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- W2912574507 endingPage "485" @default.
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- W2912574507 abstract "This chapter focuses on computational polycrystalline homogenization for being the most suited option to be used in an Integrated Computational Materials Engineering (ICME) environment. The computational homogenization techniques aim to predict the macroscopic behavior solving a boundary value problem on a representative volume element (RVE) of the microstructure and integrating the microfields resulting of that problem. Several ingredients are fundamental in a computational polycrystalline homogenization framework: the phases' constitutive equations, the crystal plasticity model which is the common choice, the RVE, and the solving method. A major difference between an academic and an industrial approach lies in the way how micromechanical material models are parameterized. Homogenization can be summarized as the art to cleverly combine the performances of multiple phases to describe the end performance of a composite material, whereas the description of each of those phases is based on continuum mechanical models." @default.
- W2912574507 created "2019-02-21" @default.
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- W2912574507 date "2016-09-23" @default.
- W2912574507 modified "2023-10-01" @default.
- W2912574507 title "Effective Properties" @default.
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