For vacuum containers such as two-dimensional, three-dimensional, V-shaped mixers, double cone mixers, and closed silos, a vacuum feeder for mixers can be selected. $r$n$r$n, By using material gas separation devices such as feed tees, the receiving equipment is directly evacuated, and the material is directly sucked into the receiving equipment from the feed inlet under the action of the vacuum inside the receiving equipment. Under this feeding form, the material is always in a continuous flow state, with stable, fast feeding and low failure rate.
V-type mixer
type number |
Full volume(㎥) |
Production capacity(Kg/Batch) |
Mixing time(min) |
cylinder rotation speed(r/min) |
Main motor power(Kw) |
GHJ-100 |
0.10 |
30 |
3-10 |
20 |
0.55 |
GHJ-180 |
0.18 |
50 |
3-10 |
20 |
1.5 |
GHJ-300 |
0.3 |
60 |
5-15 |
20 |
2.2 |
GHJ-500 |
0.5 |
50-150 |
8-20 |
20 |
3.0 |
GHJ-1000 |
1 |
150-250 |
15-30 |
20 |
4 |
GHJ-1500 |
1.5 |
250-500 |
30-40 |
20 |
5.5 |
GHJ-2000 |
2.0 |
500-800 |
40-50 |
20 |
7.5 |
V-type mixer:
1. The conveying capacity is the theoretical maximum conveying capacity measured under experimental conditions using powder with a bulk density of 0.5 and good flowability as the test carrier;
2. The distance for measuring the conveying capacity of ZKS-3 to ZKS-7 is within 4 meters (conveying length+lifting height), and ZKS-10-6 is 10 meters:
3. The specific gravity and conveying distance of materials have a significant impact on the conveying volume, and the ratio of material specific gravity to conveying distance is inversely proportional to the conveying volume;
4. Under the same model, the larger the volume of the mixer, the slower the conveying speed.