Multi-deck High Frequency Vibrating Screen
- Product Details
★ The main body of the Multi-deck High Frequency Vibrating Screen is riveted with rivets, which ensures the reliability and stability of the long-term operation of the equipment, and reduces the number of maintenance and labor.
★ The surface of the Multi-deck High Frequency Vibrating Screen is treated with polyurea spraying technology as a whole, which increases the wear resistance and corrosion resistance of the equipment and prolongs the service life of the equipment.
★ With the self-developed polyweb urethane screen panel (minimum 0.043mm) , the screen is not easy to be blocked, and five channels are fed at the same time, with large processing capacity and high screening efficiency.
Dimensions: Width 1500mmX Length 4892mmX4142mm
Machine weight: about 4 tons
Screening area: 7.3㎡
Screening inclination: 17.5°
Screening efficiency: 85~90%
Maximum Capacity: 45T/h -120 T/h
Screen Panel Aperture: Minimum 0.043mm - 10mm
Decks : 1-deck stack sizer, 2-deck stack sizer , 3-deck stack sizer , 4-deck stack sizer, 5-deck stack sizer
★ Fine screen obtains larger screening capacity with smaller footprint
★ Greatly improve the mill capacity and greatly reduce the power consumption per unit of ore grinding
★ Minimize the over-powdering of useful minerals (mudification)
★ Improve metal recovery rate and reduce flotation reagent consumption
★ Successfully applied to the sorting of metallic and non-metallic minerals
Multi-deck High Frequency Vibrating Screen has high efficiency, small amplitude and high screening frequency. Different from the principle of ordinary screening equipment, because the Multi-deck High Frequency Vibrating Screen adopts high frequency, on the one hand, it destroys the tension on the surface of the pulp and the high-speed oscillation of the fine-grained material on the screen surface, and accelerates the high-density useful minerals and segregation. It increases the probability that the material smaller than the separation particle size will come into contact with the sieve holes. Therefore, better separation conditions are created, so that the materials smaller than the separation particle size, especially the particles with large specific gravity, together with the ore pulp, pass through the sieve holes and become the products under the sieve.
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