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Submersible agitator pump

A submersible agitator pump is a type of pump that is designed to be submerged in liquid and used to agitate and mix the contents in a tank, pond or lagoon. It is commonly used in wastewater treatment, mining and other industrial applications where there is a need for efficient mixing and circulation of large volumes of fluids. The agitator is typically a high-speed impeller that creates turbulence and helps to break apart solids and prevent settling. The pump motor is also typically sealed to prevent water from entering and damaging the electrical components.

A submersible slurry pump with agitator is a type of pump designed to handle abrasive and viscous fluids such as slurry, sand, and mud. The pump is typically submerged in the fluid it is pumping, allowing it to efficiently move the material without the risk of clogging or damage.

The agitator in the pump helps to break up and mix the solids within the fluid, making it easier for the pump to handle. This can be particularly useful in applications where the solids are prone to settling and becoming difficult to move.

Submersible slurry pumps with agitators are commonly used in a range of industries, including mining, construction, and wastewater treatment. They can be used in applications such as dewatering, sludge transfer, and sand and gravel extraction. The design of the pump can vary depending on the specific application and requirements, including the size of the solids being pumped, the flow rate required, and the distance the material needs to be moved.

The detailed structural features of the electric excavator sand pump:
1. The whole machine is a submersible pump type, and the motor adopts the oil chamber sealing method. There are three sets of mechanical seals inside, which can effectively prevent high-pressure water and impurities from entering the inner cavity of the motor.
2. The whole machine is integrated equipment, and the bottom is equipped with a stirring impeller, which does not need to be equipped with other auxiliary devices, which saves labor, is convenient to use, and saves costs.
3. The flow-passing parts (impeller and stirring impeller, etc.) are made of high-chromium wear-resistant alloy, which is resistant to abrasion and impact, and can pass through large solid particles.
4. The overall structure is compact. When working underwater, the stirring impeller is directly close to the deposition surface, and the concentration is controlled by the depth of the dive. Not limited by the suction range, the slag absorption rate is high, the dredging is cleaner, the power consumption is effectively reduced, and the efficiency is improved.
5. It is convenient to install auxiliary devices to solve engineering problems under special circumstances such as large specificity, high concentration or hardening of the medium.

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