2026-06-11
| Machine Type | Working Principle | Typical Fineness Range | Best Applications | Advantages |
|---|---|---|---|---|
| Ball Mills | Rotating cylinder with grinding media (balls) causing impact/friction | 300–3000 μm | Flake graphite concentration, beneficiation | Low cost, simple operation, scalable |
| Rod Mills | Cylinders with steel rods for more gentle grinding | 500–5000 μm | Preserving large graphite flakes | Minimal flake damage, higher large-flake yield |
| Vertical Mills | Grinding rollers on rotating disc + integrated classifier | 38–1000 μm | Large-scale fine/ultra-fine grinding | Low energy use (30–40% less than ball mills), integrated drying, small footprint |
| Jet Mills | High-pressure air/steam accelerating particles for interparticle collision | 1–20 μm | Ultra-fine, high-purity graphite (battery anodes) | Contamination-free, narrow PSD, spheroidization capability |
| Air Classifier Mills (ACM) | Mechanical grinding + built-in precision classifier | 5–45 μm | Battery materials, high-purity applications | Grinding + classification in one unit, precise PSD control |
| Raymond Mills (and upgrades) | Roller-ring system with centrifugal classification | 44–125 μm | General industrial graphite powder | Mature tech, cost-effective, easy maintenance |
| Stirred Mills | Rotating agitator moving media in a stationary cylinder | 1–100 μm | Fine grinding, high-purity processes | High energy efficiency, narrow PSD, low media wear |
| High-Pressure Micro-Powder Mills | Enhanced roller pressure for ultra-fine grinding | 3–45 μm | Specialty graphite applications | High fineness capability, good particle shape |
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