Feeding & Weighing Solutions at CHINAPLAS 2026 | High Dream
CHINAPLAS is one of the world’s leading trade fairs for the plastics and rubber industries, bringing together manufacturers and innovators focused on improving production efficiency, material handling, and process precision.
Event: CHINAPLAS 2026
Date: April 21–24, 2026
Location: NECC Shanghai, China
Booth: 6.1A60
About CHINAPLAS
CHINAPLAS is one of the world’s leading trade fairs for the plastics and rubber industries, bringing together manufacturers and innovators focused on improving production efficiency, material handling, and process precision.
At CHINAPLAS 2026, High Dream showcases a range of advanced feeding and weighing systems designed for modern plastics processing environments, helping manufacturers achieve stable output, accurate dosing, and efficient automation.
Our Feeding & Weighing Solutions:
- Vibratory Type Loss-in-weight Feeder|220–240V · 1.0KW
- Auto Vacuum Feeding + Central Control System|380V · 5KW
- Belt Type Loss-in-weight Feeder|220–240V · 1.0KW
- Screw Type Large Volume Loss-in-weight Feeder|380V · 3.0KW
- Central Control System|24V · 30W
Key Highlights
For Plastics Processing: Designed for precise material handling and consistent dosing across various raw materials
Stable Feeding, Continuous Production: Loss-in-weight and feeding systems ensure smooth material flow and minimize downtime
Flexible Integration: Systems can be adapted to different production lines and processing requirements
It’s been great to see so many conversations happening around our booth.
With our loss-in-weight feeders and weighing systems running live on site, we’ve had the chance to exchange ideas with visitors from a wide range of industries. These real production discussions bring valuable perspectives on different feeding approaches and requirements across applications.
Looking to upgrade your processing line with more efficient and reliable feeding solutions?
- Contact Us for Customized Feeding & Weighing Solutions
- Explore Our Feeding & Weighing Systems
