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Cutlery Polishing Machine-Vibratory Polisher

  • Origin: China
  • Supply Type: oem service
  • Processing Time: 10-15 DAYS
  • Min Order: 1

Supplier Info.

  • Employees Total 101-200
  • Annual Revenue US$2.5 Million - US$5 Million

Standard Features:

  • Effective motor position for Exnt Vibration.
  • High tensile bolts and nuts for long service life of motor and machinery.
  • Efficient removal of process fluid for best surface finish.
  • High efficient motor.
  • Bowls shot blasted before and after Polyurethane lining for painting.
  • All internal welds ground smooth.
  • Anti rotation motor locking plate provided.
  • Bowls Surface finishing is Stress relived and strengthened with shot blasting processAdditional Features:
    • Separation area is designed to fit media and parts easy selection
    • Complete Polyurethane dam flap to avoid metal instead of metal flap.
    • Polyurethane and paint are corrosion resistant for longer life in harsh chemical environments.
    • Accident proof media outlet design for total safety.

    Advantages:

    • Versatile components adaptability, from very precise fine component until huge casting parts, each product can be customized process design
    • Inspection during the process
    • Separation integrated in machine
    • Better media/parts mixing since it has cascade and circular action.
    • Cost saving compared with manual process
    • Automatic processing
    • Process based on batch or continuously

    Â

    The vibratory deburring tumbler also called tumble deburring, industrial vibratory tumbler or tumbler polisher machine.Â

    Vibration polisher or toroidal vibro polishing machines have a doughnut-shaped chamber that permits a continuous circular flow of media and workpieces.Â

    The bowls may have either flat or spiral bottoms.Â

    As with tub-type machines the chambers are provided with circ;

    Â

    The vibro deburring of the bowl is accomplished either by a vibratory motor or by an eccentric weight system mounted vertically in the center tube of the bowl. With either method the amount of weight placed on the top and bottom of the eccentric system and the angular displacement between the two weights control the following:Â

    1) the finishing action (the amount of media vibration against the workpieces)

    2) the speed at which the mass rolls over within the bowl

    3) the speed at which the mass rorates around the bowl

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