300 MPa CIP or WIP Press with Electrode Feedthroughs and 30 mm ID Vessel - YLJ-CWIP-300

300 MPa CIP or WIP Press with Electrode Feedthroughs and 30 mm ID Vessel - YLJ-CWIP-300

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SKU: : \YLJ-CWIP-300

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YLJ- CWIP-300 is a manual hydraulic isostatic press with two electrode feed-throughs in ID 30mm vessel up to 300 Mpa pressure. One set of CIP or optional WIP die with 24T hydraulic press is included. It is an excellent tool for researching the pressure and temperature effect on solid-state battery capacity & cycle life.
Specifications:
Hydraulic Press
  • 0 - 20T for 30 mm ID vessel 
  • Manual operation hydraulic press with pressure gauge and valve
  • Piston travel distance: 
    • 30 mm Maximum
CIP Vessel


  • Vessel Dimention: Inside: 30 mm (I.D.) x 110 mm (H) Overall: Φ100 × 315 H (mm)
  •  Two electrode feed-throughs are built into the vessel to connect a battery inside
Vessel Pressure


  • 0 - 300 MPa
  • For calculating the actual pressure (MPa) applied to your working piece, please follow the equations below:
  • P = T x g x 10 / (π x r^2 )
    • P: Actual pressure (Mpa) on the working piece
    • T: Actual force (metric ton) applied on the pressure vessel cylinder
    • g: gravitational acceleration of earth g ≈ 9.8 m/s2
    • π: ~3.14
    • r: Radius (cm) of the Pressure Vessel (1.5 )
WIP Die Option
  • WIP die(Warm isostatic pressing) is available upon request 
  • Heating tape and a digital temperature controller are included 
  • Max. max. working temperature: RT - 90 oC
Electric Hydraulic Pump
( Optional)
Application Notes
 

 

 

 

 

Dimension

  • 220 (L) × 160 (W) × 590 (H) mm 

Shipping Dimension

  • 48"x40"x38"

Weight

  • 60 Kg (press)

Shipping Weight

  • 315 lbs

MTI offers a One-Year limited warranty with lifetime support(may cause a fee) for this product.

The MTI One Year Limited Warranty does NOT cover

  • Consumable parts such as O-rings, crucibles, screws, washers, etc.
  • Any damage and rust resulting from improper storage or maintenance.
  • Any damages caused by the use of corrosive and acidic gases.
  • Any damage resulting from failing to adhere to the individual product's specific operation requirements, such as water cooling, venting, etc.
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