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Study on survivability of 18650 Lithium-ion cells at cryogenic temperatures

机译:18650锂离子电池在低温下的生存能力研究

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Passive survivability of Commercially-off-the-shelf 18650 lithium-ion cells is tested in a thermal scenario similar to lunar night. Survivability of cells in particular and battery pack in general is crucial for resumption of function of any lunar exploration rover after hibernation at every lunar night. The test is designed to include a batch of Commercial lithium-ion cells from different manufacturers, with different nameplate capacities and different States of Charge. The cell behaviour during the test is monitored in-situ using cell terminal voltage measurements. To comprehend the effect of exposure to extreme low temperatures some complementary tests like visual examination, dimensional measurements, Residual Gas Analysis to detect any leakage, electrical tests to appraise electrical performance and 3 dimensional x-ray computed tomography analysis to view cell internal features are carried out at ambient conditions on cells both prior-to and after soaking at low temperatures. Results indicate successful survivability of tested cells after extreme thermal soak without any significant physical or internal damage or electrical performance degradation. Variation in cell terminal voltage with temperature is a reversible change attributed to the reversible phenomenon of freezing of cell electrolyte which furthermore is confirmed through ex-situ measurement of freezing point of electrolyte extracted from tested cells.
机译:现成的18650锂离子电池的被动生存能力在类似于阴夜的热环境中进行了测试。对于每个月球夜晚休眠后的任何月球探测漫游车来说,电池和电池组的总体生存能力对于恢复其探测功能至关重要。该测试旨在包括一批来自不同制造商,具有不同铭牌容量和不同充电状态的商用锂离子电池。使用电池端子电压测量就地监控测试过程中的电池行为。为了理解暴露于极低温下的影响,进行了一些补充测试,例如目测,尺寸测量,残留气体分析以检测任何泄漏,进行电气测试以评估电气性能以及进行3维X射线计算机断层扫描分析以查看电池内部特征。在低温浸泡之前和之后的环境条件下,将细胞取出。结果表明,经过极端的热浸后,测试细胞具有成功的存活能力,而没有任何明显的物理或内部损伤或电气性能下降。电池端电压随温度的变化是可逆变化,归因于电池电解质的可逆现象,而且还通过异位测量从测试电池中提取的电解质的凝固点来证实。

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