
φ1×8 ~ φ2.4×18.35
Dryer
Application range
Used for drying materials with certain moisture content and particle size in mineral processing, building materials, metallurgy, chemical and other industries
Product advantages
- High drying rate
- Low energy consumption
- Low operating cost
Performance features
- 1Large drying intensity. Materials are highly dispersed in air flow, and the whole surface of particles serves as effective drying area
- 2Short drying time
- 3Simple structure for airflow dryer, small footprint, easy construction and maintenance
- 4Large processing capacity and high thermal efficiency. Thermal efficiency can reach 60% when drying unbound moisture
- 5The dryer realizes "zero axial thrust", which greatly reduces wear of riding rollers and stop rollers, ensuring stable and reliable drum rotation
- 6Self-aligning riding roller device is adopted to maintain linear contact between riding rollers and riding rings, so as to lower wear and power consumption significantly
Working principle
Powered by electricity, diesel fuel, wind or combustible materials, ambient air is heated and delivered around the through-type cylinder to reach proper temperature for dehumidification treatment.
Dryer Technical Parameters
| Model | φ1×8 (φ1×1) | φ1.5×1.2 (φ1.2×1) | φ2.2×14 (12)(16) | φ2.4×18.35 |
|---|---|---|---|---|
| Rotation Speed (r/min) | 2 | 3 | 4.9 | 3.2 |
| Max Inlet Air Temp. (℃) | 700 | 800 | 650 | 700 |
| Inclination | 0.05 | 0.05 | 0.05 | 0.04 |
| Motor Model | Y160L-8 | Y200L1-6 | Y200L1-6 | Y200M-6 |
| Motor Power (kW) | 7.5 | 18.5 | 18.5 | 37 |
For sizing recommendations tailored to your specific operating conditions, please contact our sales engineers for a detailed proposal.
Contact us
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