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A discussion about water loss, compression and the VRLA cell

机译:关于失水,压缩和VRLA细胞的讨论

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Various theories have been proposed to explain premature loss of electrical capacity experienced by some valve-regulated lead acid (VRLA) cells and batteries. Most recently, several of the theories have focused on cell dryout, loss of glass mat separator compression and negative plate charge imbalances resulting in undercharged cells. This paper presents a model for water loss using inputs derived from both laboratory and field data collected over the past 15 years. This model is applied to a typical Absolyte IIP cell to predict water loss over a 20 year period. The water-loss prediction is compared to both actual measured values on field-aged product and to a laboratory test that examined the effect of water loss on cell performance and impedance. An alternative failure mode, loss of separator compression, is also presented and discussed. To conclude, this paper proposes that the loss of separator compression, not water loss per se, is a primary contributing factor in premature capacity degradation of VRLA cells. The loss of compression relates to the materials used in, and the design of, the glass mat contained in the cells.
机译:已经提出了各种理论来解释一些阀控式铅酸(VRLA)电池和电池组所经历的过早容量损失。最近,一些理论集中于电池干燥,玻璃垫隔板压缩物的损失以及导致电池充电不足的负极板电荷失衡。本文使用过去15年收集的实验室和现场数据得出的输入数据,提出了一种水损失模型。该模型应用于典型的Absolyte IIP电池,以预测20年内的水分流失。将失水预测与现场使用过的产品上的实际测量值以及实验室检查进行了比较,该实验室检查了失水对电池性能和阻抗的影响。还介绍并讨论了一种替代的故障模式,即分离器压缩损失。总而言之,本文提出,分离器压缩的损失而不是水分本身的损失,是导致VRLA细胞过早降解的主要因素。压缩损失与电池中包含的玻璃垫所用的材料和设计有关。

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