阀门发电机用电感的温度系数

E. B. Moullin
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摘要

本文讨论了集肤效应对电感温度系数的相对重要性。它从电感的定义开始,电感明确地包括了线内磁场的影响,并将电感分析为内部和外部组件。它是具有温度系数的内部电感,可以使总系数大于线性膨胀系数。其影响总系数的能力明显取决于内感与总感的比值。对各种典型的圆形实心线圈进行了评估,发现该比率很少低于5%左右。对管状和平带导体也进行了评估。从一般意义上探讨了内感对频率的依赖关系,并提出高频电阻与内感的乘积对所有导体都趋于恒定。导出了典型线圈总温度系数与线膨胀总温度系数之比的表达式;结果表明,这一比率很可能是4或5,但如果选择合适的导线半径相对于频率,它就不会明显超过1。对于这种选择,给出了一些一般规则。最后比较了三种在陶瓷陀螺上构造线圈的方法与温度系数的关系。
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The Temperature Coefficient of Inductances for Use in a Valve Generator
This paper discusses the relative importance of skin effect on the temperature coefficient of inductance. It starts with a definition of inductance which includes explicitly the effect of magnetic field within the wire and analyzes inductance into an internal and external component. It is the internal inductance which has a temperature coefficient which can make the total coefficient greater than that of linear expansion. Its ability to affect the total coefficient obviously depends on the ratio of internal to total inductance. This ratio is assessed for various typical coils of round, solid wire, and found to be seldom less than about 5 per cent. It is also assessed for tubular and flat-strip conductors. The dependence of internal inductance on frequency is explored in general terms, and it is suggested that the product of high-frequency resistance and internal inductance tends to be constant for all conductors. An expression is derived for the ratio of the total temperature coefficient of a typical coil to that of linear expansion; it is shown that this ratio may well be four or five but that it need never exceed unity appreciably if the radius of the wire is chosen suitably with respect to the frequency. Some general rules are given for this choice. Finally three methods of constructing coils on a ceramic former are compared in relation to the temperature coefficient.
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