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Heat loss distribution: Impedance and thermal loss analyses in LiFePO4/graphite 18650 electrochemical cell

机译:热损失分布:LiFePO4 /石墨18650电化学电池中的阻抗和热损失分析

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We report here thermal behaviour and various components of heat loss of 18650-type LiFePO4/graphite cell at different testing conditions. In this regard, the total heat generated during charging and discharging processes at various current rates (C) has been quantified in an Accelerating Rate Calorimeter experiment. Irreversible heat generation, which depends on applied current and internal cell resistance, is measured under corresponding charge/discharge conditions using intermittent pulse techniques. On the other hand, reversible heat generation which depends on entropy changes of the electrode materials during the cell reaction is measured from the determination of entropic coefficient at various states of charge/discharge. The contributions of irreversible and reversible heat generation to the total heat generation at both high and low current rates are evaluated. At every state of charge/discharge, the nature of the cell reaction is found to be either exothermic or endothermic which is especially evident at low C rates. In addition, electrochemical impedance spectroscopy measurements are performed on above 18650 cells at various states of charge to determine the components of internal resistance. The findings from the impedance and thermal loss analysis are helpful for understanding the favourable states of charge/discharge for battery operation, and designing better thermal management systems. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们在这里报告18650型LiFePO4 /石墨电池在不同测试条件下的热行为和各种热损失成分。在这方面,已经在加速速率量热仪实验中量化了在各种电流速率(C)下在充电和放电过程中产生的总热量。使用间歇脉冲技术在相应的充电/放电条件下测量取决于施加电流和内部电池电阻的不可逆热量产生。另一方面,根据在各种充电/放电状态下的熵系数的确定来测量取决于电池材料在反应期间电极材料的熵变化的可逆热量的产生。评估了在高电流率和低电流率下不可逆和可逆热量产生对总热量的贡献。在每种充电/放电状态下,发现细胞反应的性质是放热的或吸热的,这在低C速率下尤其明显。另外,对以上18650个电池在各种电荷状态下进行电化学阻抗谱测量,以确定内部电阻的成分。阻抗和热损耗分析的结果有助于理解电池运行的良好充电/放电状态,并设计出更好的热管理系统。 (C)2016 Elsevier B.V.保留所有权利。

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