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ECS-TM Gap-Control Hot Rolling Press (W200mm, 130°C) for Electrode Calendering, ETMECGCHRP

ECS-TM Gap-Control Hot Rolling Press (W200mm, 130°C) for Electrode Calendering, ETMECGCHRP

In Stock SKU: ETMECGCHRP
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For high-precision electrode calendering, transitioning from simple gap-control (setting the distance between rollers) to pressure-control is the key to achieving consistent energy density and ionic conductivity. In a pressure-controlled system, the machine uses hydraulic or servo-actuators to apply a specific, measurable force (typically in metric tons) regardless of slight variations in the initial coating thickness.

When using a pressure-control press, your goal is to optimize the Packing Density (PD) = m/(A*t). Where m is the mass of active material, A is the area, and t is the post-calendering thickness. (1) 10% Rule: For most lithium-ion cathodes (NMC/LFP), aim for a thickness reduction of approximately 10–20% per pass. Attempting more can cause "spring-back" or delamination. (2) Thermal Softening: Calendering at 60-100 °C reduces the yield strength of the PVDF binder, allowing for higher density at lower pressures and reducing the risk of foil cracking. (3) Linear Pressure: In production, pressure is often reported as N/mm (force divided by the width of the electrode). Lab machines that report total "Tons" should be converted to linear pressure for academic reporting.

Part Number
  • ETMECGCHRP (ETM-EC-GCHRP)
Power
  • AC220V±10%, single phase, 50/60Hz, 2000 W 
Cold Roller
  • Φ96 x 200 mm (effective width for hot rolling: 180 mm)
  • Roller is made of Cr12Mo1V1 and surface plated with Cr layer
  • Surface Hardness: HRC62, surface coating thickness: ≥10mm
Pressure
  • Max. 2-3T (gap-control, pressure cannot be adjusted)
Rolling Temperature
  • Max. 130 °C
Calendering Speed
  • 0-40 mm/s, digital display, adjustable
Calendering Gap
  • 0-3.0 mm, manually adjustable 
Note
  • Each time the reduced thickness is 20%-25%. Multiple-rounds calendering is needed for higher coating thickness reduction. For example, the initial electrode thickness is 200 um, then 180 um, 160 um, 140 um and so on under a certain pressure. 
Dimension
  • L819 * W230 * H330 mm (glovebox-compatible)
Weight
  • ~85 kg

 

References:

J. Zhang, et al., Investigation on mechanical and microstructural evolution of lithium-ion battery electrode during the calendering process, Powder Technology, 2022, 409, 117828

M. Abdollahifar, et al., Insights into Influencing Electrode Calendering on the Battery Performance, Adv Energy Mater., 2023, 13, 2300973.

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