Understanding and defeating the physical mechanisms limiting the capacity of lead-acid batteries
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/BF00136859.pdf
Reference21 articles.
1. Edwards, D.B. and Srikanth, V.: Evaluation of hollow, glass microspheres used as an additive in positive, lead-acid battery paste. Journal of Power Sources, 34:217?232, 1991.
2. Edwards, D.B., Appel, P.W., and Hammond, B.: Evaluation of hollow, glass microspheres used as an additive in negative, lead-acid battery paste. Journal of Power Sources, 38:287?294, 1992.
3. Edwards, D.B. and Appel, P.W.: Conductivity model for lead-acid battery electrodes discharged at low rates. Journal of Power Sources, 38:281?286, 1992.
4. Appel, P.W., Edwards, D.B., and Stalick, T.: Modeling the effects of electrolyte diffusion and paste conductivity on lead-acid battery performance. Journal of Power Sources, 46:49?60, 1993.
5. Edwards, D.B. and Appel, P.W.: Modeling lead/acid batteries that have positive electrodes containing hollow, glass microspheres. Journal of Power Sources, 46:39?48, 1993.
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