Situation professionnelle
Souhait professionnel
- Ingénieur de recherche et développement
- Ingénieur de recherche/laboratoire
- Recherche et développement
- Ingénierie, études techniques
Résumé
Mechanical engineer specialized in materials and technological innovations, doctor in electrical engineering. Focusing on optimization, process improvement, experimental/theoretical studies, and modelling of material complex behaviour. International experience in industry and academy. Multidisciplinary, with a high adaptation capacity and a strong motivation toward challenging environments and themes. Responsible, proactive, inventive and curious. Communication easiness, fluent in French, English, Spanish and Portuguese.
Expériences professionnelles
Ingénieur d'études r&d et innovation
TKM Technology Knowledge Metrix , Voiron - CDI
De Juin 2024 à Aujourd'hui
Réalisation d'états de l'art et de veilles (techniques et scientifiques) pour divers clients, privés ou publics.
Chercheur postdoctoral
UMR CNRS 5269, Grenoble INP – UGA – G2Elab / Altair Engineering France , Grenoble - CDD
De Octobre 2021 à Juin 2024
1ᵉʳ PostDoc (1 an) en partenariat avec Altair Engineering : Implémentation d’une loi d’hystérésis dynamique dans Altair Flux pour le calcul de pertes a posteriori
2ᵉ PostDoc (1 an et 9 mois) en partenariat avec Naval Group : Conception d’un banc d’essai pour la caractérisation magnéto-mécanique d’aciers structuraux en champ faible et sous fortes contraintes.
Occasional teacher - graduate level
Universidad Nacional de Colombia - Sede Bogotá
De Septembre 2020 à Juillet 2021
Teaching : Introduction to Computational Electromagnetics
Department of Electrical and Electronical Engineering
Researcher consultant
Ingeniería Creativa – ICREA
De Juillet 2019 à Juin 2021
Specialist in Finite Element Method (FEM). Specialist in electromagnetism, mechanics and materials.
Technical analyst in Asset Management (AM) for renewable energy projects and energy infrastructures.
Data analysis, environmental impact and State of Health (SoH) estimation, maintenance prevision, failure prediction.
Research engineer
EDF ENERGY R&D UK CENTRE , Manchester
De Novembre 2012 à Octobre 2013
Automatic modelling of brittle crack propagation in graphite bricks, with different quasi-static and dynamic numerical methods (X-FEM, damage modelling, CZM, energetic approaches). Understanding and implementation of a complex material law into the finite element code Code_Aster, to take into account the effects of irradiation, radiolytic oxidation and temperature cycling on the development of internal stresses in graphite bricks.
Internship - engineer
CIRIMAT , Toulouse
De Février 2011 à Juillet 2011
Partnership with Air Liquide.
Research on the metal dusting phenomenon taking place in gas production plants and on the ways to prevent this high- temperature complex-atmosphere corrosion/oxidation process.
Internship – auxiliary engineer
NTN-SNR Annecy , Annecy cedex
De Septembre 2010 à Février 2011
Research on the water adsorption mechanisms of thermoplastics and their influence on mechanical properties in composite materials. Development of a prediction tool to evaluate the adsorption rate of a given industrial part, under user-defined environment conditions.
Formation complémentaire
Docteur - Ingénierie Électrique
Universidade Federal de Santa Catarina - Matériaux; Electromagnetisme computationnel
2014 à 2018
Integrated in the GRUCAD/LAESP (Group of Design and Analysis of Electromagnetic Devices/Laboratory of Special Electric Drives).
Title: Characterization and Modelling of the Magnetic Behaviour of Electrical Steel Under Mechanical Stress
The aim of the project was to characterize and model the response of soft electromagnetic materials under mechanical loading below yield strength. The subject was thus divided in two main parts:
1/ Design and building of a standardized characterization device to measure the effects of applied unidirectional loads (tensile and compressive) on the electromagnetic response of electrical steel sheets when submitted to controlled collinear complex and/or arbitrary magnetic induction waveforms;
2/ Modelling of the observed phenomena with different approaches: simple numerical and analytical models for loss separation and raw experimental data analysis; macroscopic (phenomenological) and multi-scale coupled (an-)hysteretic models for Finite Element Method integration.
Parcours officiels
Langues
Allemand - Notions
Anglais - Courant
Espagnol - Courant
Italien - Notions
Japonais - Notions
Portugais - Courant
Français - Langue maternelle
Compétences
Centres d'intérêt
- Music (guitar
- bass
- piano
- percussion)
- Sports (climbing
- slackline
- bike
- mountaineering)
- Literature
- Cinema
- History
- Travelling & Cultural exchanges
- Geopolitics
- Social and environmental issues