A. Geogyj, Comparing reactivation behavior of TIG and laser beam welded alloy 690, pp.427-432

A. Geogyj, Electrochemical characterization of oxide film formed at high temperature on alloy 690, pp.69-75, 2011.

N. Ahmed, The effects of microstructural features on the performance gap in corrosion resistance between bulk and HVOF sprayed Inconel 625, Surface and Coatings Technology, vol.204, issue.14, pp.2294-2301
DOI : 10.1016/j.surfcoat.2009.12.028

D. Alberts, Analytical performance of pulsed radiofrequency glow discharge optical emission spectrometry for bulk and in-depth profile analysis of conductors and insulators, Journal of Analytical Atomic Spectrometry. -2010. -26, pp.776-783
DOI : 10.1039/C0JA00094A

G. C. Allen, The oxidation of inconel-690 alloy at 600K in air, pp.220-238, 1988.

J. O. Andersson, Thermo-Calc & DICTRA, computational tools for materials science, Calphad, vol.26, issue.2, pp.273-312, 2002.
DOI : 10.1016/S0364-5916(02)00037-8

S. I. Anisimov and V. A. Et-khokhlov, Instabilities in laser-matter interaction [Ouvrage]. -[s.l, 1995.

A. Autorité-de-sûreté-nucléaire, http://www.asn.fr/var/asn/storage/images/media/images/generateurs-de-vapeur/schema- d-un-generateur-de-vapeur/394099-1-fre-FR

T. Baldridge, Laser cladding of Inconel 690 on Inconel 600 superalloy for corrosion protection in nuclear applications, Optics and Lasers in Engineering, vol.51, issue.2, pp.180-184, 2013.
DOI : 10.1016/j.optlaseng.2012.08.006

G. Bao, M. Yamamoto, and K. Et-shinozaki, Precipitation and Cr depletion profiles of inconel 182

G. Bao, Stress corrosion cracking sealing in overlaying of Inconel 182 by laser surface melting, Journal of materials Procesing Technology, pp.330-336, 2006.
DOI : 10.1016/j.jmatprotec.2005.11.037

B. Gang and [. , Modeling of precipitation and Cr depletion profiles of Inconel 600 during heat treatments and LSM procedure, 2006.

[. Bertelli-felipe, Laser remelting of Al???1.5wt%Fe alloy surfaces: Numerical and experimental analyses, Optics and Lasers in Engineering, vol.49, issue.4, pp.490-497, 2011.
DOI : 10.1016/j.optlaseng.2011.01.007

M. Bioulac, Replacement of alloy 600 by alloy 690 for steam generator tubes and closure heads in PWR, 2004.

C. Bonacina, Numerical solution of phase-change problems, International Journal of Heat and Mass Transfer, vol.16, issue.10, pp.1825-1832, 1973.
DOI : 10.1016/0017-9310(73)90202-0

A. S. Brandsen, Metal surface treatment and reduction in pitting corrosion of 304L stainless steel by excimer laser, pp.813-828, 1990.

F. Brisset, Microscopie électronique à balayage et Microanalyses [Ouvrage]. -[s.l, p.179, 2008.

V. Bulatov, A. Khalmanov, and I. Schechter, Study of morphology of a laser produced aerosols plume by cavity ringdown laser absorption spectroscopie, pp.1282-1286, 2003.

N. Cabrera and N. F. Et-mott, Theory of the oxidation of metals, Physics, vol.12, pp.163-184, 1949.

F. Carette, Relâchement des produits de corrosion des tubes en alliage 690 de générateurs de vapeur du circuit primaire des réacteurs à eau prssurisée, Thèse INP Toulouse, 2002.

C. Florence, G. Luc, R. Emmanuel, and P. , Bernard Corrosion et relâchement des produits de corrosion de l'alliage 690 en conditions représentatives des circuits primaires, pp.1-4

Y. Chen, Mapping and elemental fractionation of aerosols generated by laser-induced breakdown ablation, Analytical and Bioanalytical Chemistry, vol.17, issue.98, pp.1090-1097, 2005.
DOI : 10.1007/s00216-005-0126-2

M. J. Cieslak, A melting and solidification study of alloy 625, Metallurgical Transactions A, vol.221, issue.5, pp.2319-2331, 1988.
DOI : 10.1007/BF02645056

M. Clauzel, Correlation between Ni base alloy surface conditioning and cation release mitigation in primary coolant [Conférence]. -NPC Quebec City : [s, 2010.

P. Combrade, Oxidation of Ni base alloys in PWR water: oxide layers and associates damage to the base metal, Proceedings of the 12th International Conference on Environmental Degradation of Materials in Nuclear Power System ? Water Reactors. -2005, pp.883-890

M. E. Glicksman, Principles of Solidification -An Introduction to Modern Casting and Crystal Growth Concepts, 2011.

J. E. Greene, Development of preferred orientation in polycristalline TiN layers grown by ultrahigh vacuum reactive magnetron sputtering, pp.2928-2930, 1995.

