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Finite Element Modeling of Porous Material Structure Represented by a Uniform Cubic Mesh

机译:由均匀立方网格表示的多孔材料结构的有限元建模

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The work explores feasibility of 3D finite element modeling (FEM) to study the effective linear properties of porous brittle material microstructures represented by a uniform cubic mesh. Both artificial virtually generated and real 3D tomography specimens are considered in this work. A method for assessment of the critical value of tomography resolution is proposed. A method to build approximations of the linear effective structure properties of interest at virtually zero FE size is developed. The methods do not have to be associated with mechanical modeling only but can be applied in some other cases, e.g. effective thermal conductivity or effective permeability calculations.
机译:该工作探讨了3D有限元建模(FEM)的可行性,以研究均匀立方网格表示的多孔脆性材料微结构的有效线性特性。在这项工作中考虑了人造几乎生成和真实的3D层析成像标本。提出了一种评估断层扫描分辨率的临界值的方法。开发了一种在几乎零Fe大小处建立感兴趣的线性有效结构特性的近似的方法。这些方法不必仅与机械建模相关联,但可以在其他情况下应用,例如,有效的导热性或有效的渗透性计算。

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