

The procedure of the production line goes like this: the ore is first sent to jaw crusher for primary crushing. Then the ore with a proper size for secondary crushing will be sent into the ball mill for fine crushing and grinding. The ore powder discharged from the ball mill will be sent to the next procedure: classifying. Because of the different sedimentation rate due to the varied specific gravity, spiral classifier can clean and group the ore mixture. The cleaned and gouped mixture is sent to magnetic separator, due to the different susceptibility, magnetic substance can be separated from the mixture under magnetic.
- Sand Making Machine
- Stone Making Machine
- Stone crusher
- Jaw Crusher
- Impact Crusher
- Cone Crusher
- Single-stage Hammer Crusher
- Ring Hammer Crusher
- Hammer Crusher
- Vertical Shaft Impact Crusher
- Roller Crusher
- Fine Impact Crusher
- Rod Mill
- Mobile Crusher Station
- Vibrating Feeder
- Vibrating Screen
- Belt Conveyor
- Sand Washer
- Stone Washer
- Cement Production Line
- Cement Rotary Kiln
- Cyclone Preheater
- Cement Mill
- Raw Mill
- Coal Mill
- Vertical Mill
- Powder Concentrator
- Pulse Bag Dust Collector
- Rotary Kiln
- Lime Rotary Kiln
- Vertical Preheater
- Vertical Cooler
- Active lime assembly line
- Autoclaved Aerated Concrete Equipment
- Steel Wire Belt Elevator
- Chain Bucket Elevator
- Screw Weigher
- Belt Scale

Metallurgy Rotary Kiln
Metallurgy rotary kiln is mainly used in metallurgy industry such as ironworks to magnetize and calcine the
lean iron ore, chromium ore and ferronickel ore. And be applied in refractory production to sinter bauxite
with high alumina and aluminum factory to calcine clinker and aluminum hydroxide. It can also be used in
chemical plant to calcine chrome sand ore and chrome powder ore.
Main Technical Parameters of Metallurgy Rotary Kiln:
Size |
Capacity |
Main Motor |
Main Reducer |
Weight |
Remark | ||
Model |
Power(Kw) |
Model |
Speed ratio | ||||
φ18x26 |
72 |
JZT2-72-4 |
30 |
JZQ750-1-Ⅰ |
48.57 |
66 |
|
φ1.9/1.6x39 |
72 |
JZT2-72-4 |
30 |
JZQ750-1-Ⅰ |
48.57 |
66 |
|
φ1.9x36 |
84 |
YCT315-4A |
37 |
ZS110-5-Ⅲ |
78.19 |
85.9 |
|
φ2.2x45 |
98.4 |
JZT82-6 |
55 |
ZA125 |
93.93 |
104 |
|
φ2.5x40 |
160 |
Z2--92 |
40 |
ZS125-2-Ⅰ |
134.9 |
143 |
|
φ2.5x45 |
170 |
JTZ82-4 |
45 |
ZS125-4-Ⅰ |
69.71 |
148 |
|
φ2.5x50 |
180 |
ZT3-72-4 |
30 |
ZS145-9-Ⅴ |
122.8 |
173 |
|
φ2.5x60 |
168 |
YCT355-4B |
75 |
ZS165-7-Ⅱ |
99.96 |
222 |
Bauxite Calcining Kiln |
φ3x48 |
360-480 |
YCT355-4B |
75 |
ZS145-7-Ⅱ |
100.4 |
170.6 |
|
φ3.1/2.5x78 |
216-240 |
Z4—225-31 |
75 |
ZS165-2-Ⅱ |
57.17 |
268 |
|
φ3x48 |
700 |
ZSN4-280-21B |
110 |
MSY56-28-Ⅱ |
28 |
244 |
Decomposition outside kiln |
φ3x100.94 |
450 |
ZSN4-280-21B |
90 |
NZS995-90-Ⅵ-L |
90 |
526 |
Planetary cooling? |
φ3.2x50 |
1000 |
ZSN4-280-21B |
160 |
MSY56-28-Ⅱ |
28 |
252.4 |
Decomposition outside kiln |
φ3.2x52 |
600 |
ZSN4-280-21B |
125 |
ZSY1110-71BL |
71.54 |
275 |
Pre-heater Kiln |
φ3.3x52 |
1000 |
ZSN4-280-11B |
125 |
NZS995-40-Ⅵ-BR |
40 |
283 |
Decomposition outside kiln |
φ3.5x52.5 |
1400 |
Z2-112 |
180 |
ZS177 |
79.22 |
360 |
Decomposition outside kiln |
φ3.5x54 |
1500 |
ZSN4-3156-092 |
220 |
ZSY500-40-Ⅴ |
40 |
368 |
Decomposition outside kiln |
φ3.6x70 |
490 |
ZSN4-280-11B |
125 |
ZS177-5-Ⅱ |
79.2 |
419 |
Electricity Generation Kiln with remaining heat |
φ3.95x56 |
2000 |
Z4-280-32BTH |
250 |
ZSY560-40-Ⅰ |
40 |
417 |
Decomposition outside kiln |
Φ4x28 |
90 |
ZSN4-280-21B |
160 |
ZSY500-71-Ⅳ |
71 |
300 |
|
φ4x60m |
2500 |
ZSN4-355-09Z |
315 |
ZSY630-35.5-Ⅰ |
34.6 |
523 |
Decomposition outside kiln |
φ4.2x60m |
2800 |
ZSN4-355-12 |
420 |
ZSY710-35.5-Ⅰ |
35.5 |
--- |
Decomposition outside kiln |
φ4.3x60m |
3000 |
ZSN4-355-12 |
375 |
ZSY710-40 |
40 |
553 |
Decomposition outside kiln |
φ4.8x75m |
5000 |
ZSN4-400-92 |
630 |
JH710-40 |
42 |
841 |
Decomposition outside kiln |
Remark: The parameters in the table are only reference for model selection. |
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