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Electrochemical-Thermal Coupled Model of Lithium-Ion Batteries for Low Temperature Charging

机译:低温充电锂离子电池电化学热耦合模型

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To study the low temperature charging performance of lithium-ion batteries, the electrochemical-thermal coupled model is developed. Some key parameters in the model are measured, which includes the kinetic related parameters and the thermal properties. The model is validated with the charging curves at different temperatures with two thermal boundary conditions and several C-rates. Using this model, the voltage loss during low temperature charging is broken down to electrolyte voltage loss, electrode interfacial kinetic loss and solid particle concentration polarization loss. Results show that the negative electrode intercalation kinetic loss is the dominant during low temperature charging.
机译:为了研究锂离子电池的低温充电性能,开发了电化学热耦合模型。测量模型中的一些关键参数,其包括动力学相关参数和热性能。该模型用不同温度的充电曲线验证,具有两个热边界条件和几个C速率。使用该模型,低温充电期间的电压损失分为电解电压损失,电极界面动力学损失和固体颗粒浓度偏振损失。结果表明,负电极嵌入动力学损失是低温充电期间的主导。

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