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ECS-FL Heavy-Duty Three-Dimensional (3D) Vibratory Dry Sieving Machine, EFLHD3DVDSM

ECS-FL Heavy-Duty Three-Dimensional (3D) Vibratory Dry Sieving Machine, EFLHD3DVDSM

In Stock SKU: EFLHD3DVDSM
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A heavy-duty 3D vibratory dry sieving machine is an industrial-grade separator designed for high-capacity classification of bulk powders. While standard laboratory sifters focus on precision with small samples, a "heavy-duty" unit is engineered for continuous operation, handling high material loads and abrasive powders without mechanical fatigue.

The "3D" designation refers to the three-dimensional movement path—horizontal, vertical, and inclined (tilting)—generated by a high-torque vertical vibration motor with adjustable eccentric weights. (1) Action: The material is thrown upward and simultaneously spiraled outward from the center of the screen. This ensures that every particle has multiple opportunities to pass through the mesh. (2) Industrial Drive: Heavy-duty units feature reinforced motor mounts and high-tensile springs (often made of chrome-vanadium steel) to withstand the constant G-forces required to move hundreds of kilograms of dense ceramic or metallic powder.

Part Number
  • EFLHD3DVDSM (EFL-3DVWSM)
Power
  • AC110-220V±10%, single phase, 50/60Hz, 1500 W 
Sieving Features
  • Dry sieving
  • High-frequency 3D projectile motion 
  • Particle size identification, separation, and classification
  • Vibratory frequency: 3000 cycles/min
  • Amplitude: 0.8-4.0 mm
Sieving Mesh Features
  • Sieving mesh layers: 1-8
  • Sieving loading weight: 25 kg
  • Sieving particle range: 75-125 um
  • Sieving mesh diameter: Max. 400 mm
  • Sieving mesh stack height: 960 mm
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L600 * W660 * H1260 mm
Weight
  • ~98 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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