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某型军用锂离子电池低温环境适应性
引用本文:李继红,何建新,张先勇,刘静,李超.某型军用锂离子电池低温环境适应性[J].装备环境工程,2014,11(1):111-115.
作者姓名:李继红  何建新  张先勇  刘静  李超
作者单位:西南技术工程研究所,重庆400039;西南技术工程研究所,重庆400039;重庆市环境腐蚀与防护工程技术研究中心,重庆400039;西南技术工程研究所,重庆400039;重庆市环境腐蚀与防护工程技术研究中心,重庆400039;西南技术工程研究所,重庆400039;重庆市环境腐蚀与防护工程技术研究中心,重庆400039;西南技术工程研究所,重庆400039;重庆市环境腐蚀与防护工程技术研究中心,重庆400039
摘    要:目的研究低温环境条件下温度对某型军用方形锂离子电池放电性能的影响。方法参照标准GB/T 18287,在常温下将锂离子电池进行充电,再在高低温潮湿试验箱中按设定低温条件利用电池测试仪进行放电性能测试,并将不同温度测试结果利用加速模型结合Arrenhenius方程进行拟合。结果该型军用锂离子电池放电容量随温度下降而降低,在-30℃温度条件下电池的放电容量相当于室温放电容量的20.9%,并在低于-40℃温度条件、2.5 V截止电压下无法放电。结论通过低温条件放电性能测试,并对温度条件和放电容量进行建模,得出绝对温度倒数与电池容量保留率对数在25~-35℃温度区间内分两段成线性相关。

关 键 词:军用锂离子电池  低温环境  环境适应性
收稿时间:2013/8/21 0:00:00
修稿时间:2013/9/15 0:00:00

Environmental Worthiness Evaluation of a Certain Type of Military Lithium-ion Battery at Low Temperature
LI Ji-hong,HE Jian-xin,ZHANG Xian-yong,LIU Jing and LI Chao.Environmental Worthiness Evaluation of a Certain Type of Military Lithium-ion Battery at Low Temperature[J].Equipment Environmental Engineering,2014,11(1):111-115.
Authors:LI Ji-hong  HE Jian-xin  ZHANG Xian-yong  LIU Jing and LI Chao
Institution:LI Ji-hong, HE Jian-xin, ZHANG Xian-yong, LIU Jing, LI Chao
Abstract:Objective To study the discharge performance of a certain type of military square lithium-ion battery under low temperature conditions. Methods Lithium-ion battery was charged at room temperature referring to standard GB/T 18287,and the discharging performance was tested in the low-temperature test chamber at a set temperature and the results at different temperatures were fitted to the accelerated model combined with Arrenhenius equations. Results The discharge capacity of battery decreased with the decrease of temperature,and the discharge capacity of the battery at-30℃was equivalent to 20.9%of that at room temperature and could not be discharged below-40℃at 2.5 V cut-off voltage. Conclusion Through the discharge performance test under low temperature conditions,and modeling for the temperature and discharge capacity,the results showed two linear fashions between the reciprocal of absolute temperature and the logarithm of the capacity from 25℃to-35℃.
Keywords:military lithium-ion battery  low temperature environment  environmental worthiness
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