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Finite element simulations of the deformation of fused-cast refractories based on X-ray computed tomography

机译:基于X射线计算机断层扫描的熔铸耐火材料变形的有限元模拟

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This work consists in building a 3D numerical model of the microstructure of a fused-cast refractory (two-phase material). Creep tests at temperatures as high as 1400 degrees C reveal a major influence of the morphology of the phases on the material behavior. A possible 3D connectivity of the zirconia grains, related to the fabrication process, may explain the observed high creep resistance. In order to have a realistic representation of the microstructure, 3D pictures have been obtained using X-ray microtomography at the European Synchrotron Radiation Facility in Grenoble (ESRF). Volumetric tetrahedral grids are generated from the exploitation of these pictures using available meshing techniques. Finite elements calculations are performed to study the influence of the glassy phase content on the stiffness of the material. Simulations are compared with experiments. In particular the notions of geometrical and mechanical percolation are investigated numerically. High elastic stiffness is predicted, even for large amorphous phase contents. A percolation threshold is observed for the geometry of the hard phase (zirconia phase) but not for the Young's modulus. (c) 2006 Elsevier B.V. All rights reserved.
机译:这项工作包括建立熔铸耐火材料(两相材料)的微观结构的3D数值模型。在高达1400摄氏度的温度下进行的蠕变测试表明,相的形态对材料性能产生了重大影响。与制造过程有关的氧化锆晶粒可能的3D连接性可以解释观察到的高抗蠕变性。为了真实反映微观结构,已在格勒诺布尔的欧洲同步加速器辐射设施(ESRF)使用X射线显微断层照相术获得了3D图片。使用可用的网格划分技术,通过利用这些图片生成体积四面体网格。进行有限元计算以研究玻璃相含量对材料刚度的影响。模拟与实验进行了比较。特别是对几何和机械渗流的概念进行了数值研究。即使对于较大的非晶相含量,也可以预测到较高的弹性刚度。对于硬相(氧化锆相)的几何形状观察到渗滤阈值,但对于杨氏模量则未观察到。 (c)2006 Elsevier B.V.保留所有权利。

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