Construction of three-dimensional thermal simulation model of lithium-ion secondary battery

T. Matsushita, K. Yabuta, T. Tsujikawa, T. Matsushima, M. Arakawa, K. Kurita
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引用次数: 12

Abstract

We are developing a large-capacity lithium-ion secondary battery as a backup power supply for next generation communications. The lithium-ion secondary battery has the advantage of very high energy density. However, the temperature of the battery rises when overcharge or internal short-circuit occurs. If the temperature of the battery exceeds a constant value, there is a danger that the positive electrodepsilas active material may decompose, oxygen may be discharged, the electrolysis liquid may burn, and rapid ignition (thermal runaway) may occur. In general, lithium-ion secondary batteries come in three shapes (cylinder, flat, and accumulating). A structural examination of the temperature increase is indispensable to develop a large-capacity lithium-ion secondary battery. We developed a highly accurate three-dimensional thermal simulation model using the finite-element method.
锂离子二次电池三维热仿真模型的建立
我们正在开发一种大容量锂离子二次电池,作为下一代通信的备用电源。锂离子二次电池具有能量密度非常高的优点。但是,当电池发生过充或内部短路时,电池温度会升高。如果电池温度超过定值,则存在正极电解活性物质分解、氧气排放、电解液燃烧、快速点火(热失控)等危险。一般来说,锂离子二次电池有三种形状(圆柱形、扁平和蓄积式)。为了研制大容量锂离子二次电池,对温度升高进行结构检测是必不可少的。利用有限元方法建立了高精度的三维热模拟模型。
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