≤25mm
Feeding size
0.2-320t/h
Capacity
MGB series high-efficiency ball mill is designed to take advantage of the advantages and disadvantages of the open-flow grinding system, and has made significant improvements to the traditional ball mill. In addition to all the advantages of open-flow grinding, compared with the same specification of ball mill, the output of the mill has been greatly improved, and the powder fineness and specific surface area have increased, achieving high yield and high fineness, and providing a new type of grinding equipment for the production of high-grade cement.
MGB type ball mill adjusts the material level of each bin with its unique combined partition board and discharge grate, increases ventilation, and improves the conditions inside the mill; at the same time, it adopts a new type of lining board, adjusts the speed of the mill, and optimizes the gears. The design and lubricating parameters of the bearing bush increase the running stability and service life of the mill, and improve the grinding efficiency.
The rolling bearing is used instead of the sliding bearing, the friction force is greatly reduced, the starting is easy, and the energy saving is remarkable.
The use of high-strength and wear-resistant combined hammer head can save materials and reduce waste.
The working principle of the ball mill is relatively advanced, the grinding efficiency of the equipment is very high in the process of grinding materials, which improves the grinding speed of the entire process, and thus also increases the output.
The probability of failure is very low, which reduces the customer's operating costs and maintenance costs to a certain extent.
Specification(m)D×L | Rotary speed(r/min) | Feeding sie(mm) | Capacity | Ball loading | Main motor | Power(kw) | Motor speed(r.p.m) | Main reducer | Reducing ratio | Weight |
Φ2.2×11 | 22.2 | ≤25 | 15~17 | 50 | JR1512-8 | 570 | 740 | ZD80 | 5 | 83 |
Φ2.4×8 | 20.91 | ≤25 | 14~18 | 39.5-42 | JR1512-8 | 570 | 740 | ZD80 | 5 | 76.4 |
Φ2.4×9 | 20.91 | ≤25 | 23~25 C | 50 | JR1512-8 | 570 | 740 | ZD80 | 5 | 81 |
Φ2.4×10 | 20.91 | ≤25 | O 16~18 | 50 | TR1512-8 | 630 | 740 | ZD80 | 5 | 92.4 |
Φ2.4×11 | 21 | ≤25 | O 17~19 C 20~22 | 60~62 | YR710-8/1180 | 710 | 740 | JDX630 | 5.6 | 105 |
Φ2.4×12 | 21 | ≤25 | O 18~20 C 22~24 | 63~65 | YR800-8/1180 | 800 | 740 | MBY710 | 6.3 | 110 |
Φ2.4×13 | 21 | ≤25 | O 21~22 C 24~26 | 66~68 | YR800-8/1180 | 800 | 740 | MBY710 | 6.3 | 117 |
Φ2.6×10 | 20.6 | ≤25 | 21~24 | 64 | YR800-8/1180 | 800 | 740 | JDX710 | 6.3 | 133 |
Φ2.6×11 | 20.6 | ≤25 | 21~28 | 69 | YR800-8/1180 | 800 | 740 | JDX710 | 6.3 | 140 |
Φ2.6×13 | 20.6 | ≤25 | 28~31 | 80 | YR1000-8/1180 | 1000 | 740 | JDX800 | 6.3 | 151 |
Φ3.0×9 | 19.3 | ≤25 | 35~40(C) | 80~83 | YR1000-8/1180 | 1000 | 740 | MBY800 | 7.1 | 137 |
Φ3×11 | 18.92 | ≤25 | 44~47(C) | 95~100 | YR1250-8/1430 | 1250 | 740 | JDX900 | 7.1 | 159 |
Φ3×12 | 18.92 | ≤25 | 48~52(C) | 103 | YR1250-8/1430 | 1250 | 740 | JDX900 | 7.1 | 164 |
