Resource
Chinese
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
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