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Evaluation of High C Rate Cycle Induced Aging on Low Impedance Lithium-Ion Batteries using In-Situ Electrochemical Impedance Spectroscopy (EIS) Analysis

机译:使用原位电化学阻抗光谱(EIS)分析评价低阻抗锂离子电池老化的高C速率循环诱导

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The University of Texas at Arlington (UTA) has performed experiments in which high power 3Ah LiNi_xCo_yAl_(1-x-y)O_2 batteries have been studied at high C rates. The first of three identical cells has been discharged using a 10 kHz (50% duty cycle), high C rate (100C/300 A) pulsed discharge procedure and a 1C constant current (CC) - constant voltage (CV) recharge procedure. The second cell has been discharged using a 1C CC procedure and recharged using a 111 mHz (33% duty cycle), high C rate (33C/100 A) pulsed recharge procedure. The third cell, the control cell, has been cycled using a 1C CC discharge procedure and 1C CC-CV recharge procedure. The results of these experiments enable the impact each respective high rate procedure has on cell aging to be better understood. The experimental procedures and methods will be discussed in detail and the results of the experiments will be presented.
机译:在阿灵顿(UTA)的德克萨斯大学进行了实验,其中高功率3ah Lini_xco_yal_(1-x-y)O_2电池已经在高C速率下进行。使用10kHz(50%占空比),高C速率(100℃/ 300A)脉冲放电过程和1C恒定电流(CC) - 恒压(CV)再充电过程已经排出了三种相同的细胞中的第一。第二个电池已经使用1C CC程序排出并使用111MHz(33%占空比),高C速率(33C / 100A)脉冲再充电程序进行再充电。使用1C CC放电过程和1C CC-CV补给程序,第三段的控制单元已经循环。这些实验的结果使得每个相应的高速率手术对细胞衰老的影响能够更好地理解。将详细讨论实验程序和方法,并提出实验结果。

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