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Physical and Chemical Analysis of a Ni/H2 CellA cycled aerospace nickel hydrogen (Ni/H2) cell was subjected to destructive physical analysis to determine the reason for a capacity loss after 5,967 cycles at 60 percent depth of discharge. The positive plates in the cell were analyzed in terms of chemical composition, active material utilization, charge efficiency, and thickness increase. The microstructure of a cross section of the positive plate was determined by backscattered electron image analysis. The results suggest that the capacity loss in the cell is caused by low charge acceptance and low active material utilization at the positive plate. The oxidized nickel species content of the positive plate increased due to corrosion of the nickel sintered skeleton. This appears to circumvent the orderly reaction of the active material. Microstructural analysis has indicated that a new phase of active material is formed with cycling.
Document ID
19910023241
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
H Vaidyanathan
(Communications Satellite Corporation Washington D.C., District of Columbia, United States)
M W Earl
(Communications Satellite Corporation Washington D.C., District of Columbia, United States)
T D Kirkendall
(Communications Satellite Corporation Washington D.C., District of Columbia, United States)
Date Acquired
September 6, 2013
Publication Date
September 1, 1991
Publication Information
Publication: Proceedings of the Third Space Electrochemical Research and Technology Conference; Journal of Power Sources
Publisher: Elsevier
Volume: 36
Issue: 3
Issue Publication Date: December 1, 1991
ISSN: 0378-7753
e-ISSN: 1873-2755
Subject Category
Energy Production And Conversion
Meeting Information
Meeting: 3rd Space Electrochemical Research and Technology (SERT) Conference
Location: Cleveland, OH
Country: US
Start Date: April 9, 1991
End Date: April 10, 1991
Sponsors: Lewis Research Center
Accession Number
91N32555
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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