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Hydrocyclone
Production: 1.5-60 t/h
Applications: They can be used in industries such as sand, aggregates, coal, industrial minerals, hard rock mining and more. Hydrocyclones have become widely used in mineral processing, such as, classification, desliming, fines recovery, densifying and dewatering. They are relatively inexpensive, process high volumes, take up minimal floor space and have no moving parts.
MOQ :
1
Introduction of Hydrocyclone
The hydrocyclone is a simple piece of equipment that uses fluid pressure to generate centrifugal force and a flow water which can separate particles a liquid medium. These particles must have a sufficiently different density relative to the medium in order to achieve separation.
Hydrocyclone Separators are effective in removing suspended particles from any flow stream of water where the specific gravity of the particle is heavier than the water it is in; the more significant the difference in the gravity between the water and the particle, the greater the efficiency of the removal process. Depending on the specific gravity of the particle and the viscosity of the flow stream, very small and denser particles can be removed.
Advantages of Hydrocyclone
1. Simple installation, easy to operate and maintain with no moving parts or screens.
2. Heavy duty, corrosion resistant construction for a long service life
3. Specially designed rubber cone/insert protects the neck from erosion and increases separation.
4. No electricity required low cost.
5. Excellent pre-removal to reduce load on downstream filtration components
6. Conical shape accelerates the velocity of the water increasing centrifical forces and maximizing separation.
Working principle Hydrocyclone
The classic hydrocyclone is a closed vessel designed to convert incoming liquid velocity into rotary motion. Slurry enters the feed inlet at a designated pressure and volume. Independent of the shape or configuration of the inlet, slurry follows the fall of the upper cylinder, this spins the entire contents of the vessel, creating centrifugal force in the liquid.
Centrifugal forces send coarser material to the outer wall to travel downward and be further accelerated in the conical sections. These coarser fractions then exit through the apex, or spigot, at the bottom of the hydrocyclone. The finer fractions are move toward the axis of the hydrocyclone where they move up toward the overflow outlet at the top of the vessel.
Technical data
Diameter
(mm)
Feeding hopper
Overflow
Sinking water
Taper
Cone
Cylinder
Capacity
100
30 x 5
14
11
20
275
60
1.5-9
30 x 7
15
30 x 10
26
125
25 x 10
50
15-30
20
225
110
2.4-15
150
40 x 8
20
15
20
326
100
4.8-54
40 x 10
30
40 x 12
40
250
50 x 20
125
35
20
595
170
6.5-61.2
300
75
125
50
20
800
200
24-60
size (mm)
outlet(mm)
hopper (mm)
(mm)
height (mm)
(m³/h)
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