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Featured researches published by Daniel Pino Muñoz.


Journal of Materials Science | 2016

Improvement of 3D mean field models for capillarity-driven grain growth based on full field simulations

Ludovic Maire; Benjamin Scholtes; Charbel Moussa; Daniel Pino Muñoz; Marc Bernacki

In the present study, mean field models of grain growth (Hillert and Burke–Turnbull models) are compared with 3D full field simulations considering an isotropic grain boundary energy and mobility and under the absence of second-phase particles. The present 3D full field simulations are based on a level set description of the grain interfaces within a finite element framework. The digital initial microstructures are generated using a coupled “Voronoï–Laguerre/dense sphere packing” algorithm. Based on full field simulation results, new formulations of Burke–Turnbull and Hillert models are proposed. In contrast with classical formulations, the new ones account for the possible heterogeneity of the initial grain size distribution.


Computational Materials Science | 2016

3D level set modeling of static recrystallization considering stored energy fields

Benjamin Scholtes; Romain Boulais-Sinou; Amico Settefrati; Daniel Pino Muñoz; Isabelle Poitrault; Aurore Montouchet; Nathalie Bozzolo; Marc Bernacki


Materials & Design | 2017

Modeling of dynamic and post-dynamic recrystallization by coupling a full field approach to phenomenological laws

Ludovic Maire; Benjamin Scholtes; Charbel Moussa; Nathalie Bozzolo; Daniel Pino Muñoz; Amico Settefrati; Marc Bernacki


NUMIFORM 2016: The 12th International Conference on Numerical Methods in Industrial Forming Processes | 2016

Full field modeling of dynamic recrystallization in a global level set framework, application to 304L stainless steel

Romain Boulais-Sinou; Benjamin Scholtes; Daniel Pino Muñoz; Charbel Moussa; Isabelle Poitrault; Isabelle Bobin; Aurore Montouchet; Marc Bernacki


Materials & Design | 2018

A novel level-set finite element formulation for grain growth with heterogeneous grain boundary energies

Julien Fausty; Nathalie Bozzolo; Daniel Pino Muñoz; Marc Bernacki


ECCM - ECFD 2018 | 2018

A new level set finite element formulation for anisotropic grain growth

Julien Fausty; Marc Bernacki; Daniel Pino Muñoz; Nathalie Bozzolo


Colloque national MECAMAT 2018 : Matériaux Numériques | 2018

Simulation de la croissance de grains dans l’olivine par une approche champ complet de type level-set

Jean Furstoss; Marc Bernacki; Carole Petit; Daniel Pino Muñoz; Clément Ganino


Archives of Computational Methods in Engineering | 2018

Computational Methods for Ductile Fracture Modeling at the Microscale

Modesar Shakoor; Victor Manuel Trejo Navas; Daniel Pino Muñoz; Marc Bernacki; Pierre-Olivier Bouchard


International Journal of Material Forming | 2017

Introduction to the level-set full field modeling of laths spheroidization phenomenon in α/β titanium alloys

Danai Polychronopoulou; Nathalie Bozzolo; Daniel Pino Muñoz; Julien Bruchon; Modesar Shakoor; Yvon Millet; Christian Dumont; Immanuel Freiherr von Thungen; Rémy Besnard; Marc Bernacki


Centre de recherches de Constellium | 2017

Recent advances concerning the numerical modeling of metallic materials at the mesoscopic scale

Marc Bernacki; Daniel Pino Muñoz; Charbel Moussa; Nathalie Bozzolo

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Marc Bernacki

École Normale Supérieure

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