首页> 外文期刊>Journal of power sources >Constant-rate heating-induced thermal runaway in 18650-type Li-ion cells charged/discharged at 1 °C: Effect of undischargeable Li at anode
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Constant-rate heating-induced thermal runaway in 18650-type Li-ion cells charged/discharged at 1 °C: Effect of undischargeable Li at anode

机译:恒定速率加热诱导的18650型锂离子细胞的热失控/在1°C时充电/放电:未焦平的Li在阳极的效果

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Charge/discharge cycling tests of lithium-ion batteries were carried out at 1 degrees C. During cycling, the delivered capacity decreased substantially, just 30% of the capacity at 25 degrees C is retained after 45 cycles. The exothermic behavior of fresh and aged cells is analyzed by an accelerated rate calorimeter (ARC) via two different heating protocols. In the heat-wait-search (HWS) experiments, aged cells show an unstable self-heating process from the start of the test, which is aggravated by the depth of discharge (DOD). This is not observed in fresh cells. In the constant-rate heating method, the aged cells show different thermal behavior at different cutoff temperatures, with a high risk of thermal runaway (TR) above 160 degrees C. Most importantly, in aged cells heated to 140 degrees C, TR could be averted by external cooling. Analyses of the differential capacity profiles reveal that thermal stability degradation of aged cells is closely related to the undischargeable Li accumulated in the graphite anode during cycling at 1 degrees C.
机译:锂离子电池的充电/放电循环试验在循环期间进行,在循环期间,在45次循环后,递增的容量显着降低,仅在25℃下保留30%的容量。通过两种不同的加热方案通过加速速率量热计(ARC)分析新鲜和老化细胞的放热行为。在热等待搜索(HWS)实验中,老年细胞从测试开始时显示出不稳定的自加热过程,这通过排出深度(DOD)加剧。在新鲜细胞中未观察到这一点。在恒定速率加热方法中,老化细胞在不同的截止温度下显示出不同的热行为,具有高于160摄氏度高于160℃的热失控风险通过外部冷却避免。差异容量曲线的分析表明,老年细胞的热稳定性降解与在1摄氏度的循环期间循环在石墨阳极中累积的未焦候锂密切相关。

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