Φ3×13 | 18.92 | ≤25 | 39~45(C) | 110~116 | YR1400-8/1430 | 1400 | 740 | JDX900 | 7.1 | 183 |
Φ3.2×11 | 18.3 | ≤25 | 45~48(C) | 110~112 | YR1400-8/1430 | 1400 | 740 | JDX900 | 7.1 | 195.5 |
Φ3.2×13 | 18.7 | ≤25 | 45~50(O) | 125 | YR1600-8/1430 | 1600 | 740 | JDX1000 | 7.15 | 213 |
Φ3.4×11 | 18 | ≤25 | 45~55(C) | 115 | YR1600-8/1430 | 1600 | 740 | JDX1000 | 7.15 | 201 |
Φ3.5×13 Central drive | 17 | ≤25 | 50~55 | 150 | YR2000-8/1730 | 2000 | 740 | JS130-A-F1 | 223 | |
Φ3.5×13 Edge drive | 17.5 | ≤25 | 50~60 | 150 | YR2000-8/1730 | 2000 | 740 | JDX1000 | 6.3 | 240.5 |
Φ3.8×13 Bearing | 16.3 | ≤25 | 65~70 | 185 | YR2500-8/1730 | 2500 | 740 | JS130-C-F1 | 240 | |
Φ3.8×13 Sliding shoe | 16.3 | ≤25 | 65~70 | 185 | YR2500-8/1730 | 2500 | 740 | JS130-C-F1 | 220 | |
Φ4×13 | 16.3 | ≤25 | 78~80 | 191 | YRKK900 | 2800 | 745 | JS140-A | 220 | |
Φ4.2×11 Bearing | 15.6 | ≤25 | 120~140 | 190 | YR2800-8/1730 | 2800 | 740 | JS140-A-F1D | 245 | |
Φ4.2×13 Bearing | 15.6 | ≤25 | 140~155 | 225 | YRKK1000-8 | 3350 | 740 | JS150-A | 260 | |
Φ4.2×13 Central shoe | 15.6 | ≤25 | 140~155 | 225 | YRKK1000-8 | 3550 | 740 | JS150-A | 280 | |
Φ4.2×13 Sliding shoe | 15.6 | ≤25 | 140~155 | 225 | YRKK1000-8 | 3550 | 740 | JS150-B | 260 | |
Φ4.6×13.5 Welding shoe | 14.5 | ≤25 | 140 | 280 | YRKK1000-6 | 4500 | 995 | 365 | ||
Φ4.6×14 | 14.5 | ≤25 | 145 | 285 | YR1000-6 | 4500 | 995 | 372 | ||
Φ5.0×15 | 14 | ≤25 | 160~165 | 350 | YRKK1000-8 | 6000 | 740 | 420 |
Note:Any change of technical data shall not be advised additionally.
Beneficiation
Cement Production
Ceramic Production
Building Materials Production
This machine is a cylindrical rotating device, driven by an outer gear, two warehouses, and a lattice type ball mill. The material enters the first chamber of the mill spirally and uniformly from the feeding device through the feeding hollow shaft. There are stepped lining plates or corrugated lining plates in the chamber, and steel balls of different specifications are installed inside. The rotation of the cylinder generates centrifugal force to bring the steel balls to a certain height. After falling down, it has a heavy impact and grinding effect on the material. After the material reaches the rough grinding in the first warehouse, it enters the second warehouse through the single-layer partition board. The warehouse is inlaid with a flat lining plate and has steel balls to further grind the material. The powder is discharged through the discharge grate to complete the grinding operation.
The Australian customer has been cooperating with Mecru Heavy Industry for a long time, and this time he wants to add a ...
Read moreThe customer's manganese ore is mainly produced by rhodochrosite and calcium rhodochrosite, followed by manganese c...
Read moreWe promise that all your information will be kept confidential. Please be assured to complete these information. It is just for our sales manager to contact you accordingly.
Contact us for professional technical support by:
Copyright © 2004-2021 by Mecru Heavy Industry Technology Co., Ltd. Legal Notice 豫ICP备18029974号-2