Charge Amount:1.8-204.6t
Reference Power:5.6-6250t/d
Application Range:Metallurgy, chemical industry, coal, nonmetal ore dressing, environment protection, etc
The design purpose of ore concentrate is to increase the density of ore pulp and clean the useless clarified liquer. Widely applied in ore beneficiation factory, ore concentrate is also called pulp thickner or tailing thickner. The machine used in the coal beneficiation is also called coal concentrator.
Charge Amount:1.8-204.6t
Reference Power:5.6-6250t/d
Application Range:Metallurgy, chemical industry, coal, nonmetal ore dressing, environment protection, etc
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The design purpose of high efficiency concentrator is to increase the density of ore pulp and clean the useless clarified liquer. Ore concentrate, widely applied in suiyeh factory, is mainly used in the solid-liquid separation workmanship such as lixivium concentrate and waste water treatment. Because its major function is to deal with the ore pulp or gangue, it is also called pulp thickner or tailing thickner. The machine used in the coal beneficiation is also called coal concentrator.
High efficiency concentrator is designed according to the principle that the falling velocity is different due to the different proportion of material in liquid. Generally, it is made of metal board.
The major working feature of ore concentrator is that a certain amount of flocculant is added into the to-be-concentrated ore pulp to make the ore grain form floc sedimentation. Thus the fall velocity is accelerated and the concentration efficiency is also achieved.
Compared with the common concentrator, high efficiency thickner has obvious advantages such as small occupation area, low consumption power and vulnerable parts, large processing capacity and high concentrate efficiency. Its enlarged height-diameter ratio makes the fine ore pulp stay in the machine for a while.
peripheral driving thickener is made up of rake rack, feed rack, center bearing bracket, current collecting equipment and transmission. The motion and driving force are transferred to the truss hanging target by transmission, making the truss rotate centering on pool and delivering the concentrated products to the discharging port. Meanwhile, the clean water overflows from the pool and is discharged from the circular overflow launder. The transmission of this ore concentrator is more efficient and beautiful through optimization design.
(1) Deaerating tank is added to avoid solid particles adhering to the bubble, just like the sedimentation phenomenon of parachute.
(2) Feeder tube is set under the liquid level to avoid the air being brought.
(3) Feeder sleeve moves down and feeder tray is added, making the ore pulp evenly and stably fall in order to prevent the magic power phenomena from happening.
(4) Internal overflow weir is added, making the material flowing according to certain plan and prevent short circuit from happening.
(5) The shape of downflow weir is changed into sawtooth, thus the suction phenomenon of local drainage caused by the unbalanced overflow weir is avoided.
(6) The linear of rabble blade is turned into curve from oblique line, making the ore pulp move toward rake. At last, the processing capability is increased.
Specification | Concentration pond (m) | Deposit square(m2) | Harrow part | Motor | Processing capacity (t/d) | |||||
Model | Specification | Inner diameter | Depth | Pond degree | Method | Height(m) | Rotation time(min/r) | Driving | Lifting | |
NZS-1 | Φ1.8m | 1.8 | 1.8 | 2.54 | Manual | 0.16 | 2 | Y90L-6 1.1KW | ---- | 5.6 |
NZS-3 | Φ3.6m | 3.6 | 1.8 | 10.2 | Manual | 0.35 | 2.5 | Y90L-6 1.1KW | ---- | 22.4 |
NZS-6 | Φ6m | 6 | 3 | 28.3 | Manual | 0.2 | 3.7 | Y90S-4 1.1KW | ---- | 62 |
NZSF-6 | Φ6m | 6 | 3 | 28.3 | Manual | ---- | 3.7 | Y90S-4 1.1KW | ---- | 62 |
NZ-9 | Φ9m | 9 | 3 | 63.6 | Auto | 0.25 | 4.34 | Y132S-6 3KW | XWD0.8-3 0.8KW | 140 |
NZS-9 | Φ9m | 9 | 3 | 63.6 | Manual | 0.25 | 4.34 | Y132S-6 3KW | ---- | 140 |
NZS-12 | Φ12m | 12 | 3.5 | 113 | Manual | 0.25 | 5.28 | JTC752A-44 5.2KW | ---- | 250 |
NZ-15 | Φ15m | 15 | 4.4 | 176 | Auto | 0.4 | 10.4J | JTC752A-44 5.2KW | Y112M-6 2.2KW | 350 |
NZ-20 | Φ20m | 20 | 4.4 | 314 | Auto | 0.4 | 10.4 | Y100L1-4 5.2KW | Y112M-6 2.2KW | 960 |
NZ-30 | Φ30m | 30 | 7.165 | 707 | ---- | 0.61 | 13.7 | Y672A-44 5.2KW | YCJ132-S 1.5KW | ---- |
NZS-45 | Φ45m | 45 | 4.633 | 1590 | Manual | ---- | 20 | Y672A-44 5.2KW | YCJ160-S 2.2KW | 515 |
NT-15 | Φ15m | 15 | 3.5 | 177 | ---- | ---- | 8.4 | Y132M2-6 5.5KW | ---- | 390 |
NQ-18 | Φ18m | 18 | 3.5 | 255 | ---- | ---- | 10 | Y132M2-6 5.5KW | ---- | 560 |
NQ-24 | Φ24m | 24 | 3.4 | 452 | ---- | ---- | 12.7 | Y160M-6 7.5KW | ---- | 1000 |
NQ-30 | Φ30m | 30 | 3.6 | 707 | ---- | 16 | Y160M-6 7.5KW | ---- | 1570 | |
NJ-38 | Φ38m | 38 | 4.9 | 1134 | ---- | ---- | 10-25 | JZT252-4 11KW | Y160M-6 7.5KW | 1600 |
NT-45 | Φ45m | 45 | 5.05 | 1590 | Auto | ---- | 19.3 | Y160L-6 11KW | ---- | 2400 |
NTJ-53 | Φ53m | 53 | 5.07 | 2202 | ---- | ---- | 23.18 | Y180L-6 15kw |
---- | 6250 |
NT-100 | Φ100m | 100 | 5.65 | 7846 | ---- | ---- | 43 | Y180L-6 15KW | ---- | 3030 |
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