首页> 外文期刊>Journal of Energy Storage >Investigation of significant capacity recovery effects due to long rest periods during high current cyclic aging tests in automotive lithium ion cells and their influence on lifetime
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Investigation of significant capacity recovery effects due to long rest periods during high current cyclic aging tests in automotive lithium ion cells and their influence on lifetime

机译:在汽车锂离子电池的高电流循环老化测试中,由于长时间休息导致的显着容量恢复效果及其对寿命的影响的研究

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In this work for automotive lithium ion cells, the influence of prolonged rest periods of up to 5 days on the available capacity and the long term aging trend during cyclic aging tests is presented. Automotive prismatic cells with NMC/graphite chemistry and over 25 Ah capacity are investigated by means of various cycle tests. The test matrix includes a variation of possible influencing factors like current rates during cycling as well as temperature and state of charge during rest periods, rest period length and number of cycles between rest periods.A significant capacity recovery during rest periods is measured after cycling at moderate temperatures which has only been reported for low temperature lithium plating experiments before. Rest periods were conducted at 100% state of charge, thus the anode overhang effect can be excluded as the cause for the observed capacity increase. Voltage relaxation tests indicate that lithium plating occurs due to high current rates. Furthermore, a microscopic model is proposed to explain the long time constant of the limited exponential capacity increase during rest periods. Under these plating conditions a significant increase in cell cycle lifetime is observed if regular rest periods or standard characterizations are applied.
机译:在汽车锂离子电池的这项工作中,提出了长达5天的长时间休息时间对循环老化测试中的可用容量和长期老化趋势的影响。通过各种循环试验研究了具有NMC /石墨化学性质且容量超过25 Ah的汽车棱柱形电池。测试矩阵包括各种可能的影响因素的变化,例如循环期间的电流速率,休息期间的温度和充电状态,休息期间的长度以及休息期间之间的循环数。以前只有低温锂电镀实验才报道过的中等温度。休息时间是在100%充电状态下进行的,因此可以排除阳极悬垂效应,因为这是观察到的容量增加的原因。电压松弛测试表明,由于高电流速率而发生镀锂。此外,提出了微观模型来解释在休息期间有限的指数容量增加的长时间常数。在这些电镀条件下,如果采用常规的休息时间或标准特性,则可显着提高细胞周期寿命。

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