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Data on the effect of particle size, porosity and discharging rate on the performance of lithium-ion battery with NMC 622 cathode through numerical analysis

机译:关于粒度,孔隙率和放电率对NMC 622阴极性能的粒度,孔隙率和放电率的影响,通过数值分析

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The data presented in this article are related to the computed results reported in the article entitled “A modeling approach to study the performance of Ni-rich layered oxide cathode for lithium-ion battery” . The lithium-ion battery (LIB) employed in the simulation is made up of a LiNi0.6Mn0.2Co0.2O2(NMC 622) cathode and lithium metal foil anode. The numerical simulations were carried out using COMSOL Multiphysics 5.4 software which is based on the finite element (FE) method. The data presented in this manuscript shows how varying particle size and porosity affect the performance of the battery as the discharging rate is varied. Four different particle sizes and six different porosities were varied for the purpose of understanding the above behavior. The data presented can be used to further the analysis reported in the accompanying manuscript and aid in design of other cathode materials for LIB and other battery systems. It can also be used to compare some measured results for validation purposes. A comprehensive analysis of the data is found in .
机译:本文中提出的数据与题为“研究锂离子电池的富含Ni的层状氧化物阴极的性能”的模拟方法的物品中报道的计算结果有关。在模拟中使用的锂离子电池(Lib)由LINI0.6MN0.2CO0.2O2(NMC 622)阴极和锂金属箔阳极组成。使用基于有限元(Fe)方法的COMSOL Multiphysics 5.4软件进行数值模拟。本文稿中所示的数据显示如何随着放电速率而影响电池的性能的粒度和孔隙度。为了理解上述行为,有四种不同的粒度和六种不同的孔隙率。所提出的数据可用于进一步在附带的稿件中报告的分析,并帮助设计LIB和其他电池系统的其他阴极材料。它也可用于比较一些测量结果以获得验证目的。发现了对数据的全面分析。

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