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Modeling oxygen evolution and associated failure mechanisms in lead acid batteries

机译:模拟铅酸电池中的氧气逸出及相关的失效机理

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In this paper, the authors hypothesize that oxygen generated at the positive electrode causes the active material to soften and shed. They believe this mechanism is also responsible for conductivity changes in the positive active material. They suggest that the conductivity changes occur inside the positive plate at those locations where the potentials are highest. They base our analysis on the agglomerate of spheres (AOS) model which, in a previous paper, was used to quantitatively explain the large increase in battery life resulting from a small amount of mechanical pressure applied to the positive electrode. This previous investigation is what made them suspect that the high potentials associated with the neck regions of the spheres causes oxygen to evolve and the necks to deteriorate.
机译:在本文中,作者假设在正电极处产生的氧气使活性材料软化和脱落。他们认为这种机制也负责阳性活性材料的电导率变化。他们表明,在电位最高的那些位置的正板内发生电导率变化。它们基于对球体(AOS)模型的聚集的分析,其在先前的纸张中用于定量解释由施加到正电极的少量机械压力产生的电池寿命的大幅增加。此前的调查是使他们怀疑与球体的颈部区域相关的高电位导致氧气进化和颈部以恶化。

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