ES Gravel Pump
Capacity:to 4320 m³/h
Head:to 80 m
Liner Materails:Metal Pump
Type:Horizontal
ES series gravel(sand) pumps are horizontal single-casing slurry pumps with wide passage to transfer sand or slurry with big particle size. The wet parts are made of Ni-hard and high-Chrome alloys to ensure long service life. ES gravel pumps has far better performance than common pumps in dredging, sand mining, barge loading and mineral processing, etc. Featured with all the advantages of ES series, ESG series slurry gravel pump have achieved extra high head for special working conditions.
ES Sand Gravel Pump
1. Broad path created by single casing and clamp bands connection;
2. Unique design to make maintenance and wet parts replacement convenient;
3. The wet parts are made of Ni-hard and high-chrome wear-resistant alloys with good anti-corrosive property;
4. The discharge direction of pump can be oriented in any direction of 360°;
5. The standard seal type is packing seal.
6. Good performance of NPSH.
Application and Reference
Series ES sand slurry pump are widely used in the mining, coal washing, power plant, metallurgy, petrochemical, building material, dredging, and other industrial departments, etc.
Typical Application:
Sand Excavation
Coal Washery
Power Plant
Mineral Processing Plants
Other industries
2013年10月28日星期一
2013年10月21日星期一
EHR Slurry Pump Structure
EHR cantilever slurry pump Structure
As for the drive types, such as V belt drive, gear reducer drive, fluid coupling drive, and frequency conversion drive devices. The pump of this type may be installed in multistage series to meet the delivery for long distance.
Bearing assembly of EHR series slurry mine pump use cylindrical structure, it is convenient to adjust the space between impeller and front liner and can be removed completely. Bearing assembly use grease lubrication.
The shaft seal of this kind of Rubber lined slurry pump could use the packing seal, expeller seal and mechanical seal. The discharge branch can be positioned at intervals of 45 degrees by request and oriented to any eight positions to suit various installation and application requirments.
2013年6月7日星期五
centrifugal pump's Impeller forms and pumping designs
Centrifugal pumps contain rotating impellers within stationary pump casings- To allow the impeller to rotate freely within the pump casing, a small clearance is designed to be maintained between the impeller and the pump casing. To maximize the efficiency of a centrifugal pump, it is necessary to minimize the amount of liquid leaking through this clearance from the high pressure or discharge side of the pump back to the low pressure or suction side.
Despite the various application types of centrifugal pumps in technical plants the operating ranges of the different designs depending upon size of the delivered flow, the delivery head and the number of revolutions another characteristic impeller form results in the case of aiming at an optimal efficiency. With the help of the rapidity and/or the specific number of revolutions the impellers can be split up according to their targeted application .
If very large volume flow rates are needed, or if the velocity of flow is limited in the entrance for reasons of the suction behaviour, radial flow pumps are frequently implemented in a multi-flow way. Thereby two impellers with same dimensions deliver in a common housing. With same delivery head the two flow rates are added together.
Since the maximum delivery head of an impeller is fixed by the pressure factor in dependence of the design and upward the number of revolutions limited by firmness reasons, for the achievement of large delivery heads several pump stages are connected in series. The delivery heads of the single stages are added with same flow rate.
Some wear or erosion will occur at the point where the impeller and the Centrifugal pump casing nearly come into contact. This wear is due to the erosion caused by liquid leaking through this tight clearance and other causes. As wear occurs, the clearances become larger and the rate of leakage increases. Eventually, the leakage could become unacceptably large and maintenance would be required on the pump.
Some wear or erosion will occur at the point where the impeller and the Centrifugal pump casing nearly come into contact. This wear is due to the erosion caused by liquid leaking through this tight clearance and other causes. As wear occurs, the clearances become larger and the rate of leakage increases. Eventually, the leakage could become unacceptably large and maintenance would be required on the pump.
To minimize the cost of pump maintenance, many centrifugal pumps are designed with wearing rings. Wearing rings are replaceable rings that are attached to the impeller and the pump casing to allow a small running clearance between theCentrifugal pumps impeller and the pump casing without causing wear of the actual impeller or centrifugal pump casingmaterial. These wearing rings are designed to be replaced periodically during the life of a pump and prevent the more costly replacement of the impeller or the casing.
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