The Turbo Classifier is an advanced air classification system designed to deliver precise particle size control for fine powder production. By accurately separating fine particles from coarse materials, it enhances powder quality, improves production efficiency, and ensures consistent product fineness across a wide range of industrial applications.
Widely used in calcium carbonate, quartz, talc, limestone, barite, and other mineral processing plants, the Daswell Turbo Classifier is an ideal solution for industries requiring strict particle size distribution, including plastics, rubber, paints, coatings, ceramics, and industrial fillers.
The Turbo Classifier uses a combination of centrifugal force and airflow separation to achieve highly accurate particle classification.
Ground powder enters the classifier through the lower inlet. A high-efficiency main fan generates upward airflow that continuously transports the material into the classification chamber.
As particles enter the high-speed rotating classification wheel, centrifugal force separates them according to particle size and density.
Fine particles pass through the classifier blades and are collected by the dust collector.
Larger particles remain outside the classification zone.
Some fine particles attached to coarse materials strike the chamber wall, lose velocity, and move toward the secondary air inlet. A secondary airflow cleans these particles from the coarse material and returns them to the classification zone for more accurate separation.
Oversized particles are unable to remain suspended in the airflow and fall directly through the discharge outlet. They are typically returned to the grinding mill for further size reduction.
This multi-stage classification process ensures exceptional particle size accuracy while minimizing fine powder loss.
| Model | Feeding Capacity (t/h) | D97 Range (μm) | Output (t/h, D97 = 10 μm) | Classification Wheels | Power (kW) |
|---|---|---|---|---|---|
| AMS4001Z | 0.3–0.5 | 3–37 | 0.1–0.2 | 1 | 5.5 × 1 |
| AMS4003Z | 1.0–1.5 | 3–37 | 0.3–0.4 | 3 | 5.5 × 3 |
| AMS6301Z | 0.5–2.0 | 4–37 | 0.4–0.5 | 1 | 15 × 1 |
| AMS6303Z | 1.5–7.0 | 4–37 | 1.3–1.5 | 3 | 15 × 3 |
| AMS6304Z | 3.0–10.0 | 4–37 | 1.7–2.0 | 4 | 15 × 4 |
| AMS6306Z | 6.0–15.0 | 5–37 | 2.7–3.0 | 6 | 15 × 6 |
| AMS8001 | 1.0–3.0 | 5–37 | 0.6–0.8 | 1 | 18.5 × 1 |
| AMS8003 | 3.0–10.0 | 5–37 | 1.8–2.2 | 3 | 18.5 × 3 |
| AMS8004 | 4.0–15.0 | 5–37 | 2.6–3.0 | 4 | 18.5 × 4 |
| AMS10001NG | 2.0–5.0 | 5–37 | 1.0–1.2 | 1 | 30 × 1 |
| AMS10003NG | 6.0–18.0 | 5–37 | 3.1–3.5 | 3 | 30 × 3 |
| AMS10004NG | 8.0–25.0 | 5–37 | 4.2–4.6 | 4 | 30 × 4 |
| AMS10006NG | 12.0–35.0 | 5–37 | 6.0–6.8 | 6 | 30 × 6 |
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The Turbo Classifier is an advanced air classification system designed to deliver precise particle size control for fine powder production. By accurately separating fine particles from coarse materials, it enhances powder quality, improves production efficiency, and ensures consistent product fineness across a wide range of industrial applications.
Widely used in calcium carbonate, quartz, talc, limestone, barite, and other mineral processing plants, the Daswell Turbo Classifier is an ideal solution for industries requiring strict particle size distribution, including plastics, rubber, paints, coatings, ceramics, and industrial fillers.
The Turbo Classifier uses a combination of centrifugal force and airflow separation to achieve highly accurate particle classification.
Ground powder enters the classifier through the lower inlet. A high-efficiency main fan generates upward airflow that continuously transports the material into the classification chamber.
As particles enter the high-speed rotating classification wheel, centrifugal force separates them according to particle size and density.
Fine particles pass through the classifier blades and are collected by the dust collector.
Larger particles remain outside the classification zone.
Some fine particles attached to coarse materials strike the chamber wall, lose velocity, and move toward the secondary air inlet. A secondary airflow cleans these particles from the coarse material and returns them to the classification zone for more accurate separation.
Oversized particles are unable to remain suspended in the airflow and fall directly through the discharge outlet. They are typically returned to the grinding mill for further size reduction.
This multi-stage classification process ensures exceptional particle size accuracy while minimizing fine powder loss.
| Model | Feeding Capacity (t/h) | D97 Range (μm) | Output (t/h, D97 = 10 μm) | Classification Wheels | Power (kW) |
|---|---|---|---|---|---|
| AMS4001Z | 0.3–0.5 | 3–37 | 0.1–0.2 | 1 | 5.5 × 1 |
| AMS4003Z | 1.0–1.5 | 3–37 | 0.3–0.4 | 3 | 5.5 × 3 |
| AMS6301Z | 0.5–2.0 | 4–37 | 0.4–0.5 | 1 | 15 × 1 |
| AMS6303Z | 1.5–7.0 | 4–37 | 1.3–1.5 | 3 | 15 × 3 |
| AMS6304Z | 3.0–10.0 | 4–37 | 1.7–2.0 | 4 | 15 × 4 |
| AMS6306Z | 6.0–15.0 | 5–37 | 2.7–3.0 | 6 | 15 × 6 |
| AMS8001 | 1.0–3.0 | 5–37 | 0.6–0.8 | 1 | 18.5 × 1 |
| AMS8003 | 3.0–10.0 | 5–37 | 1.8–2.2 | 3 | 18.5 × 3 |
| AMS8004 | 4.0–15.0 | 5–37 | 2.6–3.0 | 4 | 18.5 × 4 |
| AMS10001NG | 2.0–5.0 | 5–37 | 1.0–1.2 | 1 | 30 × 1 |
| AMS10003NG | 6.0–18.0 | 5–37 | 3.1–3.5 | 3 | 30 × 3 |
| AMS10004NG | 8.0–25.0 | 5–37 | 4.2–4.6 | 4 | 30 × 4 |
| AMS10006NG | 12.0–35.0 | 5–37 | 6.0–6.8 | 6 | 30 × 6 |
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