Wholesale 100% Original AH Metal Lined Slurry Pump for Namibia Factory

Wholesale 100% Original AH Metal Lined Slurry Pump  for Namibia Factory

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Introduction Type AH, HH, M pumps are cantilevered, horizontal, centrifugal slurry pumps. They are designed for handling abrasive or corrosive slurry in the metallurgical, mining, coal, power, building material and other industrial departments etc. AH(R), HH are also called heavy duty slurry pumps, are used to transport the strong abrasive  high density or low density  high head slurry. Under the allowable pressure, the pumps of this type also can be installed in multistage series. HH type pu...


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Wholesale 100% Original AH Metal Lined Slurry Pump for Namibia Factory Detail:

Introduction

Type AH, HH, M pumps are cantilevered, horizontal, centrifugal slurry pumps. They are designed for handling abrasive or corrosive slurry in the metallurgical, mining, coal, power, building material and other industrial departments etc.

AH(R), HH are also called heavy duty slurry pumps, are used to transport the strong abrasive  high density or low density  high head slurry. Under the allowable pressure, the pumps of this type also can be installed in multistage series. HH type pump is mainly used for transport low density high head or high density low abrasive high head slurry.

M(R) is a kind of middle duty slurry pump, is used to transport the fine particle size and middle density slurry.

The liner and impeller of  AH(R) and M(R) model can be changeable and material can be either anti-abrasive metal or rubber, but material of liner and impeller of HH model only can be metal version. Rubber material wet parts are mainly used for transport the slurry which contains fine, non-sharp particle size.

The shaft seals for type AH(R), M(R) and HH pumps can be adoptable of gland seal, expeller seal and mechanical seal. The discharge  can be positioned at intervals of 45 degrees by request and oriented to any eight positions to suit installations and applications. 

Advantages
1. Discharge branch can be positioned at intervals of 45 degree. 
2. Good replaceability of components with original pump. 
3. Wear-resistant metal and long service life time. 
4. With greater axial and radial load rating capacity, 
5. Discharge direction can be installed at intervals of 45 degrees as request and oriented to any eight positions to suit applications. 
6. Suit different working condition.
7. Wide application, high efficiency and easy to maintain. 
8. Wide options for impeller. 
9. Bearing assembly use grease lubrication. 

