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Thermal runaway characteristics of a LiFePO_4-based lithium-ion secondary battery using the laser-irradiation method

机译:使用激光照射法的LiFepo_4基锂离子二次电池的热失控特性

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The establishment of a test method is a prerequisite to ensure the safety of lithium-ion secondary batteries. In context, laser irradiation is a heating technique that causes explosion of the batteries and is deemed as a safety test according to international standards. In this study, we elucidate the characteristics of laser irradiation heating by subjecting a 18650-type battery with LiFePO4 as the cathode material to laser irradiation to cause thermal runaway. Subsequently, we estimated the thermal runaway process and compared the heating method with those of an accelerating rate calorimeter furnace and a ceramic heater. The experimental results revealed that the thermal runaway was activated at the laser-irradiated small area by immediate heating. Initially, the separator shrink occurs, which was followed by an internal short circuit caused by the subsequent heating, and further heating resulted in thermal runaway. The findings of this study indicate that an extremely high power per unit area is generated by laser irradiation heating, and the battery heat generation rate during thermal runaway is equivalent to that obtained by a ceramic heater.
机译:测试方法的建立是确保锂离子二次电池的安全性的先决条件。在下文中,激光照射是一种加热技术,导致电池爆炸,并根据国际标准被视为安全测试。在这项研究中,我们通过用LiFePO4作为阴极材料来阐明激光照射加热的特性,以激光照射,导致热失控。随后,我们估计了热失控过程,并将加热方法与加速速率量热计炉和陶瓷加热器进行了比较。实验结果表明,通过立即加热在激光照射的小面积处激活热失控。最初,发生分离器收缩,然后是由随后的加热引起的内部短路,进一步加热导致热失控。该研究的发现表明,通过激光照射加热产生每单位面积极高的功率,并且热失控期间的电池发热速率相当于由陶瓷加热器获得的电池。

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