陶瓷电容器中电化学迁移的多物理场研究

Jaemi L. Herzberger, A. Dasgupta, Siddhartha Das
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引用次数: 0

摘要

当多层陶瓷电容器暴露在潮湿或冷凝的湿气中时,其介电裂纹表面的电化学迁移会导致树枝状细丝的生长,从而导致泄漏电流增加甚至短路故障。本研究利用实测的经验数据证明,随着时间的推移,枝晶的生长速度呈非线性加速,这是由于阳极与阴极枝晶尖端之间的距离不断减小,导致电场强度和离子通量增加,枝晶的生长速度随着时间的推移而增加。建立了一个简单的一维分析预测模型,该模型通过允许阳极和有效阴极之间的分离随时间变化而结合非线性生长动力学。利用实验数据对模型预测的失效时间进行了校正,发现枝晶生长动力学与实验结果在定性和定量上都有很好的吻合。并与文献中标定的固定分离线性TTF预测模型进行了比较,对比表明,本文建立的非线性模型产生的结果在物理上比线性模型更有意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiphysics study of electrochemical migration in ceramic capacitors
Electrochemical migration across the surface of dielectric cracks in multilayer ceramic capacitors when exposed to humidity or condensed moisture can result in the growth of dendritic filaments, thus causing increased leakage currents or even short circuit failure. This study uses measured empirical data to demonstrate that the growth rate of the dendrite accelerates nonlinearly with time, due to the increased electric field strength and ionic flux that results from the continuously decreasing distance between the anode and the tip of the cathodic dendrite, as the dendrite grows with time. A simple 1D analytic predictive model is developed that incorporates the nonlinear growth kinetics by allowing the separation between the anode and effective cathode to vary with time. The failure time predicted by this model is calibrated with the help of the experimental data, and the dendrite growth kinetics are found to have a close qualitative and quantitative match with the experiments. A comparison is also made to a calibrated fixed-separation linear TTF prediction model in the literature and the comparison shows that the nonlinear model developed in this study produces results that are physically more meaningful than the linear model.
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