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Experimental study of the impedance behavior of 18650 lithium-ion battery cells under deforming mechanical abuse

机译:机械变形对18650锂离子电池阻抗特性的实验研究

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摘要

Due to rising safety requirements for lithium-ion batteries, the detection of mechanical failure of such batteries is becoming increasingly important. As publications investigating electrochemical impedance spectroscopy (EIS) of lithium-ion battery cells under deforming mechanical abuse as a potential damage detection method are sparse, this work presents tests with stepwise loading of 18,650 lithium-ion battery cells with various impactors (nails, cylindric, hemispheric) and simultaneous EIS measurements to search for indicators which could be used to anticipate hazardous events. The occurrence of different damage mechanisms of the jelly roll is evaluated via computed tomography (mu-CT) and correlated to the measured changes in EIS.For internal short circuits (ISCs) without instantaneous thermal runaway, the results show a decrease of ohmic resistance in the EIS for high measurement frequencies, which is possibly linked to temperature increase, while low frequencies indicate deviations from stationarity or linearity requirements. In the case of large area compression, the EIS measurements display an increase of ohmic resistance, which may be connected to various mechanisms, such as the decrease of porosity of the separator and the active materials or delamination.
机译:由于对锂离子电池的安全要求不断提高,检测此类电池的机械故障变得越来越重要。由于研究以变形机械滥用作为潜在损坏检测方法的锂离子电池芯的电化学阻抗谱(EIS)的稀疏性,这项工作提出了在18650个锂离子电池芯上逐步加载各种冲击器(钉子,圆柱,半球)和同时进行的EIS测量,以寻找可用于预测危险事件的指标。通过计算机断层扫描(mu-CT)评估果冻卷不同损伤机理的发生,并将其与EIS的测量变化相关联。对于没有瞬时热失控的内部短路(ISC),结果表明电阻降低了EIS用于高测量频率,这可能与温度升高有关,而低频则表示偏离平稳性或线性要求。在大面积压缩的情况下,EIS测量结果显示欧姆电阻增加,这可能与各种机制有关,例如隔板和活性材料孔隙率的降低或分层。

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