GF Series Vibrating Feeder
GF Series

Compact Mobile-Station Vibrating Feeder

Engineered specifically for mobile crushing plants, semi-fixed stations, and small-scale aggregate yards, GF Series Vibrating Feeders deliver high-efficiency primary regulation in a lightweight, space-saving footprint. Utilizing dual vibration motors as direct excitation sources, equipment achieves 4.0G maximum vibration intensity. Unit eliminates mechanical drive components like external pulleys or shafts, delivering steady continuous feed to primary jaw crushers, initial impactors, and hammer mills while executing aggressive material pre-screening.

280-450 t/h
Up to 700 mm
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Mobile & Compact Feeding Applications

Optimized for transportable crushing configurations and footprint-constrained material reclamation setups.

Wheel & Track Mobile Stations

Integrates perfectly into onboard primary chassis setups, delivering high dynamic stability without shifting weight balances during transport.

Small-Scale Aggregate Yards

Feeds initial reduction circuits processing under 250 TPH, drawing raw feed from small hopper units smoothly without bridging.

Primary Scalping Circuits

Separates quarry-run fines from coarse ore chunks, bypassing undersized material around primary crushers to prevent packing.

Mechanical Specifications & Structural Highlights

Weld-Free Structure & Zero Cracking

Crossbeam assemblies connect to side plates exclusively via high-strength torsional shear bolts. Side plates feature zero weld spots, completely eliminating residual thermal stresses and avoiding catastrophic fatigue fracturing common under continuous vibration.

Direct Vibration Motor Excitation

Dual onboard vibration motors generate 4.0G maximum acceleration force, boosting processing throughput by over 20% compared to traditional TSW models. Excitation forces adjust dynamically to optimize material movement across different seasons.

Optimized Mobile Station Layout

Eliminating conventional mechanical exciters removes bulky external motors, drive belts, pulleys, shafts, and oil seals. Compact, simplified architecture lowers total machine weight and profile height, matching strict mobile transport regulations.

Two-Stage Stepped Scalping Bars

Grizzly section employs two-stage stepped high-drop layout, forcing raw material to tumble, impact, and disperse forcefully. Mechanism achieves over 90% fine scalping efficiency, filtering out undersized fines to reduce internal crusher wear.

Optional Under-Slung Screening Deck

Feeder accepts optional lower deck screen layer positioned directly beneath grizzly bars. Double-deck variation provides detailed secondary separation, sorting natural sand or dirt out before ore streams hit primary reduction cavities.

Rubber Isolation & Low Maintenance

Heavy-duty rubber springs carry vibrating trough assemblies, offering superior load capacity, quiet operation, and dampening protection for concrete or chassis foundations. Maintenance requires only brief grease replenishment every 2000 operating hours.

How It Works On-Site

GF Series Vibrating Feeder
  • 1

    Direct Kinetic Generation

    Twin vibration motors mounted underneath or alongside feeder trough rotate in counter-directions. Interlocking rotational forces cancel lateral movement, creating strict linear strokes along trough incline path.

  • 2

    Regulated Material Propulsion

    Linear stroke forces bulk material bed forward slowly toward discharge zones. High-frequency movement breaks raw material adhesion, spreading stones uniformly across entire trough width.

  • 3

    Stepped Grizzly Dispersal

    Moving rocks drop off first grizzly stage onto second tier. High-drop transition zone turns material over completely, liberating entrapped dirt, clay, and undersized rock particles from large boulders.

  • 4

    Dual-Fraction Sorting & Feed

    Particles smaller than grizzly bar spacing or optional lower-deck mesh apertures pass downward into fine reject chutes. Coarse, cleaned ore boulders discharge over front lip into crushing cavities, optimizing primary circuit power consumption.

Technical Data

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