Department of Mechanical and Aerospace Engineering, Case Western Reserve University.
Department of Mechanical and Aerospace Engineering, Case Western Reserve University;
J Vis Exp. 2023 Mar 31(193). doi: 10.3791/65051.
An experimental apparatus and a standard operating procedure (SOP) are developed to collect time-resolved data on the gas compositions and fire characteristics during and post-thermal runaway of lithium-ion battery (LIB) cells. A 18650 cylindrical cell is conditioned to a desired state-of-charge (SOC; 30%, 50%, 75%, and 100%) before each experiment. The conditioned cell is forced into a thermal runaway by an electrical heating tape at a constant heating rate (10 °C/min) in an environmental chamber (volume: ~600 L). The chamber is connected to a Fourier transform infrared (FTIR) gas analyzer for real-time concentration measurements. Two camcorders are used to record major events, such as cell venting, thermal runaway, and the subsequent burning process. The conditions of the cell, such as surface temperature, mass loss, and voltage, are also recorded. With the data obtained, cell pseudo-properties, venting gas compositions, and venting mass rate can be deduced as functions of cell temperature and cell SOC. While the test procedure is developed for a single cylindrical cell, it can be readily extended to test different cell formats and study fire propagation between multiple cells. The collected experimental data can also be used for the development of numerical models for LIB fires.
开发了一种实验装置和标准操作规程 (SOP),以收集锂离子电池 (LIB) 热失控期间和之后的气体成分和火灾特性的时间分辨数据。在每次实验之前,将 18650 圆柱形电池调节至所需的荷电状态 (SOC; 30%、50%、75%和 100%)。在环境室中以恒定加热速率 (10°C/min) 通过电热带将调节后的电池强制进入热失控状态(体积:~600 L)。腔室连接到傅里叶变换红外 (FTIR) 气体分析仪,用于实时浓度测量。使用两个摄像机记录重大事件,例如电池通风、热失控和随后的燃烧过程。还记录了电池的条件,例如表面温度、质量损失和电压。根据获得的数据,可以推断出电池伪特性、通风气体成分和通风质量速率作为电池温度和电池 SOC 的函数。虽然测试程序是为单个圆柱形电池开发的,但它可以很容易地扩展到测试不同的电池格式,并研究多个电池之间的火灾蔓延。收集的实验数据还可用于开发 LIB 火灾的数值模型。