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March 28, 2017 (v1)Conference paperUploaded on: February 28, 2023
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May 20, 2018 (v1)Conference paper
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Uploaded on: December 4, 2022 -
February 2020 (v1)Journal article
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August 2012 (v1)Journal article
A precise procedure to generate complex 2D and 3D statistical virtual microstructures in a finite element (FE) context is described. This technique, based on Laguerre tessellations and advancing front method, level-set description of interfaces and anisotropic meshing adaptation, is detailed for equiaxial polycrystal and powder RVEs defined by...
Uploaded on: December 4, 2022 -
May 16, 2010 (v1)Conference paper
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April 8, 2018 (v1)Conference paper
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2018 (v1)Journal article
In this study, we investigate grain growth within pure olivine systems through numerical simulations. The level set (LS) approach within a finite element (FE) context enables modeling 3D microstructural evolutions such as grain growth. As this phenomenon is inherently a 3D mechanism, the comparison between 2D and 3D models shows differences...
Uploaded on: December 4, 2022 -
May 20, 2018 (v1)Conference paper
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2021 (v1)Journal article
Abstract. This paper presents a new mesoscopic full field approach for the modeling of microstructural evolutions and mechanical behavior of olivine aggregates. The mechanical framework is based on a reduced crystal plasticity (CP) formulation which is adapted to account for non-dislocation glide strain-accommodating mechanisms in olivine...
Uploaded on: December 3, 2022 -
March 2021 (v1)Journal article
In this work we present a simple and convenient method for handling tensors within computational mechanics frameworks based on the Kelvin decomposition. This methodology was set up within a crystal plasticity framework which permits, using the Kelvin base related to the crystal symmetries, to account for elastic anisotropy. The classical mixed...
Uploaded on: December 4, 2022 -
January 22, 2018 (v1)Conference paper
Le phénomène de croissance de grains peut être vu comme une migration des interfaces entre grains pilotée par la minimisation de l'énergie surfacique du réseau de joints de grains. Ces interfaces séparent deux domaines d'orientations cristallographiques différentes et possèdent une énergie par unité de surface dépendant du matériau considéré,...
Uploaded on: February 28, 2023 -
January 3, 2020 (v1)Journal article
We present a full field framework based on the level‐set (LS) approach, which enables to simulate grain growth in a multiphase material. Our formalism permits to take into account different types of second phases, which can be static or dynamic (i.e. evolving also by grain growth) and reproduce both transient (evolving relative grain sizes) and...
Uploaded on: December 4, 2022 -
2021 (v1)Journal article
SUMMARY We investigate the effect of solute drag on the grain growth (GG) kinetics in olivine-rich rocks through full field and mean field modelling. Considering a drag force exerted by impurities on grain boundary migration allows reconciling laboratory and natural constraints on olivine GG kinetics. Solute drag is implemented in a full field...
Uploaded on: December 4, 2022 -
December 9, 2019 (v1)Publication
Because olivine is the major constituent of upper mantle rocks, its mechanical properties and microstructural evolutions play an important role in the lithosphere rheology. In this study, we investigate the deformation of olivine polycrystals through a numerical framework coupling the crystal plasticity and the finite element method (CPFEM)....
Uploaded on: December 4, 2022 -
June 2022 (v1)Journal article
The thermal conductivity of granular planetary regolith is strongly dependent on the porosity, or packing density, of the regolith particles. However, existing models for regolith thermal conductivity predict different dependencies on porosity. Here, we use a full-field model of planetary regolith to study the relationship between regolith...
Uploaded on: February 22, 2023