Selection Chart and Performance

Pump   Model       Allowable Max. Power
(kw)
  Clear Water Performance  
   Capacity  Q Head
H (m)
      Speed    n (r/min)       Max.Eff.
(%)
NPSH   (m) Impeller. Dia.  (mm)
   m3/h        l/s     
1.5 / 1 B -AH 15 12.6-28.8 3.5-8 6-68 1200-3800 40 2-4 152
2 / 1.5 B -AH 15 32.4-72 9-20 6-58 1200-3200 45 3.5-8 184
3 / 2 C – AH 30 39.6-86.4 11-24 12-64 1300-2700 55 4-6 214
4 / 3 C – AH 30 86.4-198 24-55 9-52 1000-2200 71 4-6 245
4 / 3 D – AH 60 86.4-198 24-55 9-52 1000-2200 71 4-6 245
6 / 4 D – AH 60 162-360 45-100 12-56 800-1550 65 5-8 365
6 / 4 E – AH 120 162-360 45-100 12-56 800-1550 65 5-8 365
8 / 6 E – AH 120 360-828 100-230 10-61 500-1140 72 2-9 510
8 / 6 R – AH 300 360-828 100-230 10-61 500-1140 72 2-9 510
10 / 8 ST -AH 560 612-1368 170-380 11-61 400-850 71 4-10 686
12 / 10 ST – AH 560 936-1980 260-550 7-68 300-800 82 6 762
14 / 12 ST – AH 560 1260-2772 350-770 13-63 300-600 77 3-10 965
16 / 14 TU – AH 1200 1368-3060 380-850 11-63 250-550 79 4-10 1067
20 / 18 TU – AH 1200 2520-5400 700-1500 13-57 200-400 85 5-10 1370
1.5 /1 B -AH(R) 15 10.8-25.2 3-7 7-52 1400-3400 35 2-4 152
2 / 1.5 B – AH(R) 15 25.2-54 7-15 5.5-41 1000-2600 50 2.5-5 178
3 / 2 C – AH(R) 30 36-75.6 10-21 13-39 1300-2100 55 2-4 213
4 / 3 C – AH(R) 30 79.2-180 22-50 5-34.5 800-1800 59 3-5 245
4 / 3 D – AH(R) 60 79.2-180 22-50 5-34.5 800-1800 59 3-5 245
6 / 4 D – AH(R) 60 144-324 40-90 12-45 800-1350 65 3-5 365
6 / 4 E – AH(R) 120 144-324 40-90 12-45 800-1350 65 3-5 365
8 / 6 E – AH(R) 120 324-720 90-200 7-49 400-1000 65 5-10 510
8 / 6 R – AH(R) 300 324-720 90-200 7-49 400-1000 65 5-10 510
10 / 8 ST – AH(R) 560 540-1188 150-330 12-50 400-750 75 4-12 686
12 / 10 ST -AH(R) 560 720-1620 200-450 7-45 300-650 80 2.5-7.5 762
14 / 12 ST – AH(R) 560 1152-2520 320-700 13-44 300-500 79 3-8 965
16 / 14 TU – AH(R) 1200 1224-2754 340-765 9-43 250-450 82 3-8 1067
20 / 18 TU – AH(R) 1200 2268-4860 630-1350 11-46 200-350 82 2-8 1372
10 / 8 E – M 120 540-1440 150-400 14-60 600-1000 73 4-10 549
10 / 8 R – M 300 540-1440 150-400 14-60 600-1000 73 4-10 549
1.5 / 1 C -HH 30 16.2-34.2 4.5-9.5 25-92 1400-2200 20 2-5.5 330
3 / 2 D -HH 60 68.4-136.8 19-38 25-87 850-1400 47 3-7.5 457
4 / 3 E -HH 120 126-252 35-70 12-97 600-1400 50 2-5 508
6 / 4 F – HH 260 324-720 90-200 30-118 600-1000 64 3-8 711
8 / 6 S – HH 560 468-1008 130-280 20-94 500-1000 65 4-12 711
Remark:
1. Capacity range recommended: 50%Q’≤Q≤110%Q’(Q’ Appropriate to capacity at highest efficiency point).
2. NPSH: appropriate to point Q recommended at highest speed

1

Construction

The AH type slurry pumps have pump bodies that consist of replaceable wear-resistant metal liners or wear-resistant rubber liners, and impellers can also apply wear-resistant metal material or wear-resistant rubber material. The HH type slurry pumps only apply wear-resistant metal material as their pump bodies and impellers. 

2

Application
AH series slurry pump is widely used in metallurgy, mining, mineral processing, dredging, dewatering, water treatment, coal washing, mill, cyclone feed, tailing, power, building material…etc. various industrial sites. Our pumps are called different names for different working duties: Mineral processing pump, Mill discharge slurry Pump, Booster pump, Feeding pump, Tailing pump, Transfer pump Thickner Underflow Pump, De-watering screen pump, Pressure pump, Concentrate pump…

 


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Wholesale 100% Original AH Metal Lined Slurry Pump  for Namibia Factory detail pictures


We keep on with our business spirit of "Quality, Performance, Innovation and Integrity". We goal to create much more worth for our customers with our rich resources, state-of-the-art machinery, experienced workers and exceptional providers for Wholesale 100% Original AH Metal Lined Slurry Pump for Namibia Factory, The product will supply to all over the world, such as: Tanzania, Ukraine, Ecuador, We take measure at any expense to achieve essentially the most up-to-date equipment and approaches. The packing of nominated brand is our a further distinguishing feature. The products to assure years of trouble-free service has attracted a great deal customers. The solutions are obtainable in improved designs and richer assortment, they're created scientifically of purely raw supplies. It readily available in a variety of designs and specifications for your selection. The most recent kinds are a great deal better than the preceding one particular and they are quite popular with lots of prospects.


