Reluctance of Long Solenoids with Extended Core

A. Sherwali, W. Dunford
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Abstract

The system studied here uses an array of parallel-connected, voltage-driven coils distributed along the solenoid core to control the magnetic flux. The ends of the core are extended, and thus take the form of magnetic poles driving magnetic flux through the air return path. When these poles are spherical and infinitely permeable an analytical expression can be obtained for the effective end return reluctance. This paper considers a more practical example and shows the reluctance of cylindrical core ends with a known permeability, and validates the results through measurements. It goes further to show how the linear current density of each coil depends on the position of the coil on the core and the core material.
延长磁芯的长螺线管的磁阻
这里研究的系统使用沿螺线管核心分布的并联电压驱动线圈阵列来控制磁通量。磁芯的两端被延伸,从而采取磁极的形式驱动磁通量通过空气返回路径。当这些极点为球形且无限渗透时,可以得到有效端回磁阻的解析表达式。本文考虑了一个更实际的例子,给出了已知磁导率的圆柱形铁心端磁阻,并通过测量验证了结果。它进一步显示了每个线圈的线性电流密度如何取决于线圈在磁芯和磁芯材料上的位置。
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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