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Influence of temperature on expander stability and on the cycle life of negative plates

机译:温度对膨胀机稳定性和负极板循环寿命的影响

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The influence of temperature and the type of expander on the cycle life of negative lead-acid battery plates set to cycling tests following the requirements of the ECE-15 test protocol has been investigated. The plates prepared with the currently used expanders Vanisperse (Vs) or Indulin (In) alone have a considerably shorter cycle life than negative plates produced with a blend of the two expanders. The new experimental products UP-393 and UP-414 of Borregaard LignoTech (Norway) ensure much better cycle life performance when used for EV battery applications. Investigations on the influence of temperature on battery cycle life have evidenced that with increase of temperature the cycle life of the battery features a maximum at 40 ℃ (UP-393, Indulin + Vanisperse). At 60 ℃ almost all expanders disintegrate and the cycle life of the batteries decreases, though the plates with UP-393 and UP-414 have better cycle life performance than those with other expanders. A gradual degradation of the NAM structure is observed with batteries set to EV cycling. The energetic structure of NAM, which is built up of small crystals with large surface area, is converted into skeleton structure at the end of battery life, which comprises large crystals with small surface area yielding low battery capacity. On cycling at temperature about 60 ℃, the NAM is converted into a well-developed network of thin lead branches with large pores in between. On discharge, some of these branches are oxidized more quickly, thus, excluding part of NAM from the current generation process, which consequently reduces the capacity of the negative plates.
机译:已经研究了温度和膨胀剂类型对按照ECE-15测试规程的要求进行循环测试的负极铅酸电池板的循环寿命的影响。单独使用当前使用的膨胀剂Vanisperse(Vs)或Indulin(In)制备的印版,其循环寿命比使用两种膨胀剂的掺合生产的负极板要短得多。 Borregaard LignoTech(挪威)的新实验产品UP-393和UP-414在用于EV电池应用时可确保更好的循环寿命性能。关于温度对电池循环寿命的影响的研究表明,随着温度的升高,电池的循环寿命在40℃时最大(UP-393,Indulin + Vanisperse)。在60℃时,几乎所有膨胀机都会分解,并且电池的循环寿命会缩短,尽管带有UP-393和UP-414的极板的循环寿命性能要优于其他膨胀机。设置为EV循环的电池会观察到NAM结构的逐渐退化。 NAM的高能结构由表面积较大的小晶体构成,在电池寿命结束时会转变为骨架结构,其中包括表面积较小的大晶体,导致电池容量低。在约60℃的温度下循环时,NAM会转化为发达的细铅枝网络,其间有大孔。在放电时,这些支链中的一些支链被更快地氧化,因此,从电流产生过程中排除了一部分NAM,因此降低了负极板的容量。

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