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  • High frequency vibrators require the installation of a specific converter to transform a 230/400V - 50Hz input into a 42V – 150Hz output for 9000 rpm H.F. vibrators or 42V - 200Hz output for 6000 rpm H.F. vibrators. Complete with electric control board.
  • Variable frequency vibrators series VFP/VFC are suitable for formwork or vibrating tables to produce concrete elements with high frequency vibrations optimized by an accurate speed regulation. This allows an optimal productivity of the plant and a remarkable lowering of the noise in relation to traditional systems. The VFP/VFC vibrators series can be equipped with 'auto displacing' weights, for differential vibration among the filling of the mould and the finishing of the produced element. THREE-PHASE INPUT VOLTAGE With standard execution at: - 2 Poles - 42V - 0-100 Hz – 0-6000 rpm - 4 Poles - 400V - 0-100 Hz – 0-6000 rpm FREQUENCY INVERTER Vibrators VFP/VFC series can be operated by any kind of inverter type PWM with constant torque. On specific request, Bianchi Casseforme may supply computerized vibration plant.
  • For the precasting of small items, in industrial plants, on vibration tables, standard frequency electric vibrators are the most appropriate solution. Equipped with asynchronous three-phase motors, supported by a sturdy frame assembled to a protection degree IP 65.7, they are the final solution to your vibration requirement. BF series vibrators satisfy near all industrial vibrating applications.
  • On the precasting sites, whenever a perfect surface finish is required and for highly resistant concrete, high frequency vibration is a must. We suggest our H.F. electric vibrators with asynchronous three-phase motors supported by a sturdy frame and assembled to a protection degree IP 65.7. Available with plate-type or cradle lug bracket mounting. AFC and AFP high frequency or supply frequency vibrators are suitable for concrete elements production on formworks or vibrating tables
    • THREE-PHASE INPUT VOLTAGE
    On specific request, Bianchi Casseforme may supply suitable frequency converter to operate its vibrators
  • For an accurate concrete vibration, whenever no vibration outside the form is possible or on difficult sites, the solution is our maintenance-free electrical H.F. vibrating poker with converter which can be connected also to single-phase power. These electric H.F. vibrating pokers consist of a submersed part with special electric motor (insulation class H) with 5 m hose made of abrasion-proof rubber and a 10 m long input cable. The switch is housed into a sealed box with 42V / 32A plug meeting EEC standards. Our vibrating pokers are studied for connection to 42V, 200 Hz power. For a correct motor cooling during the operation, the poker must be totally plunged into the concrete. To connect the vibrating poker to 400V - 50Hz or 230V – 50Hz, our sturdy, handy, compact voltage and frequency converter is required.
  • For an accurate vibration of concrete even in special cases, whenever no vibration inside the formwork is possible, the solution is our sturdy pneumatic poker-type vibrator. Reliable, maintenance-free, totally safe. We propose our high-frequency, pneumatic vibrating pokers; they are bearing- and lubrication-free and consist of a wear-proof steel vibrating assembly, abrasion- and oil-proof rubber hose, silenced cock with air filter, 3/4” GAS connection. 6 Bar compressed air required.
  • Synchronous alternative mouvement smoother for panels surface. Trolley for transformer.
  • Vibrating smoother for panels surface finishing
  • Special compacting smoothing trowel for panels with aggregates in view.
  • Turbine vibrators VT series
    • Noise lower than 70 dB
    • Very low air consumption
    • Lubrication-free
    • Wear resistant
    • Small sizes
    Atex version available on request
  • Rotor vibrators serie VR
    • High centrifugal force
    • High frequencies
    • Void inertia
    • Continuously adjustable
    • Minimum lubrication
    • Small sizes
    Atex version available on request
  • Piston vibrators serie AC
    • Linear oscillations
    • Large vibration amplitude
    • Minimum air consumption
    • Continuously adjustable
    • Minimum lubrication
    • Small sizes
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