电解电容器的热导率、性能及测量研究

Zhigang Na
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引用次数: 3

摘要

电解电容器广泛应用于电路中,其耐用性对电气设备的整个使用寿命至关重要。为了设计适当的冷却解决方案以防止电解电容器过热甚至燃烧,热设计师需要完全了解电容器的热特性。本研究结合电解电容器的结构和材料,计算了电解电容器的电导率。然后,建立了电容器的换热模型,并确定了该模型的所有边界条件,通过逐一改变各个边界条件来研究电容器的热行为。此外,本研究还确定了电容温度测量的最佳点。研究结果对电容器热解决方案的设计和验证具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study of electrolytic capacitor's thermal conductivity, behavior and measurement
Electrolytic capacitors are widely used in electric circuits, and their durability is an important contributor for the entire lifespan of an electric device. In order to devise an adequate cooling solution to prevent the electrolytic capacitor from overheating or even burning, the thermal designer needs to completely understand the capacitor's thermal characteristics. In this study, the conductivity of electrolytic capacitor is calculated referring to capacitor's structure and material. Then, capacitor's heat exchange model is set up and all boundary conditions of this model are identified, capacitor's thermal behavior is studied by varying each boundary condition one by one. Furthermore, best point for capacitor temperature measurement is determined in this study. All outcomes of this study are helpful for capacitor's thermal solution design and verification.
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