单轴压缩下电荷状态对锂离子袋状电池力学行为的影响

IF 2.2 Q2 ENGINEERING, MULTIDISCIPLINARY
Daniele Cioni , Lucas Lapostolle , Miguel Costas , Steven Boles , David Morin
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引用次数: 0

摘要

随着锂电池在固定和移动应用中的广泛应用,集成工程师面临着设计和规划电池周围静态和动态外部环境的挑战。这些设计的关键是了解细胞对机械压缩的反应以及引发灾难性失效的阈值。本研究探讨了充电状态(SOC)如何影响锂离子袋状电池的压缩力学行为和内部短路(ISC)的发生。对NMC811锂离子袋状电池进行了深度放电、0%、50%和100%不同soc下的单轴压缩试验。结果表明,SOC对宏观压缩行为和ISC的发生影响较小。在较高的有机碳水平下,工程应力随有机碳含量呈线性增加,而工程应变保持不变。这些发现表明,深度放电电池可以用于更安全的机械测试,因为它们的机械响应实际上与充电电池相当,但安全风险较低。此外,本研究的结果与先前关于SOC对袋细胞机械反应的影响的研究一致。这种响应被认为是受压缩内应力的影响,而压缩内应力是由胶芯受约束的soc相关膨胀产生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the state-of-charge on the mechanical behaviour of lithium-ion pouch cells under uniaxial compression
With extensive recent deployment of lithium batteries in stationary and mobility applications, integration engineers face a challenging burden for design and planning the static and dynamic external environment surrounding cells. Essential to these designs are understanding how cells respond to mechanical compression and the thresholds for initiating catastrophic failure. This study investigates how the state of charge (SOC) affects the compressive mechanical behaviour and the occurrence of internal short circuits (ISC) in lithium-ion pouch cells. NMC811 lithium-ion pouch cells were subjected to uniaxial compression tests at different SOCs, namely deep discharge, 0 %, 50 %, and 100 %. The results showed that the SOC has a minor effect on macroscopic compression behaviour and the occurrence of ISC. Engineering stress at ISC increased linearly with the SOC due to slight stiffening at higher SOC levels, while engineering strain at ISC remained constant. These findings suggest that deep-discharged cells can be used for safer mechanical testing, as their mechanical response is effectively equivalent to that of charged cells, but poses a lower safety risk. Furthermore, the results of this study align with prior research regarding the influence of SOC on the mechanical response of pouch cells. Such response is deemed to be influenced by compressive internal stresses, generated by the constrained SOC-related swelling of the jellyroll.
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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
自引率
0.00%
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审稿时长
68 days
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