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A new finite elements method for transient thermal analysis of thin layers

机译:薄层瞬态热分析的一种新的有限元方法

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摘要

This work introduces a new finite element method for the modeling of the transient thermal behavior of mediums containing thin layers such as adhesive joints without any required mesh refinement in their vicinity. The methodology is based on the recent MAX-FEM model introduced in a previous authors' work. This model consists in correcting the classical Finite Element Method (FEM) by correction matrices taking into account the presence of thin layers without any mesh refinement. The proposed correction is issued from an analytical approach based on Matching Asymptotic Expansions (MAE) and by pretending the principle of the numerical extended Finite Elements Method (X-FEM). To describe the thermal behavior of 1D-adhesively bonded structures, the developed hybrid model has been implemented under Matlab code to perform transient explicit analyses. The efficiency of the model is then systematically tested in terms of time computation. All the derived results are compared to FEM, and some proposed applications deal with harmful conditions, material properties or specific boundary layers such as coating systems.
机译:这项工作引入了一种新的有限元方法,该方法可以对包含薄层的介质(例如,胶粘接头)的瞬态热行为进行建模,而在附近无需进行任何网格优化。该方法基于先前作者的工作中引入的最新MAX-FEM模型。该模型包括通过考虑存在薄层而没有任何网格细化的校正矩阵来校正经典的有限元方法(FEM)。通过基于匹配渐近扩展(MAE)的分析方法并假装数值扩展有限元方法(X-FEM)的原理,提出了建议的校正方法。为了描述一维胶粘结构的热行为,已开发的混合模型已在Matlab代码下实现以执行瞬态显式分析。然后根据时间计算系统地测试模型的效率。将所有得出的结果与FEM进行比较,并且某些建议的应用程序处理有害条件,材料特性或特定边界层(例如涂层系统)。

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