首页> 外文会议>Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety >Development of advanced lithium-ion rechargeable cells with improved low temperature performance
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Development of advanced lithium-ion rechargeable cells with improved low temperature performance

机译:开发具有改善的低温性能的高级锂离子可充电电池

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Due to future plans to explore Mars and the outer planets, NASA has interest in developing lithium-ion rechargeable batteries that are capable of operating at low temperatures. To address these problems, we have initiated research focused upon the development of advanced electrolyte systems for lithium-ion cells with improved low temperature performance. Promising electrolyte solutions were selected based on conductivity and stability considerations and incorporated into C/LiCoO/sub 2/ cells for evaluation. The discharge capacity and rate capability as a function of temperature were evaluated in two types of lithium-ion cells, consisting of graphite-based systems with EC-based electrolytes and coke-based systems with PC-based electrolytes. Some of the experimental lithium-ion cells fabricated with these electrolytes were found to be capable of operating at temperatures as low as -30/spl deg/C (both charging and discharging at -30/spl deg/C) and provide more than 55% of the room temperature capacity. Cycle life testing of the these cells at -20/spl deg/C and at room temperature is in progress. Some of the cells have completed more than 500 cycles to date (100% DOD).
机译:由于未来探索火星和外行星的计划,NASA对开发能够在低温下运行的锂离子可充电电池感兴趣。为了解决这些问题,我们已经着手进行研究,重点是开发具有改善的低温性能的,用于锂离子电池的高级电解质系统。基于电导率和稳定性考虑选择有希望的电解质溶液,并将其合并到C / LiCoO / sub 2 /电池中进行评估。在两种类型的锂离子电池中评估了放电容量和倍率能力随温度的变化,这两种锂离子电池由具有EC基电解液的石墨基系统和具有PC基电解液的焦炭基系统组成。发现用这些电解质制造的一些实验性锂离子电池能够在低至-30 / spl deg / C的温度下工作(充电和放电均在-30 / spl deg / C的情况下),并提供超过55的温度室温容量的%。这些电池在-20 / spl deg / C和室温下的循环寿命测试正在进行中。迄今为止,有些电池已经完成了500多个周期(100%DOD)。

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