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Automatic pressure relief device for controlling excessive water pressure of underground garage
The invention belongs to the technical field of constructional engineering, and particularly relates to an automatic pressure relief device for controlling water pressure of an underground garage, which comprises a sump, a water guide pipe and a linkage control mechanism. The linkage control mechanism is provided with a power storage device, a transmission gear, a pinion and a circular turning plate. The water guide pipe is arranged in the water collection pit, the power storage device is composed of a transmission handle, an upper force gear and the like, and the transmission handle is connected to the upper force gear through a ratchet seat. The transmission gear is connected with the power gear and the small gear, the round turning plate is connected with a small gear rotating shaft and rotates on the water guide pipe, and limiting jacking iron capable of limiting the round turning plate is welded in the water guide pipe. A maintenance shell is arranged outside the linkage control mechanism, and a positioning round hole and a limiting rectangular hole are formed and connected with a transmission handle and a transmission gear rotating shaft respectively; compared with the prior art, the device has the advantages that a mechanical device is not prone to failure, long-time operation can be achieved, and the maintenance cost is low, the anti-floating anchor rod or uplift pile work amount can be saved, and the problem that the garage water pressure roughly cracks and leaks water due to bottom plate cracking can be solved.
本发明属于建筑工程技术领域,具体为一种控制地下车库水压的自动泄压装置,含集水坑、导水管与联动控制机构。联动控制机构有动力储存装置、传动齿轮、小齿轮及圆形翻板。导水管置于集水坑中,动力储存装置由传动把手、上劲齿轮等构成,传动把手经棘轮座连至上劲齿轮。传动齿轮衔接上劲齿轮与小齿轮,圆形翻板连小齿轮转轴并于导水管转动,导水管内有焊接能够对圆形翻版进行限位的限位顶铁。联动控制机构外有维护壳体,设定位圆孔与限位矩形孔,分别连接传动把手与传动齿轮转轴;相比于现有技术,本发明具有机械装置不易失效可长久运行、维护成本低的优势,能够节约抗浮锚杆或抗拔桩工程量且能够解决车库水压大致底板开裂漏水的问题。
Automatic pressure relief device for controlling excessive water pressure of underground garage
The invention belongs to the technical field of constructional engineering, and particularly relates to an automatic pressure relief device for controlling water pressure of an underground garage, which comprises a sump, a water guide pipe and a linkage control mechanism. The linkage control mechanism is provided with a power storage device, a transmission gear, a pinion and a circular turning plate. The water guide pipe is arranged in the water collection pit, the power storage device is composed of a transmission handle, an upper force gear and the like, and the transmission handle is connected to the upper force gear through a ratchet seat. The transmission gear is connected with the power gear and the small gear, the round turning plate is connected with a small gear rotating shaft and rotates on the water guide pipe, and limiting jacking iron capable of limiting the round turning plate is welded in the water guide pipe. A maintenance shell is arranged outside the linkage control mechanism, and a positioning round hole and a limiting rectangular hole are formed and connected with a transmission handle and a transmission gear rotating shaft respectively; compared with the prior art, the device has the advantages that a mechanical device is not prone to failure, long-time operation can be achieved, and the maintenance cost is low, the anti-floating anchor rod or uplift pile work amount can be saved, and the problem that the garage water pressure roughly cracks and leaks water due to bottom plate cracking can be solved.
本发明属于建筑工程技术领域,具体为一种控制地下车库水压的自动泄压装置,含集水坑、导水管与联动控制机构。联动控制机构有动力储存装置、传动齿轮、小齿轮及圆形翻板。导水管置于集水坑中,动力储存装置由传动把手、上劲齿轮等构成,传动把手经棘轮座连至上劲齿轮。传动齿轮衔接上劲齿轮与小齿轮,圆形翻板连小齿轮转轴并于导水管转动,导水管内有焊接能够对圆形翻版进行限位的限位顶铁。联动控制机构外有维护壳体,设定位圆孔与限位矩形孔,分别连接传动把手与传动齿轮转轴;相比于现有技术,本发明具有机械装置不易失效可长久运行、维护成本低的优势,能够节约抗浮锚杆或抗拔桩工程量且能够解决车库水压大致底板开裂漏水的问题。
Automatic pressure relief device for controlling excessive water pressure of underground garage
一种用于控制地下车库水压过大的自动泄压装置
XI XINGWANG (Autor:in) / LIANG RUMING (Autor:in) / GE XUYAO (Autor:in) / HE XILIANG (Autor:in) / WANG BAIQIANG (Autor:in) / HE XIMAO (Autor:in) / LI LONG (Autor:in) / WANG SHIGUANG (Autor:in) / WANG XIN (Autor:in) / WANG HAO (Autor:in)
10.01.2025
Patent
Elektronische Ressource
Chinesisch
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