Advanced designs for individual pressure vessel nickel hydrogen cells were conceived which should improve the life cycle at deep depths of discharge and improve thermal management. Features of the designs which are new and not incorporated in either of the contemporary cells (Air Force/Hughes, Comsat) are: (1) the use of alternate methods of oxygen recombination, (2) use of serrated edge separators to facilitate movement of gas within the cell while still maintaining required physical contact with the wall wick, and (3) use of an expandable stack to accommodate some of the nickel electrode expansion. The designs also consider electrolyte volume requirements over the life of the cells, and are fully compatible with the Air Force/Hughes desig...
The nickel electrode has been identified as the life limiting component for individual pressure vess...
Compression tests were performed on representative Individual Pressure Vessel (IPV) Nickel/Hydrogen ...
An experimental method was developed for evaluating the effect of component compression on the charg...
Advanced designs for individual pressure vessel nickel-hydrogen cells have been conceived which shou...
Nickel hydrogen cells, and more recently, bipolar batteries have been built by a variety of organiza...
As part of an overall effort to advance the technology of nickel-hydrogen batteries for low Earth or...
Individual pressure vessel (IPV) nickel-hydrogen technology was advanced at NASA Lewis and under Lew...
Our present design for a common pressure vessel (CPV) battery, a nickel hydrogen battery system to c...
The potential of the H2-NiO battery for terrestrial applications was assessed. A multicell design ap...
Individual pressure vessel (IPV) nickel-hydrogen technology was advanced at NASA Lewis and under Lew...
The evolution of an advanced Ni-Cd space battery cell design continues to prove very promising. High...
Yardney Manufacturing Technology (MANTECH) 50 A-hr space weight individual pressure vessel nickel-hy...
An update of validation test results confirming the advanced design nickel-hydrogen cell is presente...
An update of validation test results confirming the advanced design nickel-hydrogen cell is presente...
Nickel-hydrogen cells are currently being manufactured on a semi-experimental basis. Rechargeable ni...
The nickel electrode has been identified as the life limiting component for individual pressure vess...
Compression tests were performed on representative Individual Pressure Vessel (IPV) Nickel/Hydrogen ...
An experimental method was developed for evaluating the effect of component compression on the charg...
Advanced designs for individual pressure vessel nickel-hydrogen cells have been conceived which shou...
Nickel hydrogen cells, and more recently, bipolar batteries have been built by a variety of organiza...
As part of an overall effort to advance the technology of nickel-hydrogen batteries for low Earth or...
Individual pressure vessel (IPV) nickel-hydrogen technology was advanced at NASA Lewis and under Lew...
Our present design for a common pressure vessel (CPV) battery, a nickel hydrogen battery system to c...
The potential of the H2-NiO battery for terrestrial applications was assessed. A multicell design ap...
Individual pressure vessel (IPV) nickel-hydrogen technology was advanced at NASA Lewis and under Lew...
The evolution of an advanced Ni-Cd space battery cell design continues to prove very promising. High...
Yardney Manufacturing Technology (MANTECH) 50 A-hr space weight individual pressure vessel nickel-hy...
An update of validation test results confirming the advanced design nickel-hydrogen cell is presente...
An update of validation test results confirming the advanced design nickel-hydrogen cell is presente...
Nickel-hydrogen cells are currently being manufactured on a semi-experimental basis. Rechargeable ni...
The nickel electrode has been identified as the life limiting component for individual pressure vess...
Compression tests were performed on representative Individual Pressure Vessel (IPV) Nickel/Hydrogen ...
An experimental method was developed for evaluating the effect of component compression on the charg...