Determination of Thermal Runaway in Sealed Nickel-Cadmium Batteries

N. Galushkin, N. Yazvinskaya, D. Galushkin
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Abstract

Thermal runaway occurs in batteries of almost all electrochemical systems. The system housing the battery will inevitably fail in the event of thermal runaway. The purpose of the paper is to establish a thermal runaway mechanism in sealed nickel-cadmium batteries. The paper analyzed a number of experimental facts that prove that the generally accepted point of view on thermal runaway in nickel-cadmium batteries is incorrect. The emergence of a significant exothermic reaction, namely recombination reactions of atomic hydrogen accumulating in the electrodes, is shown to be connected with thermal runaway. Thermal runaway is found to occur ten times less intensively in sealed nickel-cadmium batteries than in unpressurized batteries.
密封镍镉电池热失控的测定
热失控发生在几乎所有电化学系统的电池中。一旦发生热失控,装电池的系统将不可避免地失效。本文的目的是建立密封镍镉电池的热失控机制。本文分析了大量的实验事实,证明了普遍接受的镍镉电池热失控的观点是不正确的。一个显著的放热反应的出现,即原子氢在电极中聚集的复合反应,被证明与热失控有关。热失控在密封镍镉电池中发生的强度比在非加压电池中低十倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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