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Modeling Anisotropic Multiphase Heterogeneous Materials via Directional Correlation Functions: Simulations and Experimental Verification

机译:通过方向相关函数建模各向异性多相非均质材料:仿真和实验验证

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摘要

The effective properties of heterogeneous materials critically depend on their complex microstructure. In this article, by successfully reconstructing the three-dimensional microstructure of a multiphase alloy with orientated anisotropic inclusions from two-dimensional slices, we show that such materials can be modeled by the two-point correlation functions of the inclusion phases along the three orthogonal characteristic directions of the inclusions. The reconstructions are compared to the actual microstructure obtained from high-resolution X-ray tomography experiments by quantifying certain directional cluster statistics associated with the microstructures.
机译:异质材料的有效性能关键取决于其复杂的微观结构。在本文中,通过成功地从二维切片中重建具有取向各向异性夹杂物的多相合金的三维显微组织,我们证明了可以通过沿着三个正交特征的夹杂物相的两点相关函数来建模此类材料夹杂物的方向。通过量化与微观结构相关的某些方向性簇统计,将重建物与从高分辨率X射线断层扫描实验获得的实际微观结构进行比较。

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