• Oilfield Drilling Mud Linear Motion Mini Shale Shaker
  • Oilfield Drilling Mud Linear Motion Mini Shale Shaker
  • Oilfield Drilling Mud Linear Motion Mini Shale Shaker
  • Oilfield Drilling Mud Linear Motion Mini Shale Shaker
  • Oilfield Drilling Mud Linear Motion Mini Shale Shaker
  • Oilfield Drilling Mud Linear Motion Mini Shale Shaker

Oilfield Drilling Mud Linear Motion Mini Shale Shaker

Type: Circular
Function: Thin Oil Shaker, High Frequency Vibrating Screen
Transmission Structure: Electromagnetic Shaker
Usage: Mine Shaker, Experiments Shaker, Lightweight Fine Shaker
Works: Spiral Flash Shaker
Object: Food Processing
Customization:
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Basic Info.

Model NO.
GNVIST03A
Shaft Number
Double
Running Track
Linear Vibrating Screen
Supporting Device
Coil Spring
Warranty
1 Year
Customized
Non-Customized
Condition
New
After-sales Service
1 Year
Control System
Variable Frequency Drive
Transport Package
Wooden Box Packaging
Specification
1200mm*1100mm*950mm
Trademark
SHENZHOU
Origin
China

Product Description

The Vacuum Dewatering Vibrating Screen is a screening equipment composite of vibration screen and vacuum device. It is usually used in the field of dewatering vibrating screen.
The Vacuum Dewatering Vibrating Screen is a screening equipment composite of vibration screen and vacuum device. It is usually used in the field of dewatering vibrating screen. Its working principle is to install a set of vacuum collecting hopper under the last screen of the equipment to form a certain frequency of vacuum pressure suction on the screen surface through pulsating airflow, to achieve double separation by vibration and vacuum suction thereby improving the recovery efficiency of liquid and reducing the liquid content of discharged solids. Vacuum device can match with  single-layer high frequency vibrating Screen, tandem deck vibrating screen, parallel deck vibrating screen, etc.
Oilfield Drilling Mud Linear Motion Mini Shale ShakerOilfield Drilling Mud Linear Motion Mini Shale Shaker

VACUUM DEVICE TECHNICAL PARAMETERS

Item Parameter                    Model: GNVIST03A
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

.COMPONENTS

1.Vibrating Screen;  2. Vacuum collecting tray/hopper;  3. Vacuum device.

. CONNECTION PORT OF 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

. CONTROL

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.
Oilfield Drilling Mud Linear Motion Mini Shale Shaker

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

PART A

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.

PART B

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)

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