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Extensive aging analysis of high-power lithium titanate oxide batteries: Impact of the passive electrode effect

机译:大功率钛酸锂电池的广泛老化分析:无源电极效应的影响

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摘要

Partial electrification of vehicle drive trains, for example by the usage of 48 V systems, require high-power batteries with extreme robustness to temperatures, current rates and energy throughputs. In this study, the application-relevant lifetime performance of 33 state-of-the-art high-power lithium titanate oxide nickel manganese cobalt oxide (LTO|NMC) cells is measured under cyclic, calendar, and drive cyclic aging regimes. Regular extended check-ups reveal the cell performance in terms of capacity loss and internal resistance increase, which allows for the identification of critical operating conditions. For the first time a passive electrode effect is identified in calendar aging tests of LTO cells in which the cathode is geometrically and capacitively oversized. Passive electrode areas lead to a change in cell balancing, which can be illustrated by the shift of the half-cell voltage curves. Generally, the investigated cells show an excellent cycle stability for shallow cycles, even at high ambient temperatures and high current rates. Only large cycle depths greater than 70% at elevated temperatures reduce the battery life significantly. Furthermore, the results show that cells cycled in areas of low state of charge age faster than in areas of high state of charge. The rise in internal resistance under calendar aging has the most detrimental influence on lifetime in a 48 V battery.
机译:车辆驱动列车的部分电气化,例如通过48 V系统的使用,需要高功率的电池,具有极端的鲁棒性与温度,电流速率和能量吞吐量。在该研究中,在循环,日历和驱动循环老化方案下测量33型最新的高功率钛酸镍锰钴氧化镍锰钴氧化镍锰钴(LTO)的寿命性能。定期扩展检查在容量损耗和内部电阻增加方面揭示了电池性能,这允许识别临界操作条件。首次在LTO细胞的日历老化试验中鉴定了无源电极效应,其中阴极在几何上和电容性超大。无源电极区域导致电池平衡的变化,这可以通过半电池电压曲线的偏移来说明。通常,所研究的细胞表明,即使在高环境温度和高电流速率下,也显示出浅循环的优异循环稳定性。在高温下只大于70%的大循环深度显着降低了电池寿命。此外,结果表明,在低充电状态下的区域循环的细胞比在高充电状态下的区域。日历老化下的内部阻力升高对48 V电池中的寿命具有最有害的影响。

著录项

  • 来源
    《Journal of power sources》 |2020年第15期|228566.1-228566.11|共11页
  • 作者单位

    BMW AG Petuelring 130 D-80788 Munich Germany|Rhein Westfal TH Aachen Inst Power Elect & Elect Drives ISEA Chair Electrochem Energy Conversat & Storage Syst Jaegerstr 17-19 D-52066 Aachen Germany;

    BMW AG Petuelring 130 D-80788 Munich Germany|Rhein Westfal TH Aachen Inst Power Elect & Elect Drives ISEA Chair Electrochem Energy Conversat & Storage Syst Jaegerstr 17-19 D-52066 Aachen Germany;

    BMW AG Petuelring 130 D-80788 Munich Germany;

    Rhein Westfal TH Aachen Inst Power Elect & Elect Drives ISEA Chair Electrochem Energy Conversat & Storage Syst Jaegerstr 17-19 D-52066 Aachen Germany|JARA Energy Juelich Aachen Res Alliance Templergraben 55 D-52056 Aachen Germany;

    Rhein Westfal TH Aachen Inst Power Elect & Elect Drives ISEA Chair Electrochem Energy Conversat & Storage Syst Jaegerstr 17-19 D-52066 Aachen Germany|Forschungszentrum Juelich IEK 12 Helmholtz Inst Muenster HI MS D-52425 Julich Germany|Rhein Westfal TH Aachen Inst Power Generat & Storage Syst PGS EON ERC Mathieustr 10 D-52074 Aachen Germany|JARA Energy Juelich Aachen Res Alliance Templergraben 55 D-52056 Aachen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium titanate oxide; Aging analysis; Passive electrode effect; 48 V system; High-power;

    机译:钛酸锂氧化物;老化分析;无源电极效果;48 V系统;大功率;

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