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Finite elements analysis of an electrochemical coating process of an irregularly shaped cathode with COMSOL Multiphysics~?

机译:用COMSOL多发性的不规则形状阴极电化学涂布过程的有限元分析~~~~

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The overall goal of this work is the use of COMSOL Multiphysics~? in the modelling of the current density distributions for the electrodeposition of Aluminum coatings from Ionic Liquids baths. The local current distribution is strongly dependent on the conductivity, on the distribution of concentrations and on the geometry of the galvanic cell, and, therefore, such a calculation can only be performed by the numerical solution of the Partial Differential Equations (PDE) governing the system. This work approach is to exploit computational techniques based on the well-known Finite Elements Analysis (FEA) to obtain stationary and dynamical solutions of such a problem. The ability to predict the local current density on an electrode is crucial to eventually evidence portions where the deposition may be invalidated.
机译:这项工作的整体目标是使用COMSOL Multiphysics〜?在离子液体浴铝涂层电沉积电沉积的电流密度分布的建模中。局部电流分布强烈依赖于电导率,对浓度分布和电流电池的几何形状,因此,这种计算只能通过控制的部分微分方程(PDE)的数值解来执行系统。这种工作方法是基于众所周知的有限元分析(FEA)利用计算技术,以获得这种问题的静止和动态解。预测电极上的局部电流密度的能力对于最终的证据部分是至关重要的,其中沉积可以无效。

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