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Analysis of the Separator Thickness and Porosity on the Performance of Lithium-Ion Batteries

机译:分离器厚度和孔隙率对锂离子电池性能的分析

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摘要

In this paper, investigation on the effect of separator thickness and porosity on the performance of Lithium Iron Phosphate batteries are analyzed. In recent years there have been intensive efforts to improve the performance of the lithium-ion batteries. Separators are important component of lithium-ion batteries since they isolate the electrodes and prevent electrical short-circuits. Separators are also used as an electrolyte reservoir which is used as a medium for ions transfer during charge and discharge. Electrochemical performance of the batteries is highly dependent on the material, structure, and separators used. This paper compares the effects of material properties and the porosity of the separator on the performance of lithium-ion batteries. Four different separators, polypropylene (PP) monolayer and polypropylene/polyethylene/polypropylene (PP/PE/PP) trilayer, with the thickness of 20 μm and 25 μm and porosities of 41%, 45%, 48%, and 50% were used for testing. It was found that PP separator with porosity of 41% and PP/PE/PP separator of 45% porosity perform better compared to other separators.
机译:本文分析了对分离器厚度和孔隙率对磷酸铁锂电池性能的影响的研究。近年来,有密切努力提高锂离子电池的性能。分离器是锂离子电池的重要组成部分,因为它们隔离电极并防止电动短路。分离器还用作电解质储存器,其用作离子在充电和放电期间转移的介质。电池的电化学性能高度依赖于所用的材料,结构和分离器。本文比较了材料特性和分离器孔隙率对锂离子电池性能的影响。使用四个不同的隔膜,聚丙烯(PP)单层和聚丙烯/聚丙烯/聚丙烯(PP / PE / PP)三层晶体,使用厚度为20μm和25μm,孔隙率为41%,45%,48%和50%用于检测。发现与其他分离器相比,具有41%的孔隙率为41%和PP / PE / PP分离器的PP分离器的孔隙率为45%的孔隙率。

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