Movable sewage pump station maintenance cleaning device
By designing a mobile sewage pump station maintenance and cleaning device, utilizing a tracked chassis, cleaning components, and flushing components, the problems of low efficiency and safety risks of traditional cleaning methods are solved, achieving efficient and comprehensive sludge treatment and cleaning results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 南京沃锐特环境科技有限公司
- Filing Date
- 2025-08-07
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional sewage pump station cleaning methods are labor-intensive, inefficient, and pose safety risks. Existing cleaning devices are ineffective in treating sludge and can easily cause blockages in the conveying pipelines.
A mobile sewage pump station maintenance and cleaning device was designed, comprising a tracked chassis, a cleaning component, and a flushing component. The cleaning component crushes sludge through a main shaft and spiral blades, and a sewage pump transports the sludge. The flushing component cleans the sludge through multi-angle nozzles, and a support component is used to adjust the position and angle of the cleaning component.
It improves the efficiency and effectiveness of sewage tank cleaning, avoids blockage by large sludge masses, ensures the comprehensiveness and safety of cleaning, and enhances the flexibility and adaptability of the equipment.
Smart Images

Figure CN224514383U_ABST
Abstract
Claims
1. A mobile device for cleaning and maintenance of a sewage pumping station, characterized in that: include, Tracked chassis (100) is used to drive the device to move within the sewage tank; The cleaning assembly (200) includes a cleaning bucket (210), a main shaft (220) and a spiral blade (230) installed in the inner cavity of the cleaning bucket (210) for crushing sludge, a drive motor (240) and a reducer (250) installed on one side of the cleaning bucket (210) for providing crushing power, a suction pump (260) installed on the back of the cleaning bucket (210) for conveying, a shovel plate (270) and a guide plate (280) installed on the front of the cleaning bucket (210) for guiding, and a protective cover (290) for protecting the drive motor (240) and the reducer (250). The flushing assembly (300) includes a fixed base (310) fixed to the top of the tracked chassis (100), a support rod (320) located in the cavity of the fixed base (310), a diversion box (330) located above the fixed base (310), a first nozzle (340) communicating with the diversion box (330), a diversion pipe (350) fixed to the top of the cleaning bucket (210), a second nozzle (360) communicating with the diversion pipe (350), and a rotary motor (370), a drive gear (380), and a driven gear (390) installed in the cavity of the fixed base (310) for driving the support rod (320) to rotate. Support component (400) for supporting and adjusting cleaning component (200).
2. The mobile sewage pump station maintenance cleaning device of claim 1, wherein: The support assembly (400) includes an adjusting motor (410), a ball screw (420) drivenly connected to the output shaft of the adjusting motor (410), a ball nut (430) sleeved on the surface of the ball screw (420), connecting rods (440) fixed on both sides of the ball nut (430), a support plate (450) fixed to the connecting rods (440), a limiting plate (460) fixed to the top of the track chassis (100), a limiting rod (470) for supporting the support plate (450), and a support seat (480) for supporting the adjusting motor (410). The support seat (480) is fixed to the top of the track chassis (100), and the adjusting motor (410) is fixed to the support seat (480) by a movable pin. The two connecting rods (440) are fixedly connected to the support plate (450) at the ends away from the ball nut (430).
3. The mobile sewage pump station maintenance cleaning apparatus of claim 2, wherein: Two limiting plates (460) are provided, and the two ends of the limiting rod (470) pass through the two limiting plates (460) respectively and are fixedly connected to the two supporting plates (450). The other end of the supporting plate (450) is fixed to the cleaning bucket (210) by a movable pin.
4. The mobile sewage pump station maintenance and cleaning apparatus of claim 1, wherein: One end of the main shaft (220) is fixed to the inner wall of the cleaning bucket (210) by a bearing. The guide plate (280) is fixed on both sides of the front of the cleaning bucket (210). The shovel plate (270) is fixed to the lower end of the front of the cleaning bucket (210). The protective cover (290) is fixed to one side of the cleaning bucket (210). The drive motor (240) and the reducer (250) are both located in the inner cavity of the protective cover (290).
5. The mobile sewage pump station maintenance and cleaning apparatus of claim 1, wherein: Both ends of the surface of the main shaft (220) are fixedly connected with helical blades (230), and the two helical blades (230) are in opposite directions. The output shaft of the drive motor (240) is connected to the input shaft of the reducer (250). The output shaft of the reducer (250) is connected to the other end of the main shaft (220). The outlet of the sewage pump (260) is connected to an external conveying pipe.
6. The mobile sewage pump station maintenance and cleaning apparatus of claim 1, wherein: The output end of the support rod (320) extends through the outside of the fixed seat (310) and is fixedly connected to the diversion box (330). The inlet of the diversion box (330) is connected to an external water pipe through a rotating interface. One end of the support rod (320) located in the inner cavity of the fixed seat (310) is fixedly connected to the driven gear (390). The driven gear (390) is movably connected to the inner wall of the fixed seat (310) through a bearing.
7. The mobile sewage pump station maintenance cleaning apparatus of claim 1, wherein: The rotary motor (370) is fixedly connected to the inner wall of the fixed base (310), the output shaft of the rotary motor (370) is connected to the drive gear (380) for transmission, the drive gear (380) meshes with the driven gear (390), and the inlet of the diversion pipe (350) is connected to the external water pipe.