Intelligent control cleaning device for portunids
A cleaning device and swimming crab technology, applied in shrimp/lobster processing, etc., can solve the problems of low cleaning rate, achieve convenient operation, prolong survival time, and solve the effect of secondary pollution
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Embodiment 1
[0024] Such as Figure 1-5 As shown, the intelligently controlled swimming crab cleaning device includes a transmission mechanism 1, a casing 3, a net bucket 4, a bucket 5 and a cleaning ball 10, and is characterized in that the transmission mechanism 1 is located in the bottom cavity formed by the casing 3 and the bucket 5 9, the reducer 13 at the upper end of the transmission mechanism 1 is connected to the pulsator 2 in the net barrel 4 through the rotating shaft 14, and the motor 11 of the transmission mechanism 1 is connected with the ozone generator 6 in the upper cavity of the outer casing 3 through a circuit , the upper side wall of the housing 3 is provided with a water inlet valve 31, the lower side wall is provided with a drain valve 32, the upper side of the housing 3 is provided with an outer cover 7, the upper plane of the housing 3 is provided with a control panel 8, and the mesh bucket 4 is removably set In the bucket 5, the cleaning ball 10 is directly dropped...
Embodiment 2
[0034] The working principle of the swimming crab cleaning device with intelligent control of the present invention is: when in use, the pulsator shaft 22 on the net bucket 4 is inserted and connected with the rotating shaft 14 of the reducer 13, and the waterproof cover is closed after putting crabs and cleaning balls 10 in the net bucket 4 41 and the outer cover body 7, when selecting a suitable cleaning mode, press the start button on the control panel 8, the water inlet valve 31 will automatically open the water inlet, and automatically stop the water inlet when reaching the set water level, and then the pulsator 2 will be cleaned according to the set water level. The rotation speed of the selected mode starts to rotate forward and reverse alternately. The design of the pulsator rib 23 drives the water in the bucket 5 to generate a spiral water flow. The resulting shock wave of the water flow can drive the rotation of the cleaning ball 10, forming a larger vortex to clean th...
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