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首页> 外文期刊>Journal of Materials Processing Technology >Carbon to cast iron electrical contact resistance constitutive model for finite element analysis
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Carbon to cast iron electrical contact resistance constitutive model for finite element analysis

机译:碳铸铁电接触电阻本构模型的有限元分析

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摘要

The electrical contact resistance at the interface between two materials is often an unknown when modelling certain processes, such as the anodes and cathodes in Hail-Heroult cells or the spot welding of sheet metal. In this paper, a 2D axisymmetric weakly coupled thermo-electro-mechanical finite element methodology built in the commercial code ANSYS is presented. It allows the generation of Joule heat directly at the interface, the precise representation of the contact areas as well as the testing of different contact resistance models. Using existing experimental results of industrial carbon and steel cylinders in contact at different temperatures, a novel phenomenological constitutive law for electrical contact resistance was developed. This experiment was repeated at room temperature with Alcoa-Lauralco carbon and cast iron cylinders, and the 2D finite element model was used to validate and calibrate the constitutive law. An excellent agreement was found between the model predictions and the new experimental data.
机译:在对某些过程进行建模时,例如在冰雹-霍洛特电池中的阳极和阴极或钣金点焊时,两种材料之间的界面处的电接触电阻通常是未知的。本文提出了一种在商业代码ANSYS中构建的二维轴对称弱耦合热电机械有限元方法。它允许直接在界面处产生焦耳热,精确表示接触面积以及测试不同的接触电阻模型。利用现有的工业碳钢和钢瓶在不同温度下接触的现有实验结果,开发了一种新的接触电阻现象学本构律。在室温下使用Alcoa-Lauralco碳纤维和铸铁圆筒重复该实验,并使用2D有限元模型来验证和校准本构定律。在模型预测和新的实验数据之间发现了一个极好的协议。

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