CTB Wet Drum Magnetic Separator
Category: Wet Magnetic Separator   Publish Time: 2013-08-07 14:57 

CTB Wet Drum Magnetic Separator
CTB Wet Drum MagneCTB Wet Drum Separator is newly developed iron ore concentrating equipment under wet conditions. It has been designed by engineers having a wealth of knowledge and data, gained over many years of wet drum applications and experience.

 

CTB Wet Drum Magnetic Separator

Brief

 

CTB Wet Drum Separator is newly developed iron ore concentrating equipment under wet conditions. It has been designed by engineers having a wealth of knowledge and data, gained over many years of wet drum applications and experience.

We offer a complete service to mining and mineral industries. Our wide and competitive wet drum separators allow us the freedom to select the correct size and type to meet precisely your process needs in the best technical and cost effective manner.

This kind of magnetic separator can prevent the final product from the secondary contamination because of the washing action adopted in the processing. It is equipped with a respective spray pipe for feed and concentrates, and water amount can be adjusted so as to assure suitable density of the concentrate. It can be equipped with co-current, counter-rotation and counter current tanks, and equipped double drums or three drums according to requirements of customers.

 

Features

 

Magnet System

This is the most critical part of any wet drum design, ours reflect many years of experience and development.

Our products adopt squeezed multiple-pole magnetic circuit, which can make magnetic field distributed so stable and reasonable that it can not only save energy, but also separate and purify the feed more efficiently.

The magnetic separation zone is comprised of stationary permanent magnet, with ferrite/cerimac magnet or rare earth magnets(NDFeB).

Drum Construction

The main cover is in stainless steel, as is the replaceable wearing cover----the drum can be covered with wearable rubber. Stainless steel end flanges have inner and outer seals ensuring the cover and flange joints are watertight. Sealed for life proprietory, flange bearings have grease nipples fitted and are protected from the slurry running down the flange .The magnet yoke and drum position can be easily adjusted to optimized mass recovery and process performance. The magnet yoke position can be adjusted I + 20 degree by a lever mounted at the end of the drum shaft. The bottle neck (gap between tank and drum surface) can be adjusted vertically by shims and horizontally by slotted holes, bringing the magnet poles as close as possible to the media and ensuring maximum magnetic field strength.

Others

The size of feed treated in these separators rarely exceeds 5mmbecause of the problem of removing tailings from the spigots without casing blockage, sizes coarser than5mmare usually treated in dry magnetic processes or with belt-type machines. The capacity of drum separator is determined by the magnetic induction on the surface of the drum, by the gradient of the magnetic field in the pulp and by the size of the drum.

The improvement in parameters of the magnetic circuit and in the design of the separation tanks produced an increase in: i) the diameter and length of the drum and therefore, the capacity of the machine. ii) the gradient of the magnetic field and thus an increase in the efficiency of the recovery of fine ferromagnetic particles. iii) the depth of the magnetic field and easier recovery of larger grains

Applications

used for the first stage rough concentration in the ore dressing plants. Increase recovery and               reduce the load of the second-stage grinding by rejecting waste minerals.

used for concentrating next stage, increase concentrate grade and recovery rate;

used for separation of iron sand under wet conditions, reject excess silica ,mud and other low-magnetic minerals, increase the grade efficiently.

used before strong magnetic operation, remove iron magnetic minerals and prevent magnetic block;

used for recovery of iron ore in coal dressing plant.

Main Dimension and Technical Data

 

Model

Drum

Spece

(mm)

Intensity ofdrum

 surfacemT

 Feeding density%

Working Space

(mm)

Feed Size (mm)

Handling Capacity

 Power (kw)

External

Dimension

(mm)

Overall

weight

(kg)

Ferrite

Rear Earth

CTS

CTN

CTB

Dry Ore

t/h

Slurry (m³/h)

Mean

Enha

ncing

CTB7512

750×1200

≥160

≥170

≥240

20-30

35-55

6-0

3-0

1-0

23-30

65-100

1.5

2270×1780×1600

2000

CTB7515

750×1500

≥160

≥170

≥240

20-30

35-55

6-0

3-0

1-0

30-40

90-130

2.2

3060×1780×1600

2200

CTB7518

750×1800

≥160

≥170

≥240

20-30

35-55

6-0

3-0

1-0

35-50

110-160

3

3350×1780×1600

2450

CTB1015

1050×1500

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

40-75

115-170

3

3180×2170×1830

3640

CTB1018

1050×1800

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

50-90

140-205

4

3440×2170×1830

4100

CTB1021

1050×2100

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

55-105

160-240

4

3750×2170×1830

4550

CTB1024

1050×2400

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

65-120

185-270

5.5

4174×2170×1830

5070

CTB1030

1050×3000

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

80-150

230-240

5.5

4714×2170×1830

6560

CTB1224

1200x2400

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

70-130

200-300

7.5

4141x2320x1980

6000

CTB1230

1200×3000

≥180

≥190

≥300

25-35

45-65

6-0

3-0

1-0

88-165

250-370

7.5

4714×2320×1980

7500

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