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ECS-FS Three-Dimensional (3D) Vibratory Wet Sieving Machine, EFS3DVWSM

ECS-FS Three-Dimensional (3D) Vibratory Wet Sieving Machine, EFS3DVWSM

In Stock SKU: EFS3DVWSM
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A 3D vibratory sieving machine (also known as a circular vibratory sifter or tumbler screen) is a high-precision separation tool used to classify, scalp, or de-dust powders and slurries. Unlike standard linear vibratory screens, a 3D sifter utilizes a unique three-dimensional motion—horizontal, vertical, and inclined—to move material across the mesh surface.

The 3D vibratory dry sieving machine is powered by a specialized vertical vibration motor with eccentric weights at both the top and bottom of the shaft. (1) Top Weight: Creates a horizontal circular motion, spreading the material from the center to the periphery of the screen. (2) Bottom Weight: Creates a vertical and inclined motion, causing the material to "jump" and tumble, which prevents the particles from blinding (clogging) the mesh holes. (3) Lead Angle: By adjusting the phase angle of the weights, you can control the spiral path of the material. A wider lead angle keeps the material on the screen longer for more precise grading.

Part Number
  • EFS3DVWSM (EFS-3DVWSM)
Power
  • AC110-220V±10%, single phase, 50/60Hz, 200 W 
Sieving Features
  • Wet sieving mode (dry sieving also works)
  • High-frequency 3D projectile motion 
  • Particle size identification, separation, and classification
  • Vibratory frequency: 3000 cycles/min
  • Amplitude: 0.2-3.0 mm
  • The wet slurry circulation function can be supplied upon request. 

           

Sieving Mesh Features
  • Sieving mesh layers: 1-8
  • Sieving loading weight: 3 kg
  • Sieving particle range: 20-125 um
  • Sieving mesh diameter: Max. 200 mm
  • Sieving mesh stack height: 510 mm
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L300 * W400 * H730 mm
Weight
  • ~37 kg

 

References:

Y. Wei, et al., Design of Vibrating Screen Separation Equipment for Powder Materials, J. Phys.: Conf. Ser., 2022, 2235, 012028

M.O. Besenhard, et al., Accuracy of micro powder dosing via a vibratory sieve–chute system, European Journal of Pharmaceutics and Biopharmaceutics, 2015, 94, 264-272

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