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ECS-R Economic Dual-Shaft Planetary Vacuum Slurry Mixer (1000 rpm, 500 mL), EREDSPVSM

ECS-R Economic Dual-Shaft Planetary Vacuum Slurry Mixer (1000 rpm, 500 mL), EREDSPVSM

In Stock SKU: ETSMSDSPVSM
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For battery research and electrode preparation, selecting a high-speed vacuum slurry mixer is essential to achieve a homogeneous, agglomerate-free paste. Most lab-scale planetary mixers for this application offer speeds up to 1,500 RPM, which is critical for dispersing binders and active materials without introducing air bubbles.

The key selection criteria of an appropriate slurry mixer: (1) Mixing Speed: The unit offers at least 600–1400 RPM if you are working with high-viscosity slurries or difficult-to-disperse binders like PVDF or CMC/SBR. (2) Vacuum Level: To effectively eliminate bubbles, the mixer should maintain a vacuum of at least -0.098 MPa for the duration of the cycle. (3) Temperature Control: High-speed mixing can generate significant heat. Units with water-cooled jackets help prevent the degradation of temperature-sensitive binders

Part Number
  • EREDSPVSM (ER-EDSPVSM)
Power
  • AC220V±10%, single phase, 50/60Hz, 500 W
  • AC110V can be used with a 1000 W transformer 
Mixing Speed
  • Max Speed: 1000 rpm, 4 programmable segments for automatic mode
  • Line Speed of Stirring Shaft: 5.4 m/s
  • Line Speed of Dispersing Impeller: 5.3 m/s
  • Stirring Shaft Size: Φ35 mm
  • Dispersing Impeller: Φ34 mm
  • Slurry Viscosity: Max. 12000 cP
Mixing Time
  • 0-600 min
  • Cycle Times: 9999

Mixing Jars

  • Jar volume: 500 mL (other volumes of 250 mL and 1 L with dual-shaft planetary design, as well as 50, 100, 150 mL with single mixing impeller are available upon request)
  • The dual-shaft design is shown below:

         

Vacuum Pump
  • Built-in single-stage vacuum pump
  • Vacuum Level: -85 kPa
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L330 * W320 * H570 mm (Antechamber and Glovebox-Compatible)
Weight
  • ~27 kg

 

References:

D. Grießl, et al., Effect of the Slurry Mixing Process on the Structural Properties of the Anode and the Resulting Fast-Charging Performance of the Lithium-Ion Battery Cell, J. Electrochem. Soc., 2022, 169, 020531

V. Wenzel, et al., Challenges in Lithium-Ion-Battery Slurry Preparation and Potential of Modifying Electrode Structures by Different Mixing Processes, Energy Technology, 2015, 3, 692-698

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