Under the suction force of the fan, the materials move to the classification area at a high speed from the material inlet at the lower end of the classifier with the updraft. Under the strong centrifugal force generated by the high-speed rotating classification turbine, the materials are separated, and the fine particles meeting the particle size requirements enter the cyclone separator or dust collector through the blade clearance of the classification wheel. The velocity of some fine particles entrained by coarse particles disappears after hitting the wall, and drops to the secondary air outlet along the cylinder wall. After the strong scouring effect of the secondary air, the coarse and fine particles are separated, the fine particles rise to the secondary classification in the classification area, and the coarse particles drop to the discharge port.
Under the suction force of the fan, the materials move to the classification area at a high speed from the material inlet at the lower end of the classifier with the updraft. Under the strong centrifugal force generated by the high-speed rotating classification turbine, the materials are separated, and the fine particles meeting the particle size requirements enter the cyclone separator or dust collector through the blade clearance of the classification wheel. The velocity of some fine particles entrained by coarse particles disappears after hitting the wall, and drops to the secondary air outlet along the cylinder wall. After the strong scouring effect of the secondary air, the coarse and fine particles are separated, the fine particles rise to the secondary classification in the classification area, and the coarse particles drop to the discharge port.
The classifier and cyclone separator, dust collector and induced draft fan form a classifying system. Under the action of fan suction, the material is moved from the lower inlet of the classifier to the classifying zone with the ascending airflow. Under the strong centrifugal force generated by the high-speed rotating turbine, the materials are separated and the fine particles which meet size requirements through the classifier impeller gap into the cyclone separator or the dust collector, the coarse particles entrained part of the fine particles collided with the wall and the velocity disappeared, descending along the cylinder wall to the secondary air outlet, and the coarse and fine particles were separated by the strong washing action of the secondary air. The fine particles rise to the classification zone for secondary classifying, and the coarse particles are lowered to the discharge port for discharging.
Technical Parameters
Parameters/specifications | FL300 | FL360 | FL450 | ITC-4 | ITC-5 | ITC-6 |
Production Capacity(kg/h) | 20~1000 | 300~2000 | 1000~3000 | 8000~15000 | 15000~20000 | 20000~30000 |
Product Size(d97:μm) | 6~150 | 5~150 | 5~150 | 10~150 | 15~150 | 20~150 |
Classifying efficiency(%) | 60~90 | 60~90 | 60~90 | 60~90 | 60~90 | 60~90 |
Installed Power(kW) | 11.5~42.5 | 18~60 | 63.5~105 | 120~160 | 90~200 | 170~310 |
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