Goods high definition for M Metal Slurry Pump Supply to Colombia

Goods high definition for
 M Metal Slurry Pump Supply to Colombia

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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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Goods high definition for M Metal Slurry Pump Supply to Colombia 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 M 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
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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It can be our duty to satisfy your preferences and successfully serve you. Your pleasure is our best reward. We have been looking forward to the go to for joint expansion for Goods high definition for M Metal Slurry Pump Supply to Colombia, The product will supply to all over the world, such as: Paris , Mauritius , Thailand , Our items have national accreditation requirements for qualified, high quality goods, affordable value, was welcomed by people today all over the world. Our products will continue to enhance within the order and look forward to cooperation with you, Should really any of these products and solutions be of curiosity to you, be sure to letus know. We are likely to be content to offer you a quotation up on receipt of your detailed needs.


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    A brief video about Pressurised Heating Systems. How to drain them and fill them up. How to vent air from them. How to pressurise them. For more information visit our website at http://www.plumberparts.co.uk

    DIY

    In this video I’m going to tell you how to drain down a pressurised heating system. This particular system doesn’t have a feed and expansion tank in the loft or a ball valve for you to hold up or anything like that. It’s completely sealed and airtight
    so you have an expansion vessel, cold water fill and a pressure valve, and a pressure release valve as well. I’ve managed to locate the pressurization filling loop and I’ll just show you that now. Here’s the pump, that’s the flow from the boiler. This pipe coming down here is the feed pipe Here is our expansion tank. That will take any expansion for when the water heats up. So, there is a rubber diaphragm in there This side is air and this side here is water. THen we have our pressure gauge which currently reads about 1 bar when it’s cold.
    The heating system should be at about 1 and a half bar when it’s warm.
    There’s our first valve from the mains comes down here and there’s our second valve there. turn both of those off. Remember when draining any system
    to open up any 3-port or 2-port valves.
    put our hose on and drain the system down.
    You have your boiler with it’s flow to the radiator and it’s return back.
    You’ll have a cold feed coming in to a
    valve, then a hose that you saw upstairs when I showed you
    That will go through a manifold that connects to the expansion vessel. This has a rubber diaphragm inside. On one side of that you have water
    and on the other side you have air. There is a small schrader valve so that you can pump the air
    bag up to a certain pressure.
    Usually you’ll pump it up to 1 bar
    Also you have a high pressure relief valve. Now, for safety reasons there should never be any valves between the
    heating system or the components of the expansion vessel and the high
    pressure relief valve. That’s very important. When testing the air pressure in the air side of the expansion
    vessel, only ever do that when the system is drained down and there is no water pressure in there otherwise
    you’ll get a false reading. There is
    also a check valve that in a situation where the heating system pressure got above that
    of the cold water mains coming in, you couldn’t push heating system water back
    into the main supply come downstairs and find the
    lowest point of the system. Here’s our drain off just here on this lowest radiator.
    So, pop a hose on here. Open that fully up and then go back upstairs.
    So we come up here, open this air vent up
    make sure that these two valves are open so the thermostatic valve
    is fully open and the lockshield at the other end is open
    and open up the valve. Do that to every
    other radiator upstairs and after about 10 minutes, and do it to all of the rads downstairs.
    If you’re working on the radiators just upstairs
    then you won’t need to drain the one downstairs, will you? Once all the
    water has stopped coming out of the end of your hose and you’ve vented all the radiators that you want to work on upstairs and downstairs you can now work on everything
    You can now fill the system up again.
    Right, remove your hose and then shut off your drain off.
    go upstairs and go around all of the radiators upstairs and downstairs and shut all their air vents.
    go back to where the pressurization unit is and the fill loop is and open those valves and start to fill the system
    Just open that. Now we are reintroducing
    water into the system. You should see dial start to
    rise as pressure starts to build.
    Pressurize it up to about one and a half bar, then go back downstairs to the
    radiators and vent them out.
    As soon as there’s no more air coming
    out and it all stops go back upstairs and top the system up again
    Keep going around doing that until you have water coming out of each radiator and you’ve turned it off
    and then as soon as that’s done go back upstairs, pressurize the system to one bar and
    you should be done. what you do is pressurize it up to a bar, you
    bleed the rads. When no more air comes out shut that radiator. Go back upstairs
    repressurize to a bar, open that radiator, Leave the system at one bar
    and then when it comes and gets hot and you turn it all on it should only get up to
    one and a half bar

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    The sales manager has a good English level and skilled professional knowledge, we have a good communication. He is a warm and cheerful man, we have a pleasant cooperation and we became very good friends in private.
    5 Stars By Mario 2016-12-12 13:03
    High Quality, High Efficiency, Creative and Integrity, worth having long-term cooperation! Looking forward to the future cooperation!




    5 Stars By Fernando 2015-11-26 13:28