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延长铅酸电池寿命保护装置的设计 被引量:4

Design of protector for prolonging the life of lead acid battery
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摘要 介绍了一种铅酸电池保护装置的系统结构,设计了保护装置的控制电路,阐述了该装置的工作原理,并对装置的主要技术参数进行了计算说明。该装置利用电池自身能量形成电子脉冲振荡,使极板始终处于氧化/还原的动态准平衡状态,可大大减缓电池内硫酸铅结晶的进程,延长动力铅酸电池在停用状态下的维护充电间隔时间,延长使用寿命。 The system structure of a kind of life prolonging equipment for lead acid battery was introduced. The control circuit was designed and working principle was outlined, the main technique parameters were calculated. Pulse oscillating charge was produced by the self energy of the battery, and the oxydation-reduction balance state was kept all the time. Thus the process of the PbSO4 crystallizing on the electrode was reduced greatly, the average time used on charging for maintenance was delayed, and the battery might be kept in a new state for a long time.
出处 《电池》 CAS CSCD 北大核心 2007年第3期226-228,共3页 Battery Bimonthly
关键词 动力铅酸电池 硫酸盐化 保护装置 power lead acid battery sulfation protector
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参考文献4

  • 1包有富,尹鸽平,林道勇.VRLA电池正极失效机理研究[J].电池,2003,33(2):96-98. 被引量:10
  • 2ZHU Song-ran(朱松然).铅蓄电池技术[M].第2版,Beijing(北京):China Machine Industry Press(机械工业出版社),2002.211-213
  • 3Nelson R F,Sexton E D,Olson J B,et al.Search for an optimized cyelie charging algorithm for valve-regulated lead-acid batteties[J].J Power Sources,2000,88(1):44-52.
  • 4QIN Zeng-huang(秦曾煌).电工学(下册)[M].第5版,Beijing(北京):Higher Education Press(高等教育出版社),1999.300-309.

二级参考文献4

共引文献9

同被引文献29

  • 1谭新雨,黄文辉,袁镇.VRLA电池失效模式探讨[J].蓄电池,2005,42(2):54-59. 被引量:7
  • 2Ken S, Yuichi T, Masashi S, et al . Corrosion of Pb-Ca-Sn alloy during potential step cycles[J] .J Power Sources, 2008, 175 ( 1 ) : 604 - 612.
  • 3Shervedani R K, Isfahani A Z, Khodavisy R, et al, Electrochemical investigation of the anodic corrosion of Pb-Ca-Sn-Li grid alloy in H2SO4 solution[J]. J Power Sources, 2007,164(2) : 890 - 895.
  • 4Li D G, Zhou G S, Zhang J, et al. Investigation on characteristics of anodic film formed on PbCaSnCe alloy in sulfuric acid solution [J]. Electrochim Acta,2007,52(5) :2 146 - 2 152.
  • 5Sawai K, Tsuboi Y, Shiota M, et al. Corrosion of Pb-Ca-Sn alloy during potential step cycles[ J] .J Power Sources, 2008, 175( 1 ) : 604 - 612.
  • 6Tabaatabaai S M, Rahmanifar M S, Mousavi S A, et al. Lead-acid batteries with foam grids[J] .J Power Sources,2006,158(2) : 879 - 884.
  • 7Young-ll J, Nancy J D, Terry N T, et al. Evaluation of the electrochemical stability of graphite foams as current collectors for lead acid batteries[J] .J Power Sources,2006,161(2): 1 392- 1 399.
  • 8Hariprakash B, Gaffoor S A.Lead-acid cells with lightweight, corrosion-protected, flexible-graphite grids [ J] . J Power Sources, 2007,173 (1) : 565 - 569.
  • 9McAllister S D, Ponraj R, Cheng I F, et al. Increase of positive active material utilization in lead-acid batteries using diatomaceous earth additives[J] .J Power Sources,2007,173(2) :882 - 886.
  • 10Guo Y L, Liu H.Current and potential distributions on positive plates with conductive Pb304 and BaPbO3 in their formation and discharge[ J ]. J Power Sources, 2008,183 ( 1 ) : 381 - 387.

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