Customization: | Available |
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Type: | Circular |
Function: | Thin Oil Shaker, High Frequency Vibrating Screen |
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Item | Parameter Model: GNVIST03A |
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Air Source Pressure Requirement | 0.7 -1.0 Mpa (100-150PSI) |
Air Consumption | 4.5m³/min (160CFM) |
Qty. of Connectable Suction Tray | 3sets |
Adaptable Vibrating Screen | High Frequency vibrating screen / Double Deck vibrating screen |
Suitable Materials | Oily or wet solids |
Recovery Efficiency | The dewatering efficiency increased by more than 30% compared with traditional vibrating screen |
Adaptable Temperature | -15 +85°C |
Liquid Inlet Size & Qty. | 2'', (3 pieces) |
Liquid Outlet Size & Qty. | 2'', (1 piece) |
Air Inlet Size | 1'' |
Dimension & Weight(LxWxH) | 1058x730x1068mm ( 350KG ) |
Remark | Pneumatic automatic control, no power required, adjustable suction and discharge time |
1.Vibrating Screen; 2. Vacuum collecting tray/hopper; 3. Vacuum device.
A. No.1 Vibrating Screen connecting pipe; B. No. 2 Vibrating Screen connecting pipe; C, No. 3 Vibrating Screen connecting pipe; D. Air inlet of vacuum device
E. Control panel of vacuum device; F. Vibrating Screen control panel
The vacuum device can be connected to 1/2/3 sets of Vibrating Screen.
1. Feeding Material; 2. Feeder Box; 3. Screen Deck; 4. Vacuum Collecting Hopper; 5. Mud Receiving Tank 1; 6. Air Compressor; 7. Vacuum Device; 8. Mud Receiving Tank 2
The 1 (feeding material) to be processed is transported through the pipeline into 2 (feed box), and then the material enters 3 (Screen Deck) for screening treatment, the filtrate goes through the screen surface and flows down to 5 (Mud receiving tank 1) except the filtrate passing through first screen at the equipment front discharge port.
6 (Air compressor) drives the 7 (vacuum pump) to run, 7 (vacuum device) produces intermittent vacuum pressure that is transmitted to 4 (vacuum collecting hopper) through the hose. With better sealing between 4 (vacuum collecting hopper) and the first screen at the deck discharge port, the material on the first screen is sucked into 4 (vacuum collecting hopper) under negative pressure condition. The liquid collected by 4 (vacuum collecting hopper) enters into 7 (vacuum device), finally the liquid from 7 (vacuum device) is discharged into 8 (Mud receiving tank 2)