压缩对超细玻璃纤维隔膜的影响及取向对电池性能的影响

R. Biagetti, I.C. Baeringer, F. Chiacchio, A. Cannone, J. Kelley, J. B. Ockerman, A. Salkind
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引用次数: 7

摘要

随着重组阀控铅酸电池不断被人们所接受,作为浸水式铅酸电池的替代品,有必要了解在这些电池中用作分离器和酸储层的超细纤维玻璃垫的作用。吸湿实验具有指导意义,可作为有价值的分析工具。本文讨论了压缩率和厚度对排汗率的影响。测量了厚度和压缩对垫料吸酸率的影响,并给出了比重偏析的数据。循环和随后的各种充电对电池容量的影响也包括在内。经测试的吸水性玻璃垫分离器的主要特性提供了一系列曲线,表明随着压缩的增加,排汗速率减慢。循环容量数据作为电池方向的函数表明,大型动力电池可能受益于在水平位置(平行于地平线)构造板的电池。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of compression on microfiber glass separator and effect of orientation on battery performance
As recombinant valve-regulated Pb-acid batteries continue to find acceptance as a replacement for flooded Pb-acid batteries, there is a need to understand the role of the microfiber glass mat which is used as the separator and acid reservoir in these batteries. Wicking experiments are instructive and can serve as a valuable analysis tool. In this paper, the effects of compression and thickness on the wicking rates are addressed and presented. The effects of thickness and compression on the acid uptake of the mat material were measured and data on specific gravity segregation are presented. The effects on battery capacities of cycling and subsequent varied recharges are included. The major characteristics of the absorbent glass mat separators tested provided a family of curves which shows retardation of the wicking rates with increasing compression. The cyclic capacity data as a function of battery orientation indicate that large power batteries could possibly benefit from cells constructed with plates in a horizontal position (parallel to the horizon).<>
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