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ECS-R Twelve-Station Electrolyte Injection Machine with Cycling Vacuum & High Pressure for Supercapacitors (D≤60 mm, H=50-204 mm), ER12SSEIMCVHP

ECS-R Twelve-Station Electrolyte Injection Machine with Cycling Vacuum & High Pressure for Supercapacitors (D≤60 mm, H=50-204 mm), ER12SSEIMCVHP

In Stock SKU: ER12SSEIMCVHP
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An Electrolyte Injection Machine with Cycling Vacuum & Positive High-Pressure (Pressure Diffusion) is specialized production/R&D equipment designed for filling cylindrical, pouch, or prismatic supercapacitors (EDLCs, hybrid lithium-ion capacitors). Because supercapacitors feature ultra-dense, high-surface-area porous carbon electrodes (BET surface area 1500–2500 m2/g) and tightly wound separators, standard vacuum filling alone cannot fully saturate the micro- and mesopores. Alternating between deep vacuum and positive pressure accelerates electrolyte penetration.

The main workflow includes the following procedures: (1) Chamber & Cell Evacuation (Deep Vacuum): Cells are loaded into the vacuum-tight chamber (or sealed via an injection nozzle interface). System pulls a deep vacuum (typically -0.095 MPa to -0.099 MPa/< 100 Pa) to evacuate air and moisture trapped inside the dense active carbon layers and cellulose/glass-fiber separator. (2) Precision Electrolyte Dosing: High-precision valveless ceramic plunger pumps or micro-gear pumps dispense a metered volume of electrolyte (accuracy ±0.5% - 1.0%). The electrolyte—typically acetonitrile (ACN) or propylene carbonate (PC) with quaternary ammonium salts like TEABF4—is injected under partial vacuum to prevent splashing or solvent flash-evaporation. (3) Cyclic Vacuum & Inert High-Pressure Pulsing (Diffusion): The machine alternates repeatedly between deep vacuum and positive pressure (0.2 MPa - 0.5 MPa of dry Ar gas). Vacuum removes micro-bubbles (N2/O2) blocking capillary channels, while positive high pressure physically forces the viscous electrolyte into the tortuous nanometer-scale pores of the activated carbon matrices. (4) Standing / Soaking Phase: Cells undergo a holding/standing period under regulated pressure or light vacuum to ensure complete wetting before sealing.

Part Number
  • ERS12SEIMCVHP (ER-S-12SEIMCVHP)
Power
  • AC220V±10%, single phase, 50/60Hz, 1500 W
  • AC110 V can be customized, or a 2000 W transformer works
Operation Workflow
  • Put the supercapacitor into the cell tray one-by-one after weight
  • Press the start button and lifting unit goes up, and the cycling electrolyte injection processes start.
  • After the vacuum level reaches the target value, automatic electrolyte injection will be initiated and then the cycling standing (alternative pressure-vacuum cycles)  
  • Scan the barcode of supercapacitor cell and weigh the electrolyte-filled cell again
  • Automatically screen the qualified cells and save the data
  • Take out the supercapacitor out after the lifting unit back to original position
Vacuum Electrolyte Injection under vacuum/pressure cycling
  • Main functions: vacuum electrolyte injection, vacuum standing, and high positive pressure 
  • Vacuum chamber frame is made of aluminum alloy and all other critical parts, especially for electrolyte contact area is SS316 L)
  • Supercapacitor Cells: D≤60 mm, H=50-204 mm
  • 12 stations with electrolyte injection are independent
  • Volume Range: 0-250 mL, adjustable
  • Multi-stages filtration and special absorbent to avoid crystalline particles clogged in PE tubing.
  • High precision feeding pump with anti-corrosion ceramic core is adopted. 

               

  • Electrolyte Injection Accuracy: ±1%
  • Electrolyte Injection Vacuum Level: -98 kPa
  • Electrolyte inlet/outlet tubing size: φ6 mm
  • Production Efficiency: 12 min/per cycle 
Vacuum Pump (Optional)
  • A vacuum pump (EDSRVVP) can be considered

         

Gas Pressure Supply
  • If the vacuum electrolyte filling/sealing machine is placed inside the glovebox, an Ar gas tank with second-state pressure regulator should be connected to supply 40-60 psi for pneumatic sealing.
  • If the vacuum electrolyte filling/sealing machine is placed in a dryroom, then a gas compressor (eg: EUQOFGC) can be considered. 
Dimension
  • L900* W670 * H870 mm (electrolyte feeding station)
  • L600* W450 * H1500 mm (controller)
Weight
  • ~200 kg (electrolyte feeding station)
  • ~80 kg (controller)


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