مبدأ العمل
When the suspension to be separated enters into the inner cavityof the screw conveyor through the feed pipe of the centrifuge, itflows out from the outlet of the screw conveyor after being accelerated by the accelerating cone and evenly distributes to the innerwall of the drum. After entering the drum of the centrifuge, therotating drum is adjusted to produce a strong centrifugal force, andthe suspension forms a circular liquid flow in the drum. The strongcentrifugal force makes the solid particles with high density in thesuspension The particles rapidly settle to the inner wall of the drumto form a sediment ring layer. Due to the different rotation speedsof the screw and the drum, there is relative movement betweenthem. The relative movement of the screw and the drum is used todeposit the particles on the inner wall of the drum The solid phaseis pushed to the drying area at the small end of the drum for furtherdehydration, then discharged through the slag outlet at the smallend, and the liquid phase continuously added is discharged fromthe overflow hole at the large end of the centrifuge, thus completingthe solid-liquid separation process.
Structural features
The whole machine design highlights structural stability andsafety
The isolation system effectively absorbs the dynamic loadshear force when the equipment is in operation
Effectively avoid resonance phenomenon of double rotorsin high-speed operation and avoid additional fatiguedamage of parts
Over 100000 hours of bearing design
Centrifugal casting and forging process are adopted for theblanks of important parts
Wear resistant treatment of key parts
Control system of intelligent operation
Comprehensive safety protection device to ensure thesafety of personnel and equipment