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Evaluation of Cellophane Separation in Model Rechargeable Alkaline Silver-Zinc Cells

机译:模型可充电碱性银锌电池中玻璃纸分离的评估

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This report presents the physical property and performance data, including silver migration rates, for a matrix of model cells built to evaluate commercially available cellulosicseparationsforthe alkaline silver-zinc rechargeable chemistry. Physical property data were initially used to screen the separations which would be used in model cell evaluations. Nine types of cellulosic materials were then built into sets of thirteen each nominal 28 Ah model cells which were identical except for the separation used. The number of layers of separation in each case was selected to give a constant internal stack pressure. Seven cells were placed on 100% depth-of-discharge (DOD) cycling, five were placed on thirty day wet stand at full charge with 100% DOD cycling, and one cell from each set was removed after initial formation for baseline destructive physical analysis (DPA). During cycling, cells were also removed at inten/als for DPA.The separations selected included six varieties of cellophane film and three of sausage casing. The intent of the program was to determine whether cell performance for a given cellulosic material could be tied to its physical properties, so that these properties could be used as a predictive basis for selection of separation to be used in future Fleet applications, particularly for batteries for undersea platforms.
机译:该报告提供了模型电池矩阵的物理性能和性能数据,包括银迁移速率,这些模型电池用于评估碱性银锌可充电化学物质的商业纤维素分离。最初将物理性质数据用于筛选分离,该分离将用于模型单元评估。然后将9种类型的纤维素材料装入13个每组标称的28 Ah模型单元格中,除了使用的分离方式相同之外,其余单元格均相同。选择每种情况下的分离层数以提供恒定的内部烟囱压力。将7个电池置于100%放电深度(DOD)循环中,将5个电池置于100%DOD循环充满电的30天湿润架子上,并在初始形成后从每组中取出一个电池进行基线破坏性物理分析(DPA)。在循环过程中,也以in / al的方式去除了DPA的细胞。 选择的分离物包括六种玻璃纸薄膜和三种香肠肠衣。该计划的目的是确定给定纤维素材料的电池性能是否可以与其物理特性联系起来,以便这些特性可以用作选择分离的预测基础,以用于将来的舰队应用,尤其是电池用于海底平台。

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