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Evaluation of overcharge protection life in nickel cadmium cells with nonnylon separators

机译:用非尼龙隔板评估镍镉电池中的过充电保护寿命

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Hydrogen gassing and the potential for cell rupture in aerospace nickel cadmium cells is directly related to loss of overcharge protection built into the cell during manufacturing. It is well known that cells having nylon separators contribute to this loss via a hydrolysis reaction of the nylon in the potassium hydroxide electrolyte environment in the cell. The hydrolysis reaction produces lower chain organics which are oxidized by the positive electrode and oxygen. Oxidation of the organics diminishes the overcharge protection. With introduction of the Super NiCd/sup TM/ and the Magnum/sup TM/ nickel cadmium cells the nylon hydrolysis reaction is eliminated, but any reducing agent in the cell such as nickel or an organic additive can contribute to loss of overcharge protection. The present effort describes analyses made to evaluate the extent of overcharge protection loss in cells which do not have nylon hydrolysis and quantifies the diminished amount of overcharge protection loss as a result of eliminating nylon from aerospace cells.
机译:氢气和航空航天镍镉电池中电池破裂的可能性与制造过程中内置在电池中的过充电保护功能的丧失直接相关。众所周知,具有尼龙隔板的电池通过尼龙在电池中氢氧化钾电解质环境中的水解反应而导致这种损失。水解反应产生低级有机物,其被正极和氧气氧化。有机物的氧化减少了过充电保护。通过引入Super NiCd / sup TM /和Magnum / sup TM /镍镉电池,可以消除尼龙水解反应,但电池中的任何还原剂(如镍或有机添加剂)都会导致过充电保护的丧失。本发明描述了为评估没有尼龙水解的电池中的过充电保护损失的程度而进行的分析,并量化了由于从航空电池中去除尼龙而导致的过充电保护损失的减少量。

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