Vibrating Feeder uses dual vibrating motors to generate directional vibration, driving the trough to reciprocate and carry material forward in a steady, uniform flow to the crusher.
Widely used in sand & gravel, mining, metallurgy, coal, cement and chemical plants, it offers large capacity, stable operation, low noise and easy maintenance. The wear-resistant trough can be lined for abrasive materials, and the feeding rate is adjustable via excitation force or an optional VFD cabinet.
• Trough: Carries the material, made of wear-resistant steel plate, and can be lined with wear plates according to material characteristics.
• Vibrating Motor: Provides the excitation source; two motors rotate synchronously in opposite directions to generate directional vibration force.
• Damping Springs: Support the trough, absorb vibration, and reduce the dynamic load transmitted to the foundation.
• Support/Suspension Device: Fixes the equipment; can be installed in a seated or suspended manner.
• Control Cabinet (optional): Integrates a frequency converter to achieve stepless adjustment of feeding volume and remote control.

Ore Conveying Equipment

Mining Vibrating Feeder

Vibrating Feeder Manufacturer

Mining Feeding Equipment
The vibrating feeder is suitable for feeding various bulk ores and rocks in mining, quarry and mineral processing, including:
- Stone / rock types — river pebble, granite, basalt, limestone, sandstone, dolomite, diabase
- Metallic ores — iron ore, copper ore, gold ore, manganese ore and other ferrous / non-ferrous metal ores
- Other bulk materials — coal, gangue, cement clinker, slag, lime and similar granular or lumpy materials
It is typically used for materials with compressive strength below 250 MPa and feed size within the maximum feed opening of the selected model. For highly abrasive materials, replaceable wear liners are recommended; for high-moisture or sticky materials, a wider trough without grid bars is preferred to avoid clogging.
Choose the model based on required capacity (t/h), material type, maximum feed size (mm) and site layout:
| Capacity range (t/h) | Recommended model | Typical use |
|---|---|---|
| 50–120 | ZSW650×2500 / ZSW850×3000 | Small crushing lines, secondary / tertiary feeding |
| 120–430 | ZSW960×3800 / ZSW1100×4200 | Medium quarry and mining lines |
| 280–600 | ZSW1100×4900 / ZSW1300×4900 | Large aggregate plants, primary feeding |
| 450–1200 | ZSW1300×6000 / ZSW1500×6000 | High-capacity mining and large-scale crushing plants |
- Match the feeder capacity to the crusher throughput; generally choose a feeder rated at or slightly above the crusher's design output.
- Confirm the maximum feed particle size is smaller than the model's maximum feed size, with a safety margin.
- Seated installation is standard; suspended installation is available when headroom is limited or the feeder needs to be hung from a hopper.
- Add a VFD control cabinet if you need fine flow regulation, remote control or compatibility with an automated production line.
- Actual output varies with material bulk density, moisture, lump-to-fine ratio and feed height. Contact us for a customized configuration plan based on your site conditions.
The vibrating feeder is widely used to match the crushing and sieving equipment in many industries including stone crushing plants, metallurgy, coal mine, mineral dressing, building material, chemical, grinding, etc.
The ZSW series uses a double-eccentric-shaft exciter. A motor drives the driving shaft; a gear pair synchronizes the driven shaft in reverse. The eccentric weights' centrifugal forces cancel horizontally and stack vertically, producing linear excitation that drives the trough. The gear pair ensures this reverse synchronization—critical for directional vibration—and must be assembled by markings.
Under high-frequency linear vibration, once vibration acceleration exceeds gravity, material is thrown up and lands along the inclined trough, moving forward. This periodic "throw—land—advance" cycle maintains uniform flow and stable feeding.
Material passes through bottom grizzly bar gaps and is automatically sorted: fines drop through to the conveyor below, oversize continues forward into the crusher. One unit handles both feeding and pre-screening.
| Model | Trough size(mm) |
Max feed size(mm) |
Capacity (t/h) |
Motor Power (kw) |
Overall dimension L*W*H(mm) |
| ZSW650×2500 | 650×2500 | 560 | 50-90 | 1.1×2 | 2570×890×1000 |
| ZSW850×3000 | 850×3000 | 780 | 80-120 | 7.5 | 3110×1800×1100 |
| ZSW960×3800 | 960×3800 | 820 | 120-210 | 11 | 3850×1950×1100 |
| ZSW1100×4200 | 1100×4200 | 1000 | 200-430 | 15 | 4400×2050×1200 |
| ZSW1100×4900 | 1100×4900 | 1000 | 280-500 | 18.5 | 5200×2050×1200 |
| ZSW1300×4900 | 1300×4900 | 1100 | 450-600 | 22 | 5200×2350×1400 |
| ZSW1300×6000 | 1300×6000 | 1100 | 450-680 | 22 | 6300×2300×1400 |
| ZSW1500×6000 | 1500×6000 | 1280 | 550-1200 | 30 | 6300×2550×1400 |
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A vibrating feeder is a device that uses a vibrating motor or electromagnetic exciter to generate directional vibration force, driving the trough to perform periodic reciprocating vibration, thereby achieving uniform, continuous, and quantitative material conveying. It is an indispensable upstream pre-processing feeding device in industrial processes such as sand and gravel aggregate production lines, mining and mineral processing, and building materials processing. Its main function is to feed crushers, screening equipment and other downstream machines in a continuous and even manner, preventing blockages or interruptions.
Two vibrating motors rotate synchronously in opposite directions, generating directional excitation forces that drive the feeding trough to perform periodic linear reciprocating vibrations along an inclined direction. When the vertical component of the trough's vibration acceleration is greater than the acceleration due to gravity, the material in the trough is continuously thrown up and moves forward in a jumping motion, achieving uniform and continuous conveying. The feeding speed is controlled by adjusting the excitation force of the motors; alternatively, stepless speed regulation can be achieved by installing a frequency converter.
- Stable operation and uniform feeding: Uses dual vibrating motors for synchronous drive, ensuring stable amplitude and continuous, uniform material conveying, preventing blockages or interruptions.
- Energy-efficient and low noise: Driven by vibrating motors, energy consumption is reduced by more than 30% compared to traditional feeding equipment, resulting in low operating noise and a friendly working environment.
- Simple maintenance and long service life: The trough is made of wear-resistant steel plate, the structure is robust, key components are sealed and dustproof, daily maintenance is simple, and the service life is long.
- Convenient adjustment and strong adaptability: By adjusting the motor excitation force or using frequency control, the feeding volume can be easily adjusted to adapt to different materials and process requirements.
Vibrating feeders are widely used in matching crushing and sieving equipment across many industries, including:
- Sand and stone crushing plants / aggregate production lines
- Metallurgy, coal mines, mineral processing
- Building materials, chemical industry
- Grinding, ore conveying and other applications
They are compatible with various crushers to achieve uniform and continuous material feeding.
This series (ZSW series) of vibrating feeders has the following parameter ranges:
| Parameter | Range |
|---|---|
| Max feed size | Up to 1280 mm |
| Capacity | 50–1200 t/h |
| Motor power | 2.2–30 kW |
| Trough size | From 650 × 2500 mm to 1500 × 6000 mm |
There are 8 models available in total (from ZSW650×2500 to ZSW1500×6000). The actual output will vary depending on different materials, feed particle size and other factors. Customized selection is available based on actual production line requirements.
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