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首页> 外文期刊>Journal of Applied Electrochemistry >In situ electrochemical scan to study the behavior of the asymmetric (single-side) pasted positive plate as used in automotive lead-acid batteries
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In situ electrochemical scan to study the behavior of the asymmetric (single-side) pasted positive plate as used in automotive lead-acid batteries

机译:原位电化学扫描以研究用于汽车铅酸电池的不对称(单面)粘贴正极板的性能

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摘要

The performance of a asymmetric (single-side) pasted positive plate was studied by measuring the current density and potential distributions on both sides of the plate. It was found that the current densities on both sides are almost the same during the early discharge at the 3 C discharge rate. As the discharge proceeds, the current decreases gradually on the non-pasted side and increases on the pasted side. Since more active mass exists on the pasted side, the matrix resistance is higher, causing the polarization to increase by 55-90 mV at the 3 C discharge rate. On the non-pasted side, the active mass undergoes a deeper depth of discharge (DOT)). This leads to the shedding of active mass, which shortens the battery life. Since the positive grid on the non-pasted side is exposed, its corrosion rate is faster.
机译:通过测量正极和负极两面的电流密度和电位分布,研究了不对称(单面)粘贴正极板的性能。发现在3C放电速率下的早期放电期间,两侧的电流密度几乎相同。随着放电的进行,电流在非粘贴侧逐渐减小,在粘贴侧增大。由于在粘贴侧存在更多的活性物质,因此基体电阻更高,导致在3 C放电速率下极化增加55-90 mV。在非粘贴侧,活性物质会经历更深的放电深度(DOT)。这导致活性物质的减少,从而缩短了电池寿命。由于未粘贴侧的正极网格已暴露,因此其腐蚀速度更快。

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