Lamilation PP/PE/PP Alkaline Battery Separators by Radiation Graft
Product ID: SL-083(7)
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SSHTC's lamination PP/PE/PP is a highly-absorbed liquid membrane.This process allows SSTHC to combine the inherent benefits of polyethylene(PE) and polypropylene (PP) membranes into a single flat-sheet alkaline battery separator.As the most important parter of SAFT(FR),ZPOWER(USA),GAZ(RU),REVOLT(CH).etc. for more than twenty years.
Specifications
- ADVANCED CHARACTERISTICS
- ●PP non-woven materials outer layers that provide more electrolyte for absorbing
- ●PE inner layer that provides higher efficient ion-exchange
- ●Excellent chemical stability and high anti-oxidation ability
- ●Wider temperature range for applications
- ●Greater dry tensile strength with laminated membrane
- ●Well-suited for a variety of high capacity batteries and super capacitors
- TYPICAL APPLICATION
- ●Secondary vented Cd/Ni battery
- ●Secondary high medium and low drain's Zn/Ag2O batteries
- ●Secondary Zn/Air battery
- ●Super-Capacitor
- ●Secondary M(H)/Ni battery
- ●Secondary Zn/Mn2O and Zn/Air button cells
- ●Li/Mn2O button and cylindrical cells
- Commercial Lamination PP/PE/PP
- Type.......Thickness.....Alkaline Absorption(%)
- SL-083(7)....70μm.................≥200
- PPAT-SL(2)...180μm..............≥400
- Membrane Applications
- aerospace,aviation,telecommunication,national defense,transportation,power station,equipment manufacturing and house-hold appliance.
- TECHNICAL SERVICES
- ●options of the product specifications,such as electrolytic resistance,electrolyte absorption rate,thickness and G.M.S,can be made by the customers according to their unique requirements of application.
- ●different laminating manners of different laminated materials are avaliable to optimize performance of the separators for customer applications.
- ●joint research efforts are encouraged to develop new separators with special distinctive specifications,the main types of membrane can be combined in different ways.
Main Products
Alkaline battery separator paper by radiation graft