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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Measurement of 18650 format lithium ion battery vent mechanism flow parameters

机译:APS-APS流体动力学分部第70届年会-活动-18650格式锂离子电池排气机构流量参数的测量

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摘要

Under abuse conditions, decomposition reactions within a lithium-ion battery can lead to gas generation resulting in an internal pressure increase. To mitigate the risk of case rupture, commercially available lithium batteries generally contain a pressure relief vent. However, the process of cell venting still presents risks associated with the flow of flammable gases and liquid electrolyte. To better understand this flow, tests are performed on vent mechanisms from the commonly available 18650 format of lithium-ion battery. Experimentally determined flow parameters include opening pressure, effective area, and coefficient of discharge. The batteries tested have a vent mechanism located on the cell’s positive terminal which presents a unique geometry. A test fixture was designed and constructed to pressurize the vent mechanism from a disassembled battery to the point of opening, at which point the opening pressure is recorded. Measurements of stagnation pressure within an accumulator and static pressure in a known cross-sectional area are used to solve for the opening area of the vent with compressible-isentropic flow relationships. An additional measurement of stagnation temperature allows for calculation of mass flow rate out of the system and thus coefficient of discharge.
机译:在滥用条件下,锂离子电池内的分解反应会导致产生气体,从而导致内部压力升高。为了减轻外壳破裂的风险,可商购的锂电池通常包含泄压孔。但是,电池的排气过程仍然存在与易燃气体和液体电解质流动相关的风险。为了更好地理解这种流程,对通用的18650锂离子电池的排气机制进行了测试。实验确定的流量参数包括打开压力,有效面积和排放系数。经过测试的电池在电池的正极端子上具有排气机构,该排气机构具有独特的几何形状。设计并构造了测试夹具,以将排气机构从已拆卸的电池加压到打开点,在该点记录打开压力。蓄能器内的停滞压力和已知横截面中的静压力的测量结果用于解决具有可压缩等熵流关系的排气孔的开口面积。停滞温度的附加测量值可以计算出系统的质量流量,从而计算出排放系数。

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