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60kg/H – 600kg/H Industrial Flash Dryer 18.5kw Auto Flash Dryer

60kg/H – 600kg/H Industrial Flash Dryer 18.5kw Auto Flash Dryer

XSG-8 Flash Dryer Flash drying technology enables instant and efficient moisture removal, providing a dependable solution for drying materials with high moisture content, high viscosity, and complex rheological behavior. Since its introduction in the 1970s, this technology has been extensively ...

Product Custom Attributes

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60kg/h industrial flash dryer

,

600kg/h industrial flash dryer

,

18.5kw auto flash dryer

Barrel Diameter:
800mm
Type:
XSG-8
Dimensions:
900×4600
Kw:
11–18.5
Air Volume:
3000–8000
Water Evaporation Capacity:
60–600kg/h
Application:
Chemical Industry
Usage:
Pharmaceutical Industry
Application Field:
Food Materials
Standard:
ROHS
Product Description
XSG-8 Flash Dryer

Flash drying technology enables instant and efficient moisture removal, providing a dependable solution for drying materials with high moisture content, high viscosity, and complex rheological behavior. Since its introduction in the 1970s, this technology has been extensively applied to the processing of slurry materials, crystallized products, and filter cake residues that cannot be effectively handled by conventional drying systems.

After decades of continuous technological optimization and extensive industrial application, flash dryer systems have evolved into highly mature drying solutions, characterized by excellent heat transfer efficiency, stable continuous operation, and consistent product quality under demanding production conditions.
 

Designed for large-scale and high-throughput applications, our XSG-8 Rotary Flash Dryer represents one of the most powerful models in the XSG series. With a barrel diameter of 800 mm, main machine dimensions of 900 × 4600 mm, and installed power ranging from 11 to 18.5 kW, the XSG-8 is engineered to support intensive industrial operation. Its optimized airflow system delivers an air volume of 3000–8000 m³/h, enabling a water evaporation capacity of 60–600 kg/h.

The XSG-8 integrates advanced airflow management, high-efficiency thermal utilization, and reinforced structural design to ensure rapid and uniform drying while maintaining precise control over product characteristics. Occupying a compact footprint of approximately 4500 × 3500 mm, it combines high capacity with efficient space utilization. The XSG-8 is particularly suitable for large-scale continuous production in the chemical, pharmaceutical, food, and materials processing industries, where high output, reliability, and process stability are critical.
 

Key Applications

  • High-viscosity chemical compounds
  • Industrial slurry materials
  • Crystallization products
  • Mud and slag residues
  • Filter cake drying
    TECHNICAL PARAMETERS
    Type Barrel diameter(mm) Main machine dimensions(mm) Main machine power(kw) Air volume(m³/h) water evaporation capacity (kg/h) occupied area (mm²)
    XSG-2 200 250×2800 0.75–2.2 300–800 10–20 3500×2500
    XSG-3 300 400×3300 3–4 600–1500 20–50 3800×2700
    XSG-4 400 500×3500 4–7.5 1250–2500 25–70 4000×3000
    XSG-5 500 600×4000 5.5–11 1500–4000 30–100 4200×3200
    XSG-6 600 700×4200 7.5–18.5 2500–5000 40–200 4250×3250
    XSG-8 800 900×4600 11–18.5 3000–8000 60–600 4500×3500
    XSG-10 1000 1100×5000 15–30 5000–12500 100–1000 4750×3750
    XSG-12 1200 1300×5200 15–37 10000–20000 150–1300 5000×4000
    XSG-14 1400 1500×5400 30–55 14000–27000 200–1600 5250×4250
    XSG-16 1600 1700×6000 45–75 18700–36000 250–2000 5500×4500
     
Operating Principle
  1. Cold air passes through an air filter and is directed by a blower to the air heater
  2. Heated air enters the drying tower at appropriate velocity from the bottom
  3. Wet material is fed into the drying tower via screw feeder
  4. Strong shear forces, blowing, floating, and rotating actions occur
  5. Material crushing takes place through external mechanical force
  6. Heated air transfers thermal energy to wet material components
  7. Moisture absorption and evaporation phenomena occur
  8. Air carrying evaporated moisture moves to cyclone separator and pulse bag filter
  9. Air separation process completes the drying cycle
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