  • More Details : https://www.pakistancrushers.com/contact.php
    traditional method used at most mines involves the ore being broken and brought to the surface for . A primary gyratory crusher is used to reduce dump material from up to 1500mm to below 200mm in size before to stockpiles. and conveyors transport the ore to a two-stage where two secondary crushers reduce the size to below 50mm and 5 tertiary crushers further reduce the ore to below 20mm, operating in closed circuit with vibrating screens. product is then conveyed to fill the fine ore bins, each one feeding six rod mill / twin ball mill / flotation sections, all operating in parallel. Certain sections are used for wet grinding of marginal ore to below 0.3mm followed by copper flotation using methods similar to those for the underground ore. Concentrate is pumped to the dewatering plant, while magnetite is removed from the tailings before thickening and pumping to Foskor for phosphate flotation. A third secondary crusher feed stockpile is reserved for minus 200mm underground ore that can be diverted by means of a moveable chute and transfer conveyor. Underground ore is batched through the secondary crushing plant and directed to the fine ore bins. Each section is able to grind 6,000 Tpd of ore finer than 0.2mm before froth flotation. Copper ore crushing & grinding plant equipment There are two coarse ore stockpiles receiving material from the surface and underground crushers. Crushed ore is reclaimed by four vibrating feeders under each stockpile. The grinding circuit is comprised of two separate modules, each incorporating a Semi Autogenous Grinding (SAG) mill, oversize crushing technology, two stages of ball milling and froth flotation The primary crusher reduces ore from the trucks to 8-inches or less. Two rubber belt conveyors pull this material directly into each SAG mill where it is combined with water and mill balls (as needed). Copper ore is constantly flowing in and out of the SAG mills. The outflow passes through a set of vibrating screens and a water spray. The last screen has 10 mm x 20 mm slots in it. Anything that goes through this last screen or is washed off the bigger chunks by the water spray goes onto the ball mills. The oversized material is conveyed either directly back into the SAG mills, or it travels on a conveyor (the one closest to you and rising to the left in your image) to be stored in the “recycle pile” right. The copper ore is transported from the stockpile to the surface through a vertical shaft and is then moved to storage bins in conveyors. From the storage bins, the ore reaches the copper ore grinding mills. In the copper grinding mills, the ore is crushed into particles of less than 300mm and then ground to a slurry of less than 0.1mm. The slurry is then pumped to flotation plant where various minerals get separated. Flotation is carried out in tanks called flotation cells. Different minerals get separated at different stages. The skimmed minerals are dried on disc filters. Flotation Flotation takes place in two parallel modules, each linked to its own grinding circuit. The flotation process aims to float a sulphide concentrate to recover the major copper and gold bearing minerals. (The circuits consist of pre-float, rougher, scavenger, cleaner, cleaner-scavenger and re-cleaner treatment stages). The final concentrate produced for each module assays 34-36 per cent copper and is pumped to a concentrate thickener. Final tailings from each module are pumped to a tails thickener for dewatering. Froth flotation is considered to be the most widely used method for ore beneficiation. The process of froth flotation entails crushing and grinding the ore to a fine size. This fine grinding separates the individual mineral particles from the waste rock and other mineral particles. The grinding is normally done in water with the resultant slurry called the pulp. The pulp is processed in the flotation cells, which agitate the mixture and introduce air as small bubbles. Concentrate Thickening and Filtration Final concentrate from the flotation circuits is pumped to thickeners where it is thickened to an average underflow density of 60 per cent solids. Thickened concentrate is then pumped to concentrate storage tanks prior to treatment through the filtration circuit, using ceramic disc filters. The filtered concentrate is discharged onto slow moving conveyor belts, each equipped with a weightometer t



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