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Rapid self-heating and internal temperature sensing of lithium-ion batteries at low temperatures

机译:低温下锂离子电池的快速自热和内部温度感应

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摘要

The recently discovered self-heating lithium-ion battery structure provided a practical solution to the poor performance at subzero temperatures that has hampered battery technology for decades. Here we report an improved self-heating lithium-ion battery (SHLB) that heats from -20 degrees C to 0 degrees C in 12.5 seconds, or 56% more rapidly, while consuming 24% less energy than that reported previously. We reveal that a nickel foil heating element embedded inside a SHLB cell plays a dominant role in self-heating and we experimentally demonstrate that a 2-sheet design can achieve dramatically accelerated self-heating due to more uniform internal temperature distribution. We also report, for the first time, that this embedded nickel foil can simultaneously perform as an internal temperature sensor (ITS) due to the perfectly linear relationship between the foil's electrical resistance and temperature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近发现的自热式锂离子电池结构为在低于零温度下的不良性能提供了实用的解决方案,该性能困扰了数十年的电池技术。在这里,我们报告了一种改进的自热式锂离子电池(SHLB),它在12.5秒内从-20摄氏度加热到0摄氏度,速度提高了56%,而能耗却比以前报道的少了24%。我们发现嵌入在SHLB电池内的镍箔加热元件在自热中起主要作用,并且我们实验证明,由于内部温度分布更加均匀,两片式设计可以实现急剧加速的自热。我们还首次报告,由于箔电阻和温度之间具有完美的线性关系,因此这种嵌入的镍箔可以同时用作内部温度传感器(ITS)。 (C)2016 Elsevier Ltd.保留所有权利。

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