• DocumentCode
    3296887
  • Title

    Development of a long-life VRLA battery for communications

  • Author

    Sasabe, S. ; Sato, K. ; Matsuyama, Y.

  • Author_Institution
    Yuasa Corp., Osaka, Japan
  • fYear
    1997
  • fDate
    19-23 Oct 1997
  • Firstpage
    169
  • Lastpage
    175
  • Abstract
    About 10 years have passed since Yuasa began selling 30-3000 Ah VRLA storage batteries designed for a life of 10 years. Results of accelerated life tests and field tests on these storage batteries demonstrated that they would attain their designed life spans. They also ascertained that failure in these storage batteries is caused mainly by corrosion of positive plate grids. Recently there has been demand for smaller and lighter VRLA storage batteries with longer lives, to which the authors responded by mitigating failure causes to develop batteries with about 20% smaller specific volume and about 15% reduced mass over preexisting storage batteries, and a design life of 15 years. To extend life, they used a highly corrosion-resistant grid alloy in the positive plates, and used the expanded method to manufacture grids so that corrosion will occur evenly throughout instead of along grain boundaries. Use of the expanded method for making both positive and negative plates made it possible to reduce both the size and weight of batteries. These storage batteries also permit the use of manufacturing methods and battery structures that raise productivity. There are three storage battery capacities of 200, 300, and 500 Ah, and their configuration is such that capacities of over 500 Ah can be obtained by connecting these three types in parallel to the desired capacity. This paper discusses these newly developed storage batteries
  • Keywords
    electrochemical electrodes; electrochemistry; lead; secondary cells; telecommunication power supplies; Pb; Pb-acid storage batteries; accelerated life tests; battery structures; communication power supplies; corrosion-resistant grid alloy; field tests; grain boundaries; long-life VRLA battery; manufacturing methods; positive plate grids; Batteries; Corrosion; Grain boundaries; Impedance; Life estimation; Life testing; Manufacturing; Productivity; Temperature; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Telecommunications Energy Conference, 1997. INTELEC 97., 19th International
  • Conference_Location
    Melbourne, Vic.
  • Print_ISBN
    0-7803-3996-7
  • Type

    conf

  • DOI
    10.1109/INTLEC.1997.645883
  • Filename
    645883