F5X Series Vibrating Feeder
F5X Series

Ultra-Heavy Duty Primary Vibrating Feeder

Designed exclusively for extreme primary feeding conditions, F5X Series Vibrating Feeders deliver 4.5G vibration intensity and unprecedented structural rigidity. Bypassing traditional lightweight I-beam construction, equipment utilizes massive rectangular tube frameworks capable of withstanding brutal impact forces from 80m³ silo pressures. Processing up to 1500mm rock boulders at peak rates of 1600 TPH, this low-profile unit ensures continuous, high-volume material flow to primary jaw, impact, and hammer crushers.

400-1200 t/h
Up to 1500 mm
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Heavy Industrial Primary Circuits

Engineered to absorb extreme dropping impacts and regulate massive initial material flows.

Aggregate Base Stations

Receives blasted granite and basalt directly from dump trucks, feeding primary jaw crushers while scalping out unwanted clay and undersized fractions.

Metallic Mine Beneficiation

Endures continuous severe impacts from dense iron and copper ores, maintaining stable operational frequencies under high loads.

Coal & Metallurgy

Regulates massive run-of-mine coal flows into breaking equipment, preventing downstream blockage and power spikes.

Solid Waste Demolition

Transfers heavy reinforced concrete slabs and construction debris into primary impactors without structural deformation.

Mechanical Specifications & Structural Highlights

Ultra-Heavy Rectangular Tube Framework

Abandons traditional lightweight 16# or 20# I-beam/channel steel designs. Trough utilizes massive rectangular tubes arranged in grid formations, providing extraordinary resistance against 80m³ static silo pressures and violent dynamic boulder impacts.

4.5G Vibration Intensity

Leveraging advanced kinetic engineering, equipment generates maximum vibration intensity of 4.5G. This output exceeds traditional vibrating feeders by over 30%, guaranteeing superior volumetric throughput under equivalent dimensional footprints.

FV Super Exciters

Standardized FV exciters endure heavy-duty operation, frequent start-stop cycles, and variable frequency demands. Internal oil-bath lubrication extends maintenance intervals to 1500 hours. Integral bearing housing designs permit rapid field extraction and replacement.

Stepped High-Drop Grizzly Bars

Grizzly sections feature combination welding of NM wear-resistant steel and standard structural steel. Two-stage stepped architecture creates high drop zones, aggressively tumbling material to maximize fine particle scalping efficiency before primary crushers.

Weld-Free Side Plates

Side plates contain zero welding spots. Entire structure assembles utilizing high-strength torsional shear bolts, completely eliminating thermal stress cracking risks associated with continuous heavy vibration.

Advanced Suspension & Dampening

Utilizes adjustable pin-pillar supports paired with high-capacity composite springs for silent operation. Imported pivoting motor shock absorbers feature internal rubber cores delivering up to six years of maintenance-free service life while isolating electric motors from kinetic damage.

How It Works On-Site

F5X Series Vibrating Feeder
  • 1

    Eccentric Shaft Actuation

    Electric motors drive primary eccentric shafts located within FV exciter assemblies. Primary shaft connects via precision gears to parallel secondary eccentric shaft.

  • 2

    Directional Kinetic Generation

    Synchronized counter-rotation of both eccentric shafts cancels transverse kinetic forces while combining longitudinal forces, generating powerful, unidirectional excitation strokes.

  • 3

    Material Propulsion

    Resulting linear stroke forces heavy rock masses forward. Material slides and leaps continuously from intake zones toward discharge lips at controlled velocities.

  • 4

    Grizzly Scalping & Discharge

    Material passes over robust grizzly bar sections at discharge ends. Undersized particles fall through bar gaps for removal or bypass, while remaining large rock boulders enter primary crusher cavities smoothly. Operators adjust capacity via variable speed drives or gear phase modifications.

Technical Data

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