What role does the safety valve play in the safety of lithium-ion cells? Part II. Cells with various states of health and formats

IF 3 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Dongxu Ouyang, Yimei Pang, Jian Huang, Zhirong Wang
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Abstract

To demonstrate the role of safety valves in enhancing the safety characteristics of lithium-ion cells, this study conducts a set of abusive testing including accelerating rate calorimetry testing, overheating testing, and overcharge testing. Additionally, the influence of safety valves on cells with different states of health (100%, 90%, and 80% SOH) and formats (14,650, 18,650, and 22,650) is investigated. The results reveal that safety valves have a substantial influence on the thermal runaway behaviour of cells. They effectively mitigate the risks and hazards associated with thermal runaway during overheating and ARC conditions. Beyond that, the presence of a safety valve can prevent thermal runaway triggered by overcharge. It is observed that cells with lower SOH and/or smaller diameters are more prone to experiencing earlier thermal runaway. Furthermore, this research finds that the influence of safety valves is more pronounced in cells with less degradation and/or smaller formats.

Abstract Image

安全阀对锂离子电池的安全性有何作用?第二部分.各种健康状况和格式的电池
为了证明安全阀在提高锂离子电池安全特性方面的作用,本研究进行了一系列滥用测试,包括加速速率量热测试、过热测试和过充电测试。此外,还研究了安全阀对不同健康状态(100%、90% 和 80% SOH)和规格(14,650、18,650 和 22,650)电池的影响。结果表明,安全阀对电池的热失控行为有很大影响。在过热和 ARC 条件下,安全阀能有效降低与热失控相关的风险和危害。此外,安全阀的存在还能防止过充电引发的热失控。据观察,SOH 较低和/或直径较小的电池更容易提前出现热失控。此外,这项研究还发现,安全阀对降解程度较低和/或规格较小的电池的影响更为明显。
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来源期刊
CiteScore
8.50
自引率
9.10%
发文量
577
审稿时长
3.8 months
期刊介绍: Journal of Thermal Analysis and Calorimetry is a fully peer reviewed journal publishing high quality papers covering all aspects of thermal analysis, calorimetry, and experimental thermodynamics. The journal publishes regular and special issues in twelve issues every year. The following types of papers are published: Original Research Papers, Short Communications, Reviews, Modern Instruments, Events and Book reviews. The subjects covered are: thermogravimetry, derivative thermogravimetry, differential thermal analysis, thermodilatometry, differential scanning calorimetry of all types, non-scanning calorimetry of all types, thermometry, evolved gas analysis, thermomechanical analysis, emanation thermal analysis, thermal conductivity, multiple techniques, and miscellaneous thermal methods (including the combination of the thermal method with various instrumental techniques), theory and instrumentation for thermal analysis and calorimetry.
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