Improved grid materials for valve regulated lead acid batteries

R. Prengaman
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引用次数: 2

Abstract

During the last several years, research into lead alloys used as grid materials for valve-regulated lead-acid (VRLA) batteries has led to a much better understanding of the roles of chemical composition and mechanical properties on the performance of the battery. VRLA batteries have suffered from premature capacity loss. It was believed that the loss was due to the absence of antimony in the battery grids. Recent work has indicated the beneficial effects of high tin contents on enhancing the conductivity of the grid-active material interface, increasing the mechanical properties, and reducing the corrosion rates of Pb-Ca-Sn alloys used in VRLA batteries. Additions of silver and controlled deformation processes enhance resistance to growth at elevated operating temperatures. The paper discusses how modification of composition and processing parameters can produce more stable, corrosion resistant, grid materials for VRLA batteries.
改进阀控铅酸蓄电池栅极材料
在过去的几年里,对铅合金作为阀控铅酸(VRLA)电池栅格材料的研究,使人们更好地了解了化学成分和机械性能对电池性能的影响。VRLA蓄电池存在容量过早损失的问题。据信,损失是由于电池网格中缺乏锑。最近的研究表明,高锡含量对提高栅极活性材料界面的导电性、提高机械性能和降低铅钙锡合金在VRLA电池中的腐蚀速率有有益的影响。添加银和控制变形过程增强抗生长在较高的操作温度。本文讨论了如何通过改变成分和工艺参数来生产更稳定、耐腐蚀的VRLA电池栅格材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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