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High Head Slurry Pump

High Head Slurry Pump

Models of high head slurry pump: Material of high head slurry pump: Driving method of the high head slurry pump? Driving method How to calculate the head of the slurry pump? Vertical Height: The vertical distance between the pump and the highest pointof pipe. Length of Pipe: The horizontal pipe...

Product Details

 

Models of high head slurry pump:

Type

Max. power

Capacity

Head

Speed

Max.Eff

NPSH

Impeller Dia.

Max.particle size

(kw)

(m³/h)

(m)

(r/min)

(%)

(m)

(mm)

(mm)

MAH1.5-1

15

12-28

6-65

1200-3800

40

2-4

150

14

MAH2-1.5

15

32-72

6-58

1200-3200

45

3.5-8

185

19

MAH3-2

30

39-86

12-64

1300-2700

55

4-6

215

25

MAH4-3

60

86-198

9-52

1000-2200

71

4-5

245

28

MAH6-4

120

162-360

12-56

800-1500

68

5-8

365

44

MAH8-6

120

360-830

10-61

500-1140

72

2-9

510

63

MAH10-8

260

612-1368

11-61

400-850

71

4-10

685

76

MAH12-10

560

936-1980

7-68

400-750

82

1-5

760

86

MAH14-12

560

1260-2772

13-63

300-600

77

3-10

965

90

Material of high head slurry pump:

Rubber Pumps Material

Metal Pumps Material

No

Part

Material

No

Part

Material

1

Base

Cast Iron

1

Base

Cast Iron

2

Shaft

4140 High Tensile Steel*

2

Shaft

4140 High Tensile Steel*

3

Bearing Assembly

Timken (Cast Iron Body)

3

Bearing Assembly

Timken (Cast Iron Body)

4

Shaft Sleeve

420 Stainless Steel

4

Shaft Sleeve

420 Stainless Steel

5

Pump Casing

Cast Iron

5

Pump Casing

Cast Iron

6

Frame Plate Liner Insert

Rubber

6

Frame Plate Liner

27% Chrome White Iron

7

Cover Plate Liner

Rubber

7

Volute Liner

27% Chrome White Iron

8

Impeller

Rubber Coated High Tensile Steel

8

Impeller

27% Chrome White Iron

9

Throat Bush

Rubber

9

Throat Bush

27% Chrome White Iron

10

Cover Plate

Cast Iron

10

Joint Rings

Rubber

11

Stuffing Box

Cast Iron

11

Cover Plate

Cast Iron

12

Expeller

27% Chrome White Iron

12

Stuffing Box

Cast Iron

13

Expeller Ring

Natural Rubber

13

Expeller

27% Chrome White Iron

14

Bolts

Zinc Plated Steel

14

Expeller Ring

Natural Rubber

15

O-rings

Nitrile Rubber

15

Bolts

Zinc Plated Steel

16

Seals

Rubber

16

O-rings

Nitrile Rubber

17

Seals

Rubber

17

Seals

Rubber

 Driving method of the high head slurry pump?

Driving method

high head slurry pump1

How to calculate the head of the slurry pump?

high head slurry pump2

Vertical Height:
The vertical distance between the pump and the highest pointof pipe.
Length of Pipe:
The horizontal pipe length(or how far the water will go horizontally).
Dredging Depth:
The vertical distance between the pump and the lowest working point in water.

To calculate the head of a slurry pump, you need to consider the following factors:

1. Slurry specific gravity: The specific gravity of the slurry will determine how much force is required to move the slurry. This factor is typically measured in pounds per gallon (ppg).

2. Pump speed: The speed at which the pump is operating will affect its ability to move the slurry. Pump speed is measured in revolutions per minute (RPM).

3. Pump size: The size of the slurry pump will also play a role in its ability to move the slurry. Pump size is typically measured in inches.

4. Pump efficiency: The efficiency of the high head slurry pump will determine how much energy is lost in the process of moving the slurry. This factor is expressed as a percentage.

5. Friction losses: Friction losses occur when the slurry flows through the pump and the pipeline. These losses will affect the head of the slurry pump.

To calculate the high head slurry pump, use the following formula:

Head (ft) = (flow rate x specific gravity x total dynamic head) / (pump speed x pump efficiency)

Where:

- Flow rate is expressed in gallons per minute (GPM).
- Specific gravity is expressed in pounds per gallon (ppg).
- Total dynamic head is the sum of the elevation head, pressure head, and friction head. This factor is expressed in feet.
- Pump speed is expressed in revolutions per minute (RPM).
- Pump efficiency is expressed as a percentage.

By using this formula, you can calculate the head of a slurry pump, which will help you determine its ability to move the slurry efficiently.

 

 

Email us for your solution:

miya@modopump.cn

 

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