
Advantage
1、 High processing capacity: The dynamic characteristics of the roller crusher and its constant and large eccentric stroke make it have particularly high crushing strength and high throughput capacity. Depending on the material, it can achieve a processing capacity of up to 3000T/hour or more.
2、 High crushing efficiency: Pre screening improves the crushing efficiency of the equipment. Fine materials are directly discharged without passing through the crushing chamber, reducing power consumption and the risk of material compaction and machine overload. It can also minimize the wear of the crushing lining plate.
3、 Accuracy of particle size requirement: The roller crusher is equipped with a double wedge block ore discharge adjustment system, which can manually adjust the required particle size discharge port of 70-300mm in a few minutes. It is simpler, safer, and faster than the gasket adjustment method of traditional crushers. If the workload allows, the discharge port can be adjusted to the minimum to achieve the maximum crushing ratio and reduce the workload of the next process.
4、 Reliability of overload protection system: When the load in the crushing chamber exceeds the acceptable load, such as unbreakable foreign objects (iron blocks, etc.), the protective elbow plate will break, protecting the key components of the equipment from damage. By replacing it with a spare elbow plate, production can continue.
5、 Low cost of electricity consumption: Due to the eccentricity of the rollers and the symmetrical arrangement of the counterweight of the flywheel with large rotating mass, the surplus unbalanced force is reduced, thereby reducing the vibration of the machine during no-load motion. The large rotational inertia of the flywheel enables the crusher to stably output power during the crushing process, reduce the peak current, and lower the cost of electricity.
6、 Improving the service life of the wear-resistant lining plate of the roller body: The reverse rotation of the roller during the crushing process distributes the load throughout the circumference of the roller, which can prevent the occurrence of local wear areas and achieve uniform wear. In addition, due to the large circumference of the crushing roller, the lifespan of the wear-resistant lining plate on the roller is more than twice that of traditional jaw crushers.
7、 Impact resistance: Large pieces can be sent into the crushing chamber and will not directly fall onto the crusher body, but will collide with the impact plate of the hood. The impact plate has strong impact resistance to such impact loads, which is more advantageous than many traditional crushers.
8、 Reduce the quantity of elongated materials: Due to the curved shape of the crushing chamber, slender rock fragments cannot directly fall into the crusher discharge port, and materials must pass through the crushing chamber before being discharged. During this process, the material is crushed under stress, reducing the amount of elongated material during discharge.
Technical Parameter
Production volume and technical parameters |
||||||||||
|
G90 |
G120 |
G150 |
G180 |
G210 |
G250-1 |
G250-2 |
G300-1 |
G300-2 |
|
Feeding Port Width (mm) |
700 |
900 |
1150 |
1400 |
1600 |
1900 |
2500 |
2500 |
3000 |
|
Feeding Port Depth (mm) |
500 |
600 |
800 |
1000 |
1200 |
1500 |
1500 |
1700 |
1700 |
|
Motor Power (kW) |
75 |
90 |
110 |
220 |
300 |
500 |
560 |
710 |
800 |
|
Product Size (mm) |
Tight Edge Discharge Port (mm) |
t/h |
t/h |
t/h |
t/h |
t/h |
t/h |
t/h |
t/h |
t/h |
0-50 |
35 |
90-160 |
|
|
|
|
|
|
|
|
0-70 |
50 |
110-190 |
150-260 |
|
|
|
|
|
|
|
0-100 |
70 |
180-300 |
210-360 |
240-400 |
|
|
|
|
|
|
0-120 |
80 |
200-340 |
250-420 |
270-460 |
320-520 |
|
|
|
|
|
0-135 |
90 |
230-390 |
280-470 |
310-520 |
360-600 |
480-800 |
|
|
|
|
0-150 |
100 |
250-430 |
310-520 |
345-580 |
410-680 |
540-900 |
710-1200 |
945-1570 |
|
|
0-185 |
125 |
330-550 |
390-650 |
435-730 |
480-800 |
630-1065 |
850-1415 |
1110-1860 |
1480-2470 |
1750-2960 |
0-225 |
150 |
390-650 |
460-780 |
520-870 |
575-960 |
760-1270 |
1010-1690 |
1330-2220 |
1170-2950 |
2120-3540 |
0-260 |
175 |
|
540-910 |
600-1020 |
655-1090 |
865-1440 |
1150-1915 |
1510-2510 |
2000-3340 |
2400-4010 |
0-300 |
200 |
|
|
690-1160 |
745-1240 |
990-1650 |
1310-2190 |
1720-2880 |
2300-3830 |
2760-4600 |
0-350 |
|
|
|
|
820-1380 |
1100-1830 |
1460-2430 |
1920-3200 |
2550-4250 |
3060-5100 |
0-400 |
|
|
|
|
|
|
1620-2700 |
2130-3550 |
2830-4720 |
3400-5660 |
0-450 |
|
|
|
|
|
|
|
|
3110-5180 |
3700-6200 |
Remarks: 1. The output of the crusher represented by the above data is based on an average specific gravity of 2.7T/m ³. It will vary with material properties such as ore grade and particle size distribution, water and mud content, loose density, and crushability. 2. 90% of the time, the material can enter the crushing chamber smoothly without bridging or blockage, otherwise it will affect the workload. 3. The minimum value is taken when removing fine materials smaller than the discharge port, and the maximum value is taken when containing fine materials. |
