Bagshaw, “Lead Alloys: past, present, and future”. J. Power Sources, vol. 53, pp. 25-30, 1995.* |
Fouache et al., “Effect of calcium, tin and silver contents in . . . grid manufacture” J. Power Sources, vol. 78, pp. 12-22, 1999.* |
Bashtavelova et al., “The PbO2 agglomerate of spheres . . . ” J. Power Sources, vol. 67, pp. 93-103, 1997.* |
Albert et al., “Improved Lead Alloys for Lead/Acid Positive Grids in Electric-Vehicle Applications,” Journal of Power Sources, vol. 67, pp. 257-265 (Jul. 1997). |
Bagshaw, “Lead Alloys: Past, Present and Future,” Journal of Power Sources, vol. 53, pp. 25-30 (Feb. 1995). |
Bui et al., “The Tin Effect in Lead-Calcium Alloys”, Journal of Power Sources, vol. 67, pp. 61-67 (Jul. 1997). |
Bouirden et al., “Discontinuous and Continuous Hardening Processes in Calcium and Calcium-Tin Micro-Alloyed Lead: Influence of “Secondary-Lead” Impurities,” Journal of Power Sources, vol. 33(1-4), pp. 27-50 (Jan. 1991). (Abstract only). |
Chen et al., “Study of Kinetics of Oxygen Evolution on Lead Alloy Anodes”, Journal of Central South University of Technology, vol. 4(1), pp. 69-72 (1997). (Abstract only). |
Tang et al., “Microstructure and Properties of Continuously Cast, Lead-Alloy Strip for Lead/Acid Battery Grids,” Journal of Power Sources, vol. 59, pp. 63-69 (Mar. 1996). |
Zhong et al., “Evaluation of Lead-Calcium-Tin-Aluminum Grid Alloys for Valve-Regulated Lead/Acid Batteries,” Journal of Power Sources, vol. 59, pp. 123-129 (Mar. 1996). |