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Performance degradation of thermal parameters during cycle ageing of high energy density Ni-Mn-Co based Lithium-Ion battery cells

机译:高能量密度Ni-Mn-Co基锂离子电池单元循环老化过程中热参数的性能下降

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The accelerated demand for electrifying the transportation sector, coupled with the continuous improvement of rechargeable batteries' characteristics, have made modern high-energy Lithium-ion (Li-ion) batteries the standard choice for hybrid and electric vehicles (EVs). Consequently, Li-ion batteries' electrochemical and thermal characteristics are very important topics, putting them at the forefront of the research. Along with the electrical performance of Li-ion battery cells, their thermal behavior needs to be accurately predicted during operation and over the lifespan of the application as well, since the thermal management of the battery is crucial for the safety of the EV driver. Moreover, the thermal management system can significantly lower the degradation rate of the battery pack and thus reduce costs. In this paper, the thermal characterization of a commercially available Nickel-Manganese-Cobalt (NMC) based Li-ion battery cell was performed under different operating conditions: state-of-charge (SOC) levels, charge/discharge current rates and operating temperatures. Moreover, by carrying out accelerated cycle ageing tests on a total of nine NMC-based Li-ion battery cells, the effect of ageing on the most important thermal parameters was investigated.
机译:对交通部门的电气化需求的不断增长,再加上可充电电池特性的不断提高,已使现代高能锂离子(Li-ion)电池成为混合动力和电动汽车(EV)的标准选择。因此,锂离子电池的电化学和热特性是非常重要的主题,使它们成为研究的前沿。除了锂离子电池的电性能外,还需要在运行期间以及应用的整个使用寿命内准确预测其热性能,因为电池的热管理对于EV驱动器的安全至关重要。此外,热管理系统可以显着降低电池组的退化率,从而降低成本。在本文中,在不同的工作条件下对市售的镍锰钴(NMC)基锂离子电池进行了热特性分析:充电状态(SOC)级别,充电/放电电流速率和工作温度。此外,通过对总共九个基于NMC的锂离子电池进行加速循环老化测试,研究了老化对最重要的热参数的影响。

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