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Understanding the dilation and dilation relaxation behavior of graphite-based lithium-ion cells

机译:了解石墨基锂离子电池的膨胀和膨胀弛豫行为

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The dilation of lithium-ion cells is sensitive towards swelling phenomena caused by both graphite staging processes and lithium plating on graphite anodes. In this work, the dilation behavior of graphite/NMC pouch cells is studied with a focus on relaxation phenomena occurring after current pulses. In order to prevent misleading interpretations due to thermal effects, thermal expansion is quantified and a method for the thermal compensation of dilation data is developed. Dilation data are recorded for quasi equilibrium cycling as well as for current pulses at high rates. In the quasi-equilibrium case, the staging behavior is characterized based on dilation and voltage data. By comparison with a graphite half-cell measurement, the major effects in full cell dilation are confirmed to be anode related. In the high rate case, the dilation responses to the actual pulse and the subsequent relaxation phases are recorded systematically. Positive and negative relaxation phenomena are observed depending on the SOC. They are ascribed to both graphite staging and lithium plating processes. A model is presented explaining the unexpected relaxation effects by a temporary coexistence of three or more staging compounds during high rate lithiation and delithiation. Our data thereby confirm the shrinking annuli model introduced by He beta and Novak. (C) 2016 Elsevier B.V. All rights reserved.
机译:锂离子电池的膨胀对由石墨分级过程和在石墨阳极上镀锂引起的膨胀现象敏感。在这项工作中,研究了石墨/ NMC袋状电池的膨胀行为,重点是电流脉冲后发生的弛豫现象。为了防止由于热效应引起的误导性解释,对热膨胀进行了量化,并开发了一种热补偿膨胀数据的方法。记录了用于准平衡循环以及高速率电流脉冲的膨胀数据。在准平衡情况下,基于膨胀和电压数据来表征分级行为。与石墨半电池测量结果相比,全电池膨胀的主要作用被证实与阳极有关。在高速率情况下,系统地记录了对实际脉冲的扩张响应和随后的弛豫阶段。取决于SOC,观察到正和负松弛现象。它们归因于石墨阶段化和锂电镀过程。提出了一个模型,该模型解释了在高速锂化和脱锂期间三种或多种过渡化合物的暂时共存所带来的意外松弛效应。因此,我们的数据证实了He beta和Novak引入的收缩环模型。 (C)2016 Elsevier B.V.保留所有权利。

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