China TLGT Series Vertical Ring High Gradient Magnetic Separator Factory - Suppliers of Advanced Magnetic Separation Solutions
Scope of application
-
1. Beneficiation of weak magnetic minerals such as hematite, limonite, siderite, ilmenite, chromite, wolstenite, tantalum niobite, etc.
-
2. Iron removal and purification of non-metallic ores such as quartz, feldspar, nepheline, fluorite, sillimanite, spodumene, kaolin, etc.
-
3. Others such as hematite mud iron selection in aluminum oxide plant, wastewater treatment in steel plant, power plant, weak magnetic tailings recovery, etc.
Technical specification
Model |
TLGT-500 |
TLGT-750 |
TLGT-1000 |
TLGT-1250 |
TLGT-1500 |
TLGT-1750 |
TLGT-2000 |
TLGT-2500 |
TLGT-3000 |
Parameter |
Experimental/Industrial |
||||||||
Swivel diameter(mm) |
Φ500 |
Φ750 |
Φ1000 |
Φ1250 |
Φ1500 |
Φ1750 |
Φ2000 |
Φ2500 |
Φ3000 |
Rotary speed(r/min) |
0.3-3 |
3 / 2-4 |
2-4 |
2-4 |
2-4 |
2-4 |
2-4 |
2-4 |
2-4 |
Granularity of ore feed(mm) |
-1 |
-1 |
-1.2(30-100) |
-1.2(30-100) |
-1.2(30-100) |
-1.2(30-100) |
-1.2(30-100) |
-1.2(30-100) |
-1.2(30-100) |
(-200%) |
|||||||||
Concentration of ore feed(%) |
10-40 |
10-40 |
10-40 |
10-40 |
10-40 |
10-40 |
10-40 |
10-40 |
10-40 |
Pulp throughput(m³/h) |
0.25-0.5 |
0.5-1.0 / 5-10 |
12.5-20 |
20-50 |
50-100 |
75-150 |
100-200 |
200-400 |
350-650 |
Dry ore handling capacity(t/h) |
0.03-0.125 |
0.06-0.25 / 2-4 |
4-7 |
10-18 |
20-30 |
30-50 |
50-80 |
100-150 |
150-250 |
Rated background field strength(T) |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
Rated excitation current(A) |
1300 |
1100 / 860 |
650 |
900 |
950 |
1200 |
1200 |
1400 |
1400 |
Rated excitation voltage(V) |
12 |
16 / 17.5 |
26.5 |
31 |
37 |
38 |
43 |
45 |
62 |
Rated excitation power(kw) |
16 |
18 / 15 |
17 |
28 |
35 |
46 |
52 |
63 |
87 |
Power of Rotating Ring Motor(kw) |
0.37 |
0.55 |
1.1 |
1.5 |
3 |
4 |
5.5 |
11 |
18.5 |
Pulsating motor power(kw) |
0.37 |
0.75 / 1.5 |
2.2 |
2.2 |
4 |
4 |
7.5 |
11 |
18.5 |
Pulsating stroke(mm) |
0-50 |
0-50 / 0-20 |
0-30 |
0-20 |
0-30 |
0-30 |
0-30 |
0-30 |
0-30 |
Pulsating impulse(r/min) |
0-400 |
0-400 |
0-300 |
0-300 |
0-300 |
0-300 |
0-300 |
0-300 |
0-300 |
Water supply pressure(MPa) |
0.1-0.2 |
0.1-0.2 |
0.2-0.3 |
0.15-0.3 |
0.2-0.3 |
0.2-0.3 |
0.2-0.3 |
0.2-0.4 |
0.2-0.4 |
water consumption(m³/h) |
0.75-1.5 |
1.5-2.5 / 5-8 |
10-20 |
30-45 |
60-90 |
80-120 |
100-150 |
200-300 |
350-530 |
Cooling water quantity(m³/h) |
1.5-2 |
1.5-2 |
2-2.5 |
2.5-3 |
3-4 |
4-6 |
5-6 |
6-7 |
8-10 |
Host weight(t) |
1.5 |
3 / 4 |
6 |
14 |
20 |
35 |
50 |
105 |
175 |
Maximum component weight(t) |
0.3 |
0.6 / 1 |
2.22 |
4 |
5 |
11 |
14 |
15 |
25 |
Outline size |
1800×1400×1320 |
2000×1360×1680 |
2700×2000×2400 |
3200×2340×2700 |
3600×2900×3200 |
3900×3300×3800 |
4200×3550×4200 |
5800×5000×5400 |
6600×5300×6400 |
(Length, width and height)(mm) |
Frequently Asked Questions (FAQ)
What minerals are suitable for processing with this equipment?
It is highly effective for the beneficiation of weak magnetic minerals such as hematite, limonite, siderite, ilmenite, chromite, wolstenite, and tantalum niobite. It is also used for iron removal and purification of non-metallic ores like quartz, feldspar, nepheline, fluorite, sillimanite, spodumene, and kaolin.
What is the rated background field strength of the TLGT series?
All models in the TLGT series, ranging from the experimental TLGT-500 to the large-scale industrial TLGT-3000, feature a rated background field strength of 1 Tesla (T).
Can this equipment be used for industrial wastewater treatment?
Yes, beyond mineral ore processing, it is widely applied in steel plant and power plant wastewater treatment, as well as weak magnetic tailings recovery and hematite mud iron selection in aluminum oxide plants.
What is the range of pulp throughput capacity across the models?
The pulp throughput capacity ranges from 0.25–0.5 m³/h for the smallest model (TLGT-500) to 350–650 m³/h for the largest industrial model (TLGT-3000).
What water pressure and consumption are required for operation?
Water supply pressure varies from 0.1-0.2 MPa up to 0.2-0.4 MPa depending on the model size, with water consumption scaling from 0.75-1.5 m³/h for experimental models to 350-530 m³/h for large industrial applications.

