Performance Characteristics
The inertia exciter and resonant mass form a resonant unit, reducing motor power and saving energy.
Using a regular motor to drive a gear exciter through a universal joint to generate excitation force, so that the motor does not interfere during equipment operation
By not directly contacting the bed with the vibration and motor, the operating temperature of the vibrating bed is increased.
The excitation source is installed at the head of the equipment, which improves the overall force situation of the equipment and achieves resonance vibration with one unit
The use of a bed in series instead of several ordinary vibrating beds reduces equipment investment and engineering costs, while also being advanced
The vibration structure ensures synchronous vibration in the width and length directions of the large vibration bed, solving the problem of ordinary dual motor vibration bed
Deviation and gully flow issues.
Due to the increase in length and area, large vibrating fluidized beds greatly prolong the residence time of materials, which is advantageous
The deep drying of large particle materials, combined with the application of dual mass vibration and the reduction of fluidization velocity, is beneficial for reducing grinding
Damage, maintain the stability of particles.
Large scale dual mass vibrating fluidized bed dryer
Applicable materials
Application areas of large dual mass vibrating fluidized bed:
Organic compounds such as copolymers and their monomers, such as MBS, ABS, adipic acid, polyacrylamide, and acrylamide crystals
Polytetrafluoroethylene, phenolic resin, nylon 66, polypropylene resin, polyester chips, polyvinyl chloride.
Inorganic salts such as ammonium nitrate, ammonium sulfate, etc.
Feed industry and fertilizer industry: Expanded pellet feed, fermented feed, organic fertilizer, etc.
Waste disposal and environmental protection industry: garbage, etc.
Large scale dual mass vibrating fluidized bed dryer
Technical Specifications
|
model Specifications |
Mesh board area (㎡) |
Dehydration ability (Kg/h) |
Overall dimensions (Wide)×long×High)(mm) |
Total equipment weight (Kg) |
Vibration weight (Kg) |
Vibration Motor Power(KW) |
|
NGLZ9×9 |
8 |
300~1800 |
1380×11000×3900 |
13000 |
5000 |
7.5 |
|
NGLZ9×12 |
11 |
400~2400 |
1380×14000×3900 |
16000 |
6000 |
11 |
|
NGLZ9×15 |
13 |
500~3000 |
1380×17000×3900 |
19000 |
7500 |
11 |
|
NGLZ12×12 |
14 |
550~3200 |
1680×14000×3900 |
22000 |
8000 |
15 |
|
NGLZ12×15 |
17 |
700~4000 |
1680×17000×39000 |
25500 |
10000 |
15 |
|
NGLZ12×18 |
21 |
850~4800 |
1680×20000×3900 |
29000 |
12000 |
18.5 |
|
NGLZ16×15 |
23 |
900~5500 |
2080×18000×39000 |
36000 |
14000 |
18.5 |
|
NGLZ16×18 |
27 |
950~6300 |
2080×20000×3900 |
41000 |
16000 |
22 |
|
NGLZ16×20 |
30 |
1000~7000 |
2080×22000×3900 |
46000 |
18000 |
22 |
|
Dehydration capacity refers to the inlet air temperature100~300(℃)The ability to remove pure water at a certain time |
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