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Inherent Symmetry and Microstructure Ambiguity in Micromechanics

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arxiv 1301.3921 v1 pith:EPEOJJII submitted 2013-01-16 cond-mat.mtrl-sci

Inherent Symmetry and Microstructure Ambiguity in Micromechanics

classification cond-mat.mtrl-sci
keywords microstructurescellsmicromechanicssymmetricdiscoveredgeneralizedinherentmethod
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The computational cost of micromechanics for heterogeneous materials can be reduced in certain cases where symmetric boundary conditions are applicable. We derived an eighth symmetric formulation of the Generalized Method of Cells for triply periodic microstructures. During this endeavor, an inherent symmetry was discovered. This implied that all repeating unit cells may be quarter symmetric representations of other microstructures. Additionally, it was discovered that a repeating unit cell can have columns of subcells swapped with no changes to the local or global fields. We concluded that first-order micromechanics are not well suited for capturing detailed or complex microstructures; however, higher-order theories, such as High Fidelity Generalized Method of Cells, can adequately model these microstructures.

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