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Thermal behaviors of Ni-MH batteries using a novel impedance spectroscopy

机译:新型阻抗谱法研究镍氢电池的热行为

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In this paper, a novel impedance spectroscopy was used to describe the thermal behaviors of Ni-MH batteries. The impedance functions were derived similarly to electric impedance functions. The square of current was treated as a current equivalent and heat-flow as a voltage equivalent. The impedance spectra of batteries during charge showed that the combination of hydrogen and oxygen increased rapidly when charge rate was higher than 0.5 C. Thermal runaway might happen when battery was charged at temperature above 348 K even at a low charge rate. The cycling test showed that the charge efficiency of battery was the highest after cycling at high-rate for 10-100 cycles and decreased after more cycles. Different batteries showed different thermal behaviors which may be caused by the different structures of batteries.
机译:在本文中,一种新型的阻抗谱被用来描述镍氢电池的热行为。阻抗函数的推导类似于电阻抗函数。电流的平方被视为电流当量,热流被视为电压当量。电池在充电过程中的阻抗谱显示,当充电速率高于0.5 C时,氢和氧的组合迅速增加。即使在低充电速率下以348 K以上的温度对电池充电,也可能发生热失控。循环测试表明,电池以高倍率循环10-100次后,其充电效率最高,而再循环一次则降低。不同的电池表现出不同的热行为,这可能是由不同的电池结构引起的。

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