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首页> 外文期刊>Journal of power sources >Modeling of separator failure in lithium-ion pouch cells under compression
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Modeling of separator failure in lithium-ion pouch cells under compression

机译:压缩状态下锂离子袋式电池隔板失效的建模

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The failure of the separator membrane by rupture or thermal runaway is the prime cause of concern for the lithium battery system. In this work, we model the mechanical behavior and ionic conductance of the separator membrane under compression and its influence on the lithium cell thermal performance. The separator membrane is modeled as an open-cell foam to correlate the mechanical deformation under compressive loads and ionic conductivity. Predicted correlation between mechanical deformation and ionic conductivity is compared with experimental reports of membrane performance. Next, the validated model is used to simulate the thermal performance of lithium-ion pouch cells. Thermal response is predicted for a number of different pouch cell configurations with graphite (C) as anode; cathode chosen from lithium manganese oxide (LMO), lithium cobalt oxide (LCO) or lithium ferrous phosphate (LFP); and separator membrane chosen from monolayer polypropylene (PP), monolayer polyethylene (PE), trilayer, non-woven or ceramic-coated. The thermal response is used to predict the average cell temperature under an applied compressive load. Design maps that plot the maximum cell temperature over a range of applied load for different rates of charging and cooling conditions are prepared and used to identify the design conditions leading to separator meltdown and thermal runaway.
机译:隔离膜由于破裂或热失控而失效是锂电池系统关注的主要原因。在这项工作中,我们模拟了隔膜在压缩状态下的机械行为和离子电导率及其对锂电池热性能的影响。隔离膜被建模为开孔泡沫,以关联压缩载荷和离子电导率下的机械变形。将机械变形和离子电导率之间的预测相关性与膜性能的实验报告进行了比较。接下来,使用经过验证的模型来模拟锂离子袋式电池的热性能。可以预测以石墨(C)为阳极的多种不同袋式电池配置的热响应;阴极选自锰酸锂(LMO),钴酸锂(LCO)或磷酸亚铁锂(LFP);隔离膜选自单层聚丙烯(PP),单层聚乙烯(PE),三层非织造或陶瓷涂层。热响应用于预测施加的压缩负载下的平均电池温度。绘制设计图,绘制出在不同负载和冷却条件下施加的负载范围内最高电池温度的图形,并用于识别导致隔板熔化和热失控的设计条件。

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