Dry Cell Dynamics: The Bobbin

J. J. Coleman
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引用次数: 42

Abstract

This paper is a study of the relation between ampere‐hour capacity and drain. To determine this relation, a simplified model of the bobbin is set up. Kirchhoff's law is applied to this model to determine how the current through the manganese particles is distributed. (Do the particles near the carbon, or near the edge of the core, or somewhere between, bear the heaviest load?) It is demonstrated that on light and moderate loads the current is distributed almost uniformly, i.e., each manganese particle suffers about the same "drain." Attention is then focused on the individual particle. Evidence is introduced which indicates that some diffusion process within the particle itself plays a dominant role in determining the behavior of a dry cell on moderate and light loads. Fick's law of diffusion is applied to this hypothetical process. Constant current tests are used to determine the parameters in the resulting equations and to determine their ability to describe the behavior of dry cells on these tests.
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干电池动力学:筒子
本文研究了安培小时容量与漏极的关系。为了确定这种关系,建立了一个简化的筒子模型。基尔霍夫定律应用于该模型,以确定通过锰颗粒的电流是如何分布的。(靠近碳的粒子,还是靠近核心边缘的粒子,还是介于两者之间的粒子,承受的载荷最大?)结果表明,在轻负荷和中等负荷下,电流分布几乎均匀,即每个锰颗粒遭受相同的“漏极”。然后注意力集中在单个粒子上。有证据表明,颗粒内部的某些扩散过程在决定干电池在中轻负荷下的性能中起主导作用。菲克扩散定律适用于这个假设过程。恒流试验用于确定结果方程中的参数,并确定它们在这些试验中描述干电池行为的能力。
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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