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Benefit of increasing the organic expander dosage on the high temperature performance of the negative electrode of lead-acid batteries

机译:增加有机膨胀剂用量对铅酸蓄电池负极高温性能的好处

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Organic expanders function in the negative electrode of lead-acid batteries to promote the development of fine crystal sponge lead upon formation and to preserve this high surface area structure by preventing coarsening of crystals upon cycling. Organic expanders also serve to protect the negative active material from passivation during discharge or on open circuit by preventing the formation of an impervious nonconducting film of lead sulfate. The deleterious effect of a high temperature service environment on the life of the lead-acid battery and the negative electrode is well known. In this paper, we investigate the effect of Vanisperse A organic expander content on the capacity and life of the negative electrode of flooded lead-acid SLI batteries designed to be negative electrode limiting. The low rate capacity and cold cranking performance of batteries designed to be negative electrode limiting remained essentially unchanged upon increasing the organic expander dosage from 0.25 to 0.50% on weight of lead oxide in a negative mixture. Battery life, however, when tested according to the SAE J240 protocol, increased 25% at 41 ℃, and 20% at 75 ℃. When tested according to the SAE J2185 protocol at 50 ℃, battery life increased 15%. No adverse effects were observed. This work shows that increasing the Vanisperse content has a beneficial effect on the high temperature service life of the negative electrode.
机译:有机膨胀剂在铅酸电池的负极中起作用,以促进细微海绵海绵在形成时的发展,并通过防止晶体在循环时变粗而保持这种高表面积结构。有机膨胀剂还通过防止形成硫酸铅的不可渗透的非导电膜来保护负极活性物质在放电期间或在开路时不被钝化。众所周知,高温使用环境对铅酸蓄电池和负极寿命的有害影响。在本文中,我们研究了Vanisperse A有机膨胀剂含量对铅酸SLI蓄电池设计成负极限制的负极容量和寿命的影响。当将有机膨胀剂的用量从负极混合物中的氧化铅重量的0.25%增加到0.250%时,被设计为负极限制的电池的低倍容量和冷启动性能基本上保持不变。但是,按照SAE J240协议进行测试时,电池寿命在41℃时增加了25%,在75℃时增加了20%。在50℃下根据SAE J2185协议进行测试时,电池寿命增加了15%。没有观察到不良反应。这项工作表明,提高Vanisperse含量对负极的高温使用寿命具有有益的影响。

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