C. Guéneau, Advanced Computational Tools to Perform Thermodynamic Calculations on Nuclear Fuel Materials, Proceedings ERMSAR. -Marseille : [s, pp.24-26, 2015.

L. Guinard, Effect of surface passivation of inconel 690 on oxidation in primay circuit conditions, 2000.

Y. Hemmi, Electrochemical Considerations Regarding General Corrosion of Materials in a BWR Primary Circuit, Journal of Nuclear Science and Technology, vol.21, issue.3, pp.37-41
DOI : 10.1063/1.555666

P. Herve, Mesure de l'émissivité thermique, 2005.

K. Hirano, R. Fabbro, and M. Muller, Experimental determination of temperature threshold for melt surface deformation during laser interaction on iron at atmospheric pressure, Journal of Physics D: Applied Physics, vol.44, issue.43, p.435402, 2011.
DOI : 10.1088/0022-3727/44/43/435402

URL : https://hal.archives-ouvertes.fr/hal-00915592

T. R. Jervis, D. J. Frydrych, and B. D. Et, Effect og excimer laser melting on the near surface chemistry and corrosion properties of AISI 304 stainless steel, pp.225-228, 1988.

J. Sedriks and A. , Corrosion of stainless steels [Ouvrage]. -[s.l, 1975.

J. M. Jouvard and A. Soveja, Lavisse Traitement de surface métallique induit par faisceau laser Nd:YAG Q-switch de marquage : modélisation d'un impact laser, 2007.

K. Mudali, U. Dayal, R. K. Et-goswami, and G. L. , Laser surface melting for improving intergranular corrosion resistance of cold worked and sensitised type 316 stainless steel, pp.181-188, 1998.

K. Miroslav and J. Bernard, Etude des métaux par microscpie électronique en transmission (MET) [Revue]. -Paris : Techniques de l'Ingénieur

S. Klien, T. F. Hanisch, and C. H. Et-surberg, Tribology of laser-smoothed non-metallic surfaces, 2009.

W. Kuang, The mechanism of oxide film formation on Alloy 690 in oxygenated high temperature water, Corrosion Science, vol.53, issue.11, pp.3853-3860, 2011.
DOI : 10.1016/j.corsci.2011.07.038

P. Laghoutaris, Corrosion sous contrainte de l'alliage 600 en milieu primaire des réacteurs à eau sous pression : apport à la compréhension des mécanismes, 2009.

P. Laurens and C. Dubouchet, et Kechemair D Application des lasers aux traitements de surface, 1643.

L. Lavisse, Oxidation of cp titanium assisted by an Nd:YAG pulsed laser: importance of the laser-power density on the rate of oxygen absorbed by the substrate, pp.127-141, 2003.

H. Lefaix-jeuland, Oxidation kinetics and mechanisms of Ni-base alloys in pressurised water reactor primary conditions: Influence of subsurface defects, Corrosion Science, vol.53, issue.12, pp.3914-3922, 2011.
DOI : 10.1016/j.corsci.2011.07.024

URL : https://hal.archives-ouvertes.fr/hal-00628750

K. H. Leitz, Metal Ablation with Short and Ultrashort Laser Pulses, Physics Procedia. -2011, pp.230-238
DOI : 10.1016/j.phpro.2011.03.128

E. W. Lemmon and R. T. Et-jacobsen, Viscosity and Thermal Conductivity Equations for Nitrogen, Oxygen, Argon, and Air, International Journal of Thermophysics, vol.25, issue.1, pp.21-69, 2004.
DOI : 10.1023/B:IJOT.0000022327.04529.f3

Y. S. Lim, J. S. Kim, and H. S. Et-kwon, Effects of sensitization treatment on the evolution of Cr carbides in rapidly solidified Ni-base Alloy 600 by a CO2 laser beam, Materials Science and Engineering: A, vol.279, issue.1-2, pp.192-200, 2000.
DOI : 10.1016/S0921-5093(99)00615-2

Y. S. Lim, J. S. Kim, and H. S. Et-kwon, Particle formation in the rapidly solidified zone of alloy 600

Y. S. Lim, J. S. Kim, and H. S. Et-kwon, Pitting corrosion of the laser surface melted Alloy 600, Journal of Nuclear Materials, vol.336, issue.1
DOI : 10.1016/j.jnucmat.2004.08.015

Z. Liu, Laser-induced microstructural modification for corrosion protection, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, vol.204, issue.5, pp.1073-1085
DOI : 10.1243/09544062JMES1858

H. F. Lopez and J. B. Et-ferguson, Crackig behavior in Inconel Alloy 690 : Role of the environment in high temperature H2-supersaturated steam, 2004.

H. Lukas, S. G. Fries, . Et-sundman, and . Thermodynamics, The Calphad Method [Ouvrage]. -[s.l.] : Cambridge, 2007.

A. Machet, Etude des premiers stades d'oxydation d'alliages inoxydables dans l'eau à haute température, Thèse UPMC, 2004.

