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Investigation of the response of NiMH cells to burp charging.

机译:NiMH细胞对打charging充电的反应研究。

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Performance cycling and calorimetric analysis of nickel metal hydride cells have revealed that reverse pulse (“burp”) charging improves performance over other charging techniques. Burp charging periodically applies a short-duration, high-rate discharge pulse followed by a short rest during an otherwise galvanostatic charge. Results show improved charge input and output, lower heat generation during charge, lower charge overvoltage, and no loss of cycle life. Several hypotheses for the responsible phenomena were examined. In-situ video-microscopic analysis of the cell and its nickel electrode during charge revealed the significance of the gas evolution reactions. In-situ gas generation rate measurements made manometrically during charge determined that the burp pulse sequence results in less gas generation than galvanostatic charging. Evidence is presented that the “burp” pulse sequence electrochemically consumes gas bubbles generated during charge at the positive and negative electrodes. Removing bubbles increases the effective electrode surface area, results in a lower charge overvoltage, and reduces cell pressure.
机译:镍氢电池的性能循环和量热分析显示,反向脉冲(“打p”)充电比其他充电技术可提高性能。打Bur充电会定期施加短时间的高速率放电脉冲,然后在原本为恒电流充电的过程中短暂休息。结果表明,充电输入和输出得到改善,充电过程中产生的热量减少,充电过电压降低,并且循环寿命没有损失。研究了负责任现象的几种假设。电池及其镍电极在充电过程中的原位视频显微镜分析揭示了气体逸出反应的重要性。在充电过程中以压力方式进行的原位气体产生速率测量结果表明,与恒电流充电相比,打p脉冲序列产生的气体更少。证据表明,“打bur”脉冲序列电化学消耗了正负电极充电过程中产生的气泡。去除气泡会增加电极的有效表面积,导致较低的电荷过电压并降低电池压力。

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