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Self Synchronization Dewatering Vibrating Screen

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Dual Electrode Dewatering Vibrating Screen

Product Description

Dewatering Screen

 

 

How it works

 

The dewatering screen uses a dual-electrode self-synchronization technology, a universal eccentric block, and an adjustable amplitude vibrator. Mainly consists of sieve box, exciter, support system and motor. The two non-associated vibrators are driven synchronously and reversely by the tape coupling. The centrifugal force generated by the two groups of eccentric masses is superimposed along the vibration direction and counterbalanced by the centrifugal force to form a single vibration along the vibration direction. The screen box acts as a reciprocating linear motion.

 

FEATURES

 

Integrated feed box
An integrated feed box eliminate the extra cost of a high wear bolt-on unit.

Bolted construction
Over hundreds of Bolts in the side plates but no welds, the side plate has no residual welding stress and no material discontinuities to compromise the fatigue strength of the machine. This important feature contributes to the exceptionally long service life.

Economical, smooth running
Good force exciter makes the ideal drivers for linear motion vibrating screens. Oil lubrication and optimized roller bearing and gear pairing ensure smooth running,longer exciter working life, resulting in outstanding economy.

Maintenance-free
Maintenance-free shafts between exciters mean more production and less downtime.

Thicker deck rails
The machines are designed to carry the weight of ultra heavy duty deck media with extra high side liners. This means longer service life, less maintenance and a lower production cost per tonne.

Screen panels
In order to perfectly adapt screening machines to individual challenges, the screen panels had developed, making it a one-stop shop for quality and safety.

SELECTION INSTRUCTIONS

 

 

Material to be processed: ______ Handling capacity:______t/h
Bulk Density: ______t/m3 Material temperature:______℃;
Material is corrosive or not: ______ (Ps. Yes or No) Max. granule size of the feeding material: ______mm
Layer number:______ Mesh size of each layer:______mm
Particle distribution percentage:______
The following example will help you :
Supposing the layer number is 2 and the aperture size of each layer is 8 mm and 3 mm, then you will get 3 kinds of products: X,Y and Z. Therefore, X ≥ 8 mm; 3 mm ≤ Y < 8 mm; Z < 3 mm.
And then the following information also need to be confirmed :
(1)The X percentage in whole material:______%;(2)The Y percentage in whole material:______%; (3)The Z percentage in whole material:______%;
Upstream equipment (using for feed the material): ______ Downstream equipment (using for discharge the material): ______
Whether needing supporting equipment?______ (Ps. Yes or No)
Working power supply: ______V ______HZ Quantity:______

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