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Amplification of electrolyte uptake in the absorptive glass mat (AGM) separator for valve regulated lead acid (VRLA) batteries

机译:阀控铅酸(VRLA)电池的吸收性玻璃毡(AGM)隔板中电解质吸收的放大

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Absorptive glass mat (AGM) separators are widely used for valve regulated lead acid (VRLA) batteries due to their remarkable fiber and structural characteristics. Discharge performance and recharge effectiveness of VRLA batteries essentially rely on the distribution and saturation levels of the electrolyte within the AGM separator. Herein, we report an analytical model for predicting the wicking characteristics of AGM battery separators under unconfined and confined states. The model of wicking behavior of AGM is based upon Fries and Dreyer's approach that included the effect of gravity component which was neglected in classic Lucas-Washburn's model. In addition, the predictive model of wicking accounted for realistic structural characteristics of AGM via orientation averaging approach. For wicking under confined state, the structural parameters have been updated under defined level of compressive stresses based upon the constitutive equation derived for a planar network of fibers in AGM under transverse loading conditions. A comparison has been made between the theoretical models and experimental results of wicking behavior under unconfined and confined states. Most importantly, the presented work has highlighted the questionable validity of classic Lucas -Washburn model for predicting the wicking characteristics of AGM separator over longer time duration. (C) 2016 Elsevier B.V. All rights reserved.
机译:吸收性玻璃毡(AGM)隔离膜由于其卓越的纤维和结构特性而广泛用于阀控铅酸(VRLA)电池。 VRLA电池的放电性能和充电效率主要取决于AGM隔板内电解质的分布和饱和度。在这里,我们报告一个分析模型,用于预测无限制和受限状态下的AGM电池隔膜的芯吸特性。 AGM的芯吸行为模型基于Fries和Dreyer的方法,其中包括了经典Lucas-Washburn模型中忽略的重力分量的影响。另外,芯吸的预测模型通过取向平均方法解释了AGM的实际结构特征。对于受限状态下的芯吸,基于在横向载荷条件下AGM中纤维平面网络导出的本构方程,在定义的压应力水平下更新了结构参数。在无约束和约束状态下,芯吸行为的理论模型和实验结果进行了比较。最重要的是,目前的工作突显了经典Lucas -Washburn模型在较长时间内预测AGM分离器芯吸特性的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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