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Graphite and fiberglass additives for improving high-rate partial-state-of-charge cycle life of valve-regulated lead-acid batteries

机译:石墨和玻璃纤维添加剂,用于改善阀控铅酸电池的高倍率部分充电状态循环寿命

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摘要

In order to accommodate regenerative braking energy input in hybrid and mild hybrid vehicles while maintaining boosting power at high rates of discharge, valve-regulated lead-acid (VRLA) batteries must operate permanently at partial-state-of-charge (PSoC) conditions. As a consequence, new failure modes appear, e.g., irreversible sulfation in negative plates, that have to be overcome. In this way, work has been done to apply some solutions like improving charge, acceptance in this "sulfated medium". Several batches of 6 V 20 Ah AGM VRLA batteries with spiral cell design have been assembled and tested, each batch containing novel additives in the negative active material (NAM). It has been observed that the addition of a sufficient amount of expanded graphite significantly improves cycle life under PSoC conditions. Moreover, life duration is also extended, although to a lesser extent, by using a novel fiberglass which increases surface area of NAM.
机译:为了适应混合动力和轻度混合动力车辆中的再生制动能量输入,同时在高放电率下保持增压功率,阀控式铅酸(VRLA)电池必须在部分充电状态(PSoC)情况下永久运行。结果,出现了新的失效模式,例如必须克服的负极板中不可逆的硫酸盐化。通过这种方式,已经完成了一些应用方案的工作,例如提高电荷,在这种“硫酸盐介质”中的接受度。已组装并测试了几批具有螺旋电池设计的6 V 20 Ah AGM VRLA电池,每批在负极活性物质(NAM)中均包含新型添加剂。已经观察到,添加足够量的膨胀石墨可以显着提高PSoC条件下的循环寿命。而且,通过使用增加NAM表面积的新型玻璃纤维,虽然寿命较小,但寿命也得以延长。

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