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Hopper Vibrators

We are one of the prominent entities, actively affianced in providing a wide series of Hopper Vibrators.

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  • Min Order Quantity
    1-Pieces
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Product Details

  • Material
    Alloy
  • Power
    Pneumatic
  • Structure
    Regulating
  • Type
    Hydraulic Filters

Other Details

BH model pneumatic piston vibrators are ideal for use on storage containers such as bins, hoppers, and silos to effectively promote material flow by eliminating the formation of bridges and rat holes.  BH vibrators work well as drives on linear motion vibratory feeders and they are ideal for use on screens and vibratory tables.  BH vibrators come in 10 sizes to fit a wide range of applications. 

The linear vibration of NAVCO industrial pneumatic vibrators offers the following advantages:

Linear Vibration - The forces generated by NAVCO pneumatic piston vibrators are linear, so they may be directed and concentrated in the problem area. In addition, no damaging shear forces are applied to the mounting bracket or storage vessel.

High Amplitude, Low Frequency - The high-energy impulse vibration generated by NAVCO pneumatic piston vibrators is effective in reducing the strength of bulk materials and the sliding friction between the material and the bin wall. This is accomplished without approaching resonant frequencies, which can cause significant structural damage to the bin or hopper.

Low Maintenance - NAVCO BH units provide years of effective performance when installed and operated properly.

Bin Mapping 

The unique NAVCO Bin Mapping methodology involves a detailed evaluation of the storage vessel and its intended bulk material. Recommendations are made based on a variety of factors including bulk density, particle size, moisture content, temperature, vessel size and shape. NAVCO pneumatic piston vibrators are sized for the application and their area of influence is determined. The vibrators are located on the bin or hopper so that the areas of influence overlap; vibrators are operated in a sequence that provides optimal flow pattern and minimal utility consumption.

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