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Capacity fade characteristics of lithium iron phosphate cell during dynamic cycle

机译:动态循环期间锂铁磷酸铁锂电池的能力淡化特性

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摘要

As a key issue of electric vehicles, the capacity fade of lithium iron phosphate battery is closely related to solid electrolyte interphase growth and maximum temperature. In this study, a numerical method combining the electrochemical, capacity fading and heat transfer models is developed. The electrolyte interphase film growth, relative capacity and temperature change of lithium iron phosphate battery are obtained under various operating conditions during the charge-discharge cycles. The results show that the electrolyte interphase film thickness increases as the C rate rises and relative capacity decreases. The capacity loss is almost 19.7% when the C-rate rises from 0.5C to 2C after 2000 cycles. The thickness of electrolyte interphase film increases and relative capacity decreases when the ambient temperature goes up. A thicker negative electrode is adverse to the electrolyte interphase film growth, and leads to the increased relative capacity, while the influence of separator thickness can be negligible. The battery maximum temperature rises with increasing the C rate and initial temperature, which exceeds the safe upper limit when the ambient temperature increases to 318.15 K at 3C. By increasing the convective heat transfer coefficient, the maximum temperature can be reduced to the security value.
机译:作为电动车辆的关键问题,磷酸铁锂电池的容量淡化与固体电解质间差异和最高温度密切相关。在该研究中,开发了一种组合电化学,容量衰落和传热模型的数值方法。在充电 - 放电循环期间在各种操作条件下获得锂磷酸锂电池的电解质差异膜生长,相对容量和温度变化。结果表明,电解质相位膜厚度随着C速率的上升和相对容量降低而增加。当C速率从2000次循环后的C速率从0.5℃升至2℃时,容量损失差不多为19.7%。当环境温度上升时,电解质相位膜的厚度增加,相对容量降低。较厚的负电极与电解质间膜生长不良,并导致相对容量增加,而分离器厚度的影响可以忽略不计。电池最大温度随着C速率和初始温度的增加而增加,当环境温度在3C时增加到318.15 k时超过了安全上限。通过增加对流传热系数,可以将最大温度降低到安全值。

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  • 来源
    《Energy》 |2020年第1期|118155.1-118155.9|共9页
  • 作者单位

    Key laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

    Key laboratory of Power Station Energy Transfer Conversion and System of Ministry of Education School of Energy Power and Mechanical Engineering North China Electric Power University Beijing 102206 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium iron phosphate battery; Capacity fade; Heat transfer; Solid electrolyte interphase; Relative capacity; Maximum temperature;

    机译:锂铁磷酸盐电池;容量褪色;传播热量;固体电解质相互作用;相对容量;最高温度;

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