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ECS-FL Large Jaw Crusher (300 kg/h), EFLJC

ECS-FL Large Jaw Crusher (300 kg/h), EFLJC

In Stock SKU: EFLJC
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A Jaw Crusher is the primary "coarse" crushing tool in the laboratory and industrial scale. It is designed to handle the first step of material reduction, taking large, hard, or abrasive bulk materials and breaking them down into smaller fragments (typically sub-millimeter to a few millimeters) that can then be processed by the fine-grinding mills we've discussed (like vibratory or planetary mills).

The jaw crusher utilizes compressive force to break material. It consists of two "jaws": one fixed and one moving (the swing jaw). (1) V-Chamber: The two jaws form a V-shaped opening called the crushing chamber. (2) Motion: An eccentric shaft causes the moving jaw to oscillate back and forth. When the jaw moves toward the fixed plate, the material is squeezed and crushed. When it moves away, the crushed material falls further down the chamber. (3) Discharge: The material exits the bottom once it is smaller than the Gap Setting (CSS - Closed Side Setting).

Part Number
  • EFLJC (EFL-JC)
Power
  • AC220V±10%, single phase, 50/60Hz, 1100 W 
Crushing Features
  • Solid-state material crushing
  • Processing amount/efficiency: 300 kg/h
  • Equipment is mainly made of SS304
Crushing Jaw/Linear Plate (Optional) Features
  • Jaw Plate: SS304, Zirconia, Tungsten Carbide
  • Jaw Plate Dimension: 90X90mm
  • Jaw Plate Distance: 0-30 mm (adjustable)
  • Linear Plate: SS304, Zirconia, Tungsten Carbide 
Particle Features
  • Max size of feeding powder: < 90 mm
  • Output Power size after milling: <2 mm
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L330 * W560 * H490 mm
Weight
  • ~160 kg

 

References:

T. Zhang, et al., Characteristics of wet and dry crushing methods in the recycling process of spent lithium-ion batteries, Journal of Power Sources, 2013, 240, 766-771

I. I. Beloglazov, et al., Computer Simulation Methods for Crushing Process in an Jaw Crusher, IOP Conf. Ser.: Mater. Sci. Eng., 2016, 142, 012074

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