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Grenoble INP
Annuaire SIMaP

MME Celine Pascal

photo CV 2011.JPG
Maître de Conférences-HDR section CNU 33 « Chimie des matériaux »

Coordonnées

Laboratoire de Science et Ingénierie des Matériaux et Procédés (SIMaP), PHELMA-Campus, 1130 Rue de la Piscine, B.P. 75 Domaine universitaire, 38402 SAINT-MARTIN-D'HERES, FRANCE

  • Tél. : +33 (0) 4 76 82 65 35
  • Fax : +33 (0) 4 76 82 67 44

Site internet : http://

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Informations complémentaires

Associate Professor, Université Grenoble Alpes (UGA)

1. Education and scientific position
  • 2001: Ph-D, in Materials Chemistry, University of Montpellier, “Using of high pressure self-propagating high temperature synthesis for the build-up and protective coating of turbine blades materials”
  • Since 2003: Associate Professor at the University Grenoble Alpes
  • 2016: Accreditation to supervise research (Habilitation à Diriger des Recherches, HDR) “Materials elaboration and durability: a thermodynamic approach”

2. Research activities -  Materials and Processes Science and Engineering Laboratory, SIMaP

2012-present: Surface, Interface and Reactivity group

  • High temperature oxidation of metallic materials
  • Thermodynamics, kinetics, microstructure

 2003-2012 :

  • Sintering of multimaterials
  • Sintering of materials for energy (Si, Si-Ge)

 3. Teaching activities - Univ Grenoble Alpes – University Institute of Technology (IUT 1) – Chemistry Department

  • Materials science (crystallography, binary phase diagrams, materials properties)
  • Thermochemistry
  • Thermodynamics of materials (phase diagrams, Ellingham diagrams, applications)

 4. Administrative activities

  • Since 2011: Member of the National Council of Universities “Materials chemistry” (CNU 33)
  • Since 2013: Admission coordinator, Chemistry Department (IUT 1)

 

Relevant publications

Relations between oxidation induced microstructure and mechanical durability of oxide scales, V. Parry, C. Pascal, M. Braccini, E. Fedorova, M. Mantel, Y. Wouters, D. Oquab, D. Monceau, R. Estevez, G. Parry, Oxid. Met., 2017 (10.1007/s11085-016-9673-5)

Oxidation of a Fe–18Cr–8Ni austenitic stainless steel at 850 °C in O2: microstructure evolution during breakaway oxidation, A. Col, V. Parry, C. Pascal, Corros. Sci., vol. 114, p. 17-27, 2017 (10.1016/j.corsci.2016.10.029)

Reduction of chromium volatilisation from stainless steel interconnector of solid oxide electrochemical devices by controlled peroxidation, W. Wongpromrat, G. Berthomé, V. Parry, S. Chandra-ambhorn, W. Chandra-ambhorn, C. Pascal, Y. Wouters, Corros. Sci., Vol. 106, p. 172-178, 2016 (10.1016/j.corsci.2016.02.002)

Comparison of damaging behavior of oxide scales grown on two austenitic stainless steels using tensile test and cyclic thermogravimetry, E. Fedorova,  M. Braccini, V. Parry, C. Pascal, M. Mantel, F. Roussel-Dherbey,  D. Oquab, Y. Wouters, D. Monceau, Corros. Sci., Vol. 103, p. 145-156, 2016 (10.1016/j.corsci.2015.11.012)

Breakaway oxidation of austenitic stainless steels induced by alloyed Sulphur, C. Pascal, V. Parry, E. Fedorova, M. Braccini, P.Chemelle, N. Meyer, D. Oquab, D. Monceau, Y. Wouters, M. Mantel, Corros. Sci., Vol. 93, p. 100-108, 2015 (10.1016/j.corsci.2015.01.007)

 

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Rédigé par Celine Pascal

mise à jour le 14 mars 2017

Communauté Université Grenoble Alpes
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