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Daniel Pino Munoz

Daniel Pino Munoz

Researcher Scientist

Center · CEMEF

Awards & distinctions

  • 2020 Rist SF2M Medal

Team

MSR - Métallurgie, Structure, Rhéologie

Biography

Daniel Pino Muñoz is a researcher specializing in materials mechanics and advanced manufacturing processes. His work focuses on studying the mechanisms of deformation and transformation in materials under stress, particularly through innovative approaches such as transformation-induced plasticity (a-TRIP) or microstructural analysis using 3D imaging and numerical simulations. His research covers a wide range of topics, from the modeling of brittle materials such as forsterite to the optimization of industrial processes such as the epitaxial growth of gallium nitride (GaN) for optoelectronic applications. He has also contributed to the development of numerical methods for predicting damage and fracture in metallic materials, integrating tools such as X-ray tomography, finite element analysis, and deep learning. His expertise extends to the analysis of complex microstructures, particularly in nickel-based superalloys, and to the simulation of forming processes such as rolling and electromagnetic forming.

Publication(s)

Projects

  • 2021- Continuum Lead Investigator Etude des évolutions microstructurales dans des alliages de Titane
  • 2026- MultiStep Lead Investigator Etude de l'impacte des contraintes résiduelles dans les transformations de phase
  • 2024- Recycal Scientific Director Modélisation à l'échelle mésoscopique des mécanismes d'endommagement et rupture dans des alliages d'aluminium recyclés
  • 2023 Centurion Participant Modélisation de l'usinage des pièces issues de la fabrication additive
  • 2026- DIDYP Participant Modélisation de l'impact de la déformation plastique dans les transformations de phase du titane
  • 2026 Conforming mesh generation Lead Investigator Génération des maillages conformes à partir d'images 3D voxelisées.

Teaching

Mechanics of Materials and Structures (PI MECAERO)

Lecturer

Project (PI MECAERO)

Lecturer

Plasticité des matériaux

Lecturer

PhD supervision

  • 2025 Multi-scale modeling in titanium alloys PEREZ HURTADO David
  • 2025 An experimental/numerical hybrid strategy for predicting pore healing during hot forming processes SZABO Ange
  • 2024 AI-driven generation of microstructures from limited data LABADY Sterley
  • 2024 Data-driven multiscale strategy for predicting porosity closure in material forming processes CHALHOUB Miled
  • 2024 3D multiscale modeling of damage mechanisms in recycled aluminum alloys MARTINEZ Rémy
  • 2024 Development of numerical methods for simulating the machining process of a part produced by additive manufacturing VIDANA GAMACHCHIGE Eroshan Sandeepa Gamage
  • 2023 The impact of circular rolling on the microstructure of next-generation turbine discs HUYGHE Théo
  • 2023 Crack propagation in 3D at a mesoscopic scale in a CMO/CMO interface. GADDACHA-GUIZANI Mekki
  • 2022 The evolution of microstructures in dual-phase titanium alloys after hot deformation BLOSSE Antoine
  • 2022 Analysis and modeling of residual strength and ductile fracture of naval structures under complex loadings DUVIVIER Valentin
  • 2022 Machine learning modeling of nucleation and damage, 4D experimental data, and micromechanical calculations RIJNDERS Berjo
  • 2021 The evolution of the microstructure of the nickel-based superalloy γ-γ′ René 65 during its forming process for turbine disk manufacturing ORLACCHIO Federico
  • 2021 Discovering the constitutive law of nonlinear viscoelastic material using physics-informed neural networks and experimental data PISTENON Nicolas
  • 2019 A 3D multi-physics computational model for sheet metal forming processes: application to deep drawing and electromagnetic forming KHAIRY ABBAS ZAKY MAHMOUD Mohamed
  • 2019 Multi-scale study of microstructural evolutions in hot-deformed two-phase titanium alloys BROZOVIC GARIGLIO Matheus
  • 2017 Full-field modeling of discontinuous dynamic recrystallization in a CPFEM context RUIZ SARRAZOLA David