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Effect of Storage on Performance of Super Nickel-Cadmium Cells

机译:储存对超级镍镉电池性能的影响

摘要

A study was undertaken to examine the capacity maintenance features of SUPER nickel-cadmium cells when stored for extended periods to determine whether the features change when the same kinds of positive plates as that used in nickel-hydrogen cells are used, The cells maintained their capacity when stored at 0 C in the discharged state and at 0 C in the charged state by continuously trickle charging. There was a capacity loss when stored in the open-circuit condition at 28 C. A cycling test at 17% depth of discharge for 2400 cycles using cells stored at various conditions showed that cells maintained good end of discharge voltage regardless of their storage history. However, the EOD voltages of stored cells were lower by 10 mV compared to those of fresh cells. The capacity at the end of the cycling test decreased for the stored cells by 2-7 Ah. The storage related capacity loss is lower for SUPER Ni-Cd cells compared to that of Ni-H2 cells containing a hydrogen precharge. The results suggest the pivotal role of hydrogen pressure in the capacity loss phenomenon.
机译:进行了一项研究,以检查超级镍镉电池长期存放时的容量维持特性,以确定当使用与镍氢电池中使用的正极板相同类型的正极板时,该功能是否改变。当通过连续trick流充电在放电状态下以0℃存储在充电状态下并且在0℃下存储为充电状态时。当在28℃的开路条件下存储时,容量损失。使用在各种条件下存储的电池在17%放电深度下进行的循环测试2400个循环表明,不管电池的存储历史如何,电池均保持良好的放电终止电压。但是,与新鲜电池相比,所存储电池的EOD电压低10 mV。循环测试结束时,存储的电池容量降低了2-7 Ah。与含氢预充电的Ni-H2电池相比,SUPER Ni-Cd电池的存储相关容量损失要低。结果表明氢气压力在容量损失现象中的关键作用。

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