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Introduce Of The Submersible Slurry Pump

Apr 16, 2020

Brand : DEPUMP

Definition:

SS type submersible slurry pump is a coaxial integration of water pump and motor.

When it works, it drives the impeller of water pump to rotate through the motor shaft, and transmits the energy to slurry medium, so as to generate a certain flow rate, drive the solid logistics, and realize the transportation of slurry.

Features: good abrasion resistance, large flow channel, simple operation

Uses: pumping sand, mud, coal ash, solid particles

Alias: submersible sand pump, submersible mud pump

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ZJQ series submersible slurry pump vertical slurry pump submersible suction pump

The unique design concept of submersible slurry pump guarantees advanced structure, wide flow channel and strong passing ability.

Coupled with excellent material selection, it is widely used in water conservancy projects, sewage treatment, electricity, building materials, chemicals, mining, petroleum, mining, shipbuilding, metallurgy, coal, municipal environmental protection and river dredging.

It is mostly used to transport liquids containing abrasive solid particles such as sludge, gravel, mud, impurities, slime, sludge, coal slag, and tailings.

Such as: thermal power plant ash removal, metallurgical beneficiation plant slurry transport, coal washing plant coal slurry and heavy medium transport, etc.

submersible slurry pump

Conditions of Use:

1. The power supply is 50Hz / 380V three-phase AC power supply or other voltage frequency

2. The maximum temperature of the medium should not be higher than 60 ℃, the medium does not contain flammable and explosive gases.

3. The maximum weight concentration of solid particles in the medium: 45% for ash and 60% for slag.

4. The diving depth of the crew: no more than 20 meters, the minimum depth is subject to the submerged motor.

5. The working position of the unit in the medium is vertical, and the working state is continuous.

sand dredging pump

Selection method:

1. Check whether the site conditions are consistent with the conditions of use (voltage, frequency, water quality, power supply capacity, etc.).

2. Initial selection of flow rate: Determine the flow rate of the sand pump according to the demand.

3. Calculation of pipeline loss: Calculate the pipeline loss according to the length of the pipeline and the number of bends and valves.

4. Calculation of pump head: sand pump head = vertical height difference from water surface to outlet + pipeline loss + safety margin (10%).

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