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Modeling and improving heat dissipation from large aluminum electrolytic capacitors. II

机译:大型铝电解电容器的建模和提高散热。 II

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Numerous thermal models for large can aluminum electrolytic capacitors have been proposed in order to improve the prediction accuracy for the ripple current heating of these products. This study attempts to extend the RADAX model to a further improved construction and to compare the model results for a number of internal construction types to illustrate the progress which has been made in dissipating ripple current heat. In a previous report, the construction effect of a press-fit construction was investigated and shown to substantially reduce the internal thermal resistance of the capacitor. On average, this lower thermal resistance permitted an increase in ripple current of 24%. This study extends the model to a further called "core-winding" which permits a further increase in ripple current of 14% overall by shortening the internal path for heat flow to the package.
机译:已经提出了许多用于大可以铝电解电容器的热模型,以提高这些产品的纹波电流加热的预测精度。该研究试图将RADAX模型扩展到进一步改进的结构,并比较了许多内部施工类型的模型结果,以说明在散发纹波电流中的进展。在先前的报告中,研究了压配结构的施工效果,并显示出基本上降低了电容器的内部热阻。平均而言,这种较低的热阻允许纹波电流的增加24%。该研究将模型扩展到进一步称为“核心绕组”,其允许通过缩短到包装的热流内部路径来进一步增加14%的纹波电流。

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