1 |
Effect of polyols on the electrochemical behavior of gel valve-regulated lead-acid batteries Chen MQ, Guo WX, Zhang M, Cheng FL, Liu P, Cai ZQ, Zhang Y Electrochimica Acta, 164, 243, 2015 |
2 |
Influence of fumed silica and additives on the gel formation and performance of gel valve-regulated lead-acid batteries Tantichanakul T, Tantichanakul O, Tantavichet N Journal of Industrial and Engineering Chemistry, 19(6), 2085, 2013 |
3 |
Gelled electrolytes for use in absorptive glass mat valve-regulated lead-acid (AGM VRLA) batteries working under 100% depth of discharge conditions Tantichanakul T, Chailapakul O, Tantavichet N Journal of Power Sources, 196(20), 8764, 2011 |
4 |
The use of activated carbon and graphite for the development of lead-acid batteries for hybrid vehicle applications Fernandez M, Valenciano J, Trinidad F, Munoz N Journal of Power Sources, 195(14), 4458, 2010 |
5 |
Estimation of the lifetimes of valve-regulated lead-acid batteries Tsujikawa T, Matsushima T, Yabuta K, Matsushita T Journal of Power Sources, 187(2), 613, 2009 |
6 |
Lead-acid battery use in the development of renewable energy systems in China Chang Y, Mao XX, Zhao YF, Feng SL, Chen HY, Finlow D Journal of Power Sources, 191(1), 176, 2009 |
7 |
Effects of preparation condition and particle size distribution on fumed silica gel valve-regulated lead-acid batteries performance Chen MQ, Chen HY, Shu D, Li AJ, Finlow DE Journal of Power Sources, 181(1), 161, 2008 |
8 |
Application of a novel gelled-electrolyte in valve-regulated lead-acid batteries with tubular positive plates Tang Z, Wang JM, Mao XX, Chen QQ, Shen C, Zhang JQ Journal of Applied Electrochemistry, 37(10), 1163, 2007 |
9 |
VRLA batteries, advances and limitations Berndt D Journal of Power Sources, 154(2), 509, 2006 |
10 |
Positive grid corrosion elongation analysis using CAE with corrosion deformation transformed into thermal phenomenon Mukaitani I, Hayashi K, Shimoura I, Takemasa A, Takahashi I, Tsubakino H Journal of Power Sources, 144(2), 528, 2005 |