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The design of the mixer inlet, the shape and arrangement of the mixing tools, and the selection of the appropriate speed ensure a consistently high mixture quality. The material to be mixed is accelerated forcefully by the mixing tools. The energy input causes highly turbulent relative movements in the mixture throughout the entire volume of the mixer. Any agglomeration of material is reliably broken down by shear forces, eliminating the need for additional agitators. This means that consistent, homogeneous mixing results can be achieved in a very short time.
Single-Shaft Continuous Mixer (MFKG) | ||||
Type | Throughput rate | Particle size | Temp | Drive power |
MFKG 0313 | 10 - 20 t/h | 12 mm | 150 °C | 9.2 - 22 kW |
MFKG 0520 | 20 - 50 t/h | 16 mm | 150 °C | 37 kW |
MFKG 0728 | 50 - 100 t/h | 16 mm | 150 °C | 45 - 55 kW |
MFKG 1032 | 100 - 300 t/h | 16 mm | 150 °C | 90 - 132 kW |
MFKG 1237 | 300 - 450 t/h | 16 mm | 150 °C | 110 - 160 kW |
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