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Heat Loss Measurement of Lithium Titanate Oxide Batteries under Fast Charging Conditions by Employing Isothermal Calorimeter

机译:利用等温量热计在快速充电条件下测量钛酸锂氧化物电池的热损耗

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To understand better the thermal behaviour of lithium-ion batteries under different working conditions, various experiments were applied to a 13 Ah Altairnano lithium titanate oxide battery cell by means of isothermal battery calorimeter. Several parameters were measured such as the battery surface temperature, voltage, current, power, heat flux, maximum temperature and power area. In addition, the efficiency was calculated. Isothermal battery calorimeter was selected as the most appropriate method for heat loss measurements. Temperatures on the surface of the battery were measured by employing four contact thermocouples (type K). In order to determine the heat loss of the battery, constant current charge and discharge pulses at sixteen different C-rates were applied to the battery. It was seen that the charge and discharge C-rates has a considerable influence on the thermal behaviours of lithium-ion batteries. In this research paper, the C-rate was linked to the peak temperature, efficiency and heat loss and it was concluded that they are linear dependent on the C-rate. In addition, the outcomes of this investigation can be used for battery thermal modelling and design of thermal management systems.
机译:为了更好地了解锂离子电池在不同工作条件下的热行为,通过等温电池量热仪对13 Ah Altairnano钛酸锂氧化物电池进行了各种实验。测量了多个参数,例如电池表面温度,电压,电流,功率,热通量,最高温度和功率面积。另外,计算了效率。选择等温电池量热仪作为最合适的热损失测量方法。通过使用四个接触式热电偶(K型)测量电池表面的温度。为了确定电池的热损耗,将十六种不同C速率的恒定电流充电和放电脉冲施加到电池上。可以看出,充电和放电的C速率对锂离子电池的热行为具有相当大的影响。在本研究中,C速率与峰值温度,效率和热损失有关,并得出结论,它们与C速率呈线性关系。此外,这项研究的结果可用于电池热建模和热管理系统设计。

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