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Dependency of effective modulus of polycrystalline aggregates on macro-geometric configuration

机译:多晶骨料有效模量对宏观几何构型的依赖性

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摘要

Polycrystalline aggregates are made in different macro-geometric configurations (line, thin film, bulk configurations etc.) for various engineering applications. Different mechanical behaviors and properties have been noticed among these configurations. In the present study, a finite element scheme with statistical consideration is employed to systematically investigate the effective modulus of polycrystalline copper in various geometric configurations. The numerical results show that the macro-scale geometric configuration is a key factor in determining the effective modulus of polycrystalline aggregates. The influence of microstructure on the effective modulus is examined by comparing the Voronoi model and uniform square grain model. The negligible discrepancy between the above two models indicates that the simple uniform model is feasible in simulating the real microstructure of polycrystalline aggregates with low and medium anisotropy.
机译:多晶骨料以不同的宏观几何构造(线,薄膜,块状构造等)制成,可用于各种工程应用。在这些配置中,已经注意到了不同的机械性能和特性。在本研究中,采用具有统计考虑的有限元方案来系统地研究各种几何结构中多晶铜的有效模量。数值结果表明,宏观几何构型是决定多晶骨料有效模量的关键因素。通过比较Voronoi模型和均匀方粒模型,研究了微观结构对有效模量的影响。上面两个模型之间的差异可以忽略不计,这表明简单的均匀模型对于模拟具有低和中等各向异性的多晶聚集体的真实微观结构是可行的。

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