A platform for research: civil engineering, architecture and urbanism
Novel intelligent sluice radial gate locking device
The novel intelligent sluice arc-shaped gate locking device comprises a plurality of locking centering supporting devices arranged on the outer side of an arc-shaped gate leaf edge beam and a hydraulic door locking device arranged on a gate pier wall. The locking, centering and supporting device comprises a centering arc-shaped plate fixed outside the arc-shaped door leaf edge beam; the hydraulic door locking device comprises a door locking device base fixed to the gate pier wall, a door locking device main beam is hinged to the door locking device base, an arc-shaped saddle plate is arranged on the side, facing the arc-shaped door leaf, of the top of the door locking device main beam, a hydraulic cylinder upper hinge plate is arranged on the side, back to the arc-shaped door leaf, of the top of the door locking device main beam, and a hydraulic cylinder is hinged to the hydraulic cylinder upper hinge plate. The other end of the hydraulic cylinder is hinged to the door locking device base. The operation process is simple, and the problem of difficulty in manual centering operation and safety risks on site is solved; door locking or unlocking is achieved without on-site manual operation; the structure is scientific, rapid locking can be achieved without precise positioning, stress is definite, and impact resistance is high; the door lock has a good automatic centering function, and door locking can be achieved easily.
本发明是一种新型智能泄水闸弧形闸门锁定装置,包括设置在弧形门页边梁外侧的若干个锁定对中支撑装置以及设置在闸墩墙上的液压锁门器;锁定对中支撑装置包括固定在弧形门页边梁外的对中弧形板;液压锁门器包括固定在闸墩墙上的锁门器基座,锁门器基座上铰接有锁门器主梁,锁门器主梁顶部面向弧形门页的一侧设有弧形鞍板且背向弧形门页的一侧设有液压缸上铰接板,液压缸上铰接板上铰接有液压缸,液压缸另外一端铰接在锁门器基座上。本发明操作工艺简单,解决现场人工对中操作困难及安全风险;实现锁门或解锁无需现场人工操作功能;结构科学,无需精准定位即可实现快速锁定,受力明确,耐冲击力强;具有良好的自动对中功能,很容易实现锁门。
Novel intelligent sluice radial gate locking device
The novel intelligent sluice arc-shaped gate locking device comprises a plurality of locking centering supporting devices arranged on the outer side of an arc-shaped gate leaf edge beam and a hydraulic door locking device arranged on a gate pier wall. The locking, centering and supporting device comprises a centering arc-shaped plate fixed outside the arc-shaped door leaf edge beam; the hydraulic door locking device comprises a door locking device base fixed to the gate pier wall, a door locking device main beam is hinged to the door locking device base, an arc-shaped saddle plate is arranged on the side, facing the arc-shaped door leaf, of the top of the door locking device main beam, a hydraulic cylinder upper hinge plate is arranged on the side, back to the arc-shaped door leaf, of the top of the door locking device main beam, and a hydraulic cylinder is hinged to the hydraulic cylinder upper hinge plate. The other end of the hydraulic cylinder is hinged to the door locking device base. The operation process is simple, and the problem of difficulty in manual centering operation and safety risks on site is solved; door locking or unlocking is achieved without on-site manual operation; the structure is scientific, rapid locking can be achieved without precise positioning, stress is definite, and impact resistance is high; the door lock has a good automatic centering function, and door locking can be achieved easily.
本发明是一种新型智能泄水闸弧形闸门锁定装置,包括设置在弧形门页边梁外侧的若干个锁定对中支撑装置以及设置在闸墩墙上的液压锁门器;锁定对中支撑装置包括固定在弧形门页边梁外的对中弧形板;液压锁门器包括固定在闸墩墙上的锁门器基座,锁门器基座上铰接有锁门器主梁,锁门器主梁顶部面向弧形门页的一侧设有弧形鞍板且背向弧形门页的一侧设有液压缸上铰接板,液压缸上铰接板上铰接有液压缸,液压缸另外一端铰接在锁门器基座上。本发明操作工艺简单,解决现场人工对中操作困难及安全风险;实现锁门或解锁无需现场人工操作功能;结构科学,无需精准定位即可实现快速锁定,受力明确,耐冲击力强;具有良好的自动对中功能,很容易实现锁门。
Novel intelligent sluice radial gate locking device
一种新型智能泄水闸弧形闸门锁定装置
WANG CHENGSHENG (author) / XU FENG (author) / LIN HAO (author) / WANG GUOZHI (author) / LIU XIANGYU (author) / CHENG LEI (author) / HU XIGUANG (author) / SUN RONGFENG (author) / YIN LINYONG (author) / LUAN SHAOLUN (author)
2023-10-10
Patent
Electronic Resource
Chinese
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
New automatic radial sluice gate
Engineering Index Backfile | 1933
|European Patent Office | 2021
|European Patent Office | 2015
|