不同循环条件下锂离子袋状电池的应力演化及厚度变化

IF 5.4 Q2 CHEMISTRY, PHYSICAL
Congrui Jin , Yanli Wang , Ali Soleimani Borujerdi , Jianlin Li
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引用次数: 4

摘要

了解单个袋状电池在充放电循环过程中的应力和尺寸波动规律,对于设计大尺寸锂离子电池模块用于电动汽车和电网级储能具有重要意义。在本研究中,分别测量了自制袋状电池在等厚条件下的应力演化和等应力条件下的厚度变化。应力测量结果表明,无论初始压应力的大小如何,随着充放电电流的增大,应力增加百分比普遍减小。在电流密度相同的情况下,随着上截止电压的增加,应力增加百分比普遍增大。在相同的电流密度和较高的截止电压下,随着初始压应力的增大,应力增加百分比减小。厚度测量结果表明,无论恒压应力值如何,随着电流密度的增加,体积膨胀率普遍增加。在相同的电流密度下,随着上截止电压的增大,体积膨胀率普遍增大。在相同的电流密度和较高的截止电压条件下,随着恒压应力的增大,材料的体积膨胀减小。这些结果为电池组的设计原则提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress evolution and thickness change of a lithium-ion pouch cell under various cycling conditions

To design large-sized lithium-ion battery modules for the application of electric vehicles and grid-level energy storage, it is of important significance to understand how stress and dimension of a single pouch cell fluctuate during charge/discharge cycles. In this study, stress evolution under the constant-thickness condition and thickness change under the constant-stress condition are measured for in-house fabricated pouch cells, respectively. The results of stress measurements show that the stress increase percentage generally decreases when the charge/discharge current increases, regardless of the value of the initial compressive stress. With the same current density, the stress increase percentage generally increases when the upper cutoff voltage increases. With the same current density and upper cutoff voltage, the stress increase percentage decreases when the initial compressive stress increases. The results of thickness measurements show that the volume expansion percentage generally increases when the current density increases, regardless of the value of the constant compressive stress. With the same current density, the volume expansion percentage generally increases when the upper cutoff voltage increases. With the same current density and upper cutoff voltage, the volume expansion decreases when the constant compressive stress increases. The results provide important insights into the design principles of battery packs.

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来源期刊
CiteScore
9.10
自引率
0.00%
发文量
18
审稿时长
64 days
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