The under-bin vibratind feeder is installed at the bottom of the silo. The material has a buffering and loosening process on the trough of the under-bin feeder, and there is no arching or blocking, so that the material feeding is uniform and stable, which
1. The under-bin vibratind feeder is installed at the bottom of the silo. The material has a buffering and loosening process on the trough of the under-bin feeder, and there is no arching or blocking, so that the material feeding is uniform and stable, which can improve whole stone crusher plant capacity.
2. The large pieces of material are evenly and continuously sent to the crushing equipment. Its stable feeding performance characteristics can ensure the normal and orderly operation of the entire sand and gravel production line.
3. During the production process, the exciting force can be changed by adjusting the relative angle of the eccentric block, thereby controlling the amount of feeding, which is suitable for the needs of various sand and stone crushing plant.
Smooth vibration. Advanced vibration technology ensures smooth vibration and reliable operation during feeding.
Easy adjustment. By adjusting the relative angle of the eccentric block, the feeding amount can be easily controlled.
Compact structure. Small size, light weight, but large conveying capacity, which can effectively reduce production and operation costs.
Wear-resistant and durable: Made of non-wearable steel, it ensures the wear resistance and durability of the feeder.
GZG series vibrating feeder adopts vibrating motor as the excitation source, and two vibrating motors are placed on the tank body at the rear or side. Its working principle is that two vibrating motors rotate in the opposite direction. When the motor rotates, the eccentric blocks at both ends of the motor generate the exciting force, and the driving equipment makes reciprocating linear vibration in the inclined direction of the feeding tank. Every time the tank vibrates, the materials are thrown up once, so that the materials are pushed slowly from the feeding end to the discharging end to achieve the purpose of feeding.
Machine Model |
Max Feeding Size(mm) |
Vibration frequency (r/min) |
Double Amplitude (mm) |
Capacity (t/h |
Motor Power (kw) |
Chute Size (mm) |
Overall size (mm) |
|
GZG40-4 | 100 | 1450 | 4 | 30 | 40 | 2x0.25 | 400×1000×200 | 1337×750×600 |
GZG50-4 | 150 | 1450 | 4 | 60 | 85 | 2x0.25 | 500×1000×200 | 1374×800×630 |
GZG63-4 | 200 | 1450 | 4 | 110 | 150 | 2x0.5 | 630×1250×250 | 1648×1000×767 |
GZG80-4 | 250 | 1450 | 4 | 160 | 130 | 2x0.75 | 800×1500×250 | 1910×1188×850 |
GZG100-4 | 300 | 1450 | 4-6 | 270 | 380 | 2x1.1 | 1000×1750×250 | 2190×1362×900 |
GZG125-4 | 350 | 1450 | 4-6 | 460 | 650 | 2x2.25 | 1250×2000×315 | 2540×1500×1030 |
GZG130-4 | 400 | 1450 | 4-6 | 480 | 670 | 2x2.25 | 1300×2040×300 | 2544×1556×1084 |
GZG150-4 | 450 | 1450 | 4-6 | 520 | 750 | 2x3.0 | 1500×1800×400 | 2250×1864×1412 |
GZG180-4 | 500 | 1450 | 5-6 | 900 | 1200 | 2x3.7 | 1800×2325×375 | 2885x2210x1260 |
*The output will vary according to different materials, feed particle size and other factors
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