Linear Vibrating Screen
This linear vibrating screen handles both screening and conveying in one step. It grades plastic pellets by size while moving them forward, helping keep the production flow smooth. The screen mesh size ranges from 2 mm to 10 mm. It is suitable for dry powder or granular materials with particle sizes between 0.10–5 mm, moisture content below 7%, and no stickiness. It can also be used for sorting masterbatch, engineering plastics, and rubber granules.
Specifications
| Model | Single Motor Power (W) | Output Capacity (kg/h) | Material (Optional) | Dimensions (mm) |
| 120 | 300 | 201/304 stainless steel | 500×600×1400 | |
| 120 | 600 | 201/304 stainless steel | 600×700×1600 | |
| 180 | 1000 | 201/304 stainless steel | 600×700×2500 | |
| Remark: Each vibrating screening machine contains 2 motors | ||||
Features
- Three-layer composite screen structure delivers accurate and efficient separation. It can screen particles finer than 20 mesh and separate up to three different size grades at the same time.
- Driven by dual vibration motors. Daily output ranges from 3 to 30 tons, supporting stable and continuous production.
- Custom options available, including mesh size, screen material, and machine dimensions.
- Built from stainless steel to resist rust and corrosion, ensuring durability and clean operation.
- Stable vibration with operating noise below 65 dB.
- High excitation force with low power consumption, helping reduce running costs.
Our factory has over 30 sets of CNC lathes in the production of plastic processing equipment, such as feeding sawing machine, CNC gantry machining center, CNC screw milling machine, CNC deep-hole boring machine, and cylindrical grinder. Meanwhile, with the adoption of more technologies into plastic recycling, CAD/CAM continues to grow in importance. Thus during the whole manufacturing process, our experienced engineers and technicians utilize CAD/CAM engineering approaches to optimize the entire operation. This allows us to supply high quality plastic machinery with optimal performance.