L. Marchetti, XPS study of Ni-base alloys oxide films formed in primary conditions of pressurized water reactor Surface and Interface Analysis. -2015, pp.632-642

L. Marchetti, Corrosion généralisée des alliages à base nickel en milieu aqueux à haute température : apport à la compréhension des mécanismes, Thèse -Ecole des Mines, 2007.

L. Martinelli and F. Ballaud-célérier, Oxidation mechanism of a Fe?9Cr?1Mo steel by liquid Pb?Bi eutectic alloy Part I, Part II, Part III, pp.2523-2559, 2008.

M. J. Et-dietz and J. , Intéret et difficultés de la mise e oeuvre du traitement thermique des matériaux métalliques par lasers, pp.735-745, 1987.

M. Moëglen, Modification de la réactivité de surface d'un alliage base nickel afin de limiter le relâchement du nickel en milieu primaire des réacteurs à eau pressurisée

S. Morville, Modélisation multiphysique du procédé de fabrication directe par projection laser en vue d'améliorer l'état de surface final [Ouvrage]. -[s.l, 2013.

V. I. Motorin and S. L. Et-musher, Stability of liquefaction front in fast joule heating

N. F. Mott, The theory of the formation of protective oxide films on metals.?III [Revue] // Transactions of the Faraday Society. -1947, pp.429-434

G. Moulin and P. Et-marcus, Influence of laser melting treatment on surface composition of Fe- 17Cr-13Ni single crystal alloy-Part2 Surface segregation of nitrogen ans sulphur, pp.107-112, 1990.

G. Moulin, J. M. Siffre, and P. Marcus, Influence of laser melting treatment on surface composition of Fe-17Cr-13Ni single crystal alloy-Part1 Oxidation during laser treatment, pp.100-106, 1990.

M. Muller, Étude du processus d'initiation par laserde la combustion d'un alliage métallique sous atmosphère d'oxygène

W. Pacquentin, Renforcement de la résistanceà la corrosion localisée de l'acier inoxydable 304L grâce au traitement de surface par laser impulsionnel, pp.175-183, 2013.

W. Pacquentin, Contribution à l'étude des propriétés physico-chimiques des surfaces modifiées par traitement laser application à l'amélioration de la résistance à la corrosion localisée des aciers inoxydables, 2012.

W. Pacquentin, N. Caron, and . Oltra, Nanosecond laser surface modification of AISI 304L stainless steel: Influence the beam overlap on pitting corrosion resistance, Applied Surface Science. -2014. -288, pp.34-39
DOI : 10.1016/j.apsusc.2013.09.086

R. A. Page and A. Et-mcminn, Relative stress corrosion susceptibilities of alloys 690 and 600 in simulated boiling water reactor environments, Metallurgical Transactions A, vol.28, issue.2, pp.877-887, 1986.
DOI : 10.1007/BF02643864

J. Panter, Etude de la corrosion sous contrainte des alliages 600 et 690 en milieu primaire de réacteur à eau sous pression (REP) -Influence des procédés de fabrication des tubes de générateurs de vapeur sur la phase d'amorçage, Thèse -INP Toulouse, p.187, 2002.

P. Henri and R. Jacky, Microscopie électronique à balayage -Principe et équipement [Revue]. -Paris : Techniques de l'ingénieur, 2006.

A. J. Pedraza, Laser enhanced adhesion of copper films to sapphire substrates, Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, vol.6, issue.3, pp.1763-1767, 1988.
DOI : 10.1116/1.575289

P. Peyre and V. Vignal, Traitements de surface par laser et tenue à la corrosion aqueuse, pp.1-10

A. Proust, Determinaion of the kinetics of oxidation and cation release of Ni base alloys in PWR primary coolant [Rapport]. -France : [s.n, 2008.

P. B. Rebak and F. H. Et-hua, The role of hydrogen and creep in intergranular stress corrosion cracking of alloy 600 and alloy 690 in PWR primary water environments -a review, Second International Conference on Environment-Induced Cracking of Metals, pp.19-23

G. Reinhart, Dynamique de formation de la microstructure de solidification d'alliages métalliques : caractérisation par imagerie X synchrotron

C. Rives, surface passivation of inconel 690 using gas -phase and flowing post discharge oxidations, 8th International Conference on Nuclear Engineering. - Baltimore : ASMS, 2000.

V. V. Semak, Weld pool oscillations in laser spot welding, San Diego : Proceedings of ICALEO, 1995.

M. Sennour, A detailed TEM and SEM study of Ni-base alloys oxide scales formed in primary conditions of pressurized water reactor, Journal of Nuclear Materials. - 2010. -402, pp.147-156
DOI : 10.1016/j.jnucmat.2010.05.010

URL : https://hal.archives-ouvertes.fr/hal-00507516

C. Soustelle, M. Foucault, and P. Et-combrade, PWSCC of alloy 600 a parametric study of surface film effects Ninth international symposium on environmental degradation of materials in nuclear power systems -Water reactors, Minerals, metals and materials society, pp.105-113, 1999.

A. F. Soveja, Modélisation du processus de texturation par faisceau laser : approches expérimentale et numérique, 2007.

O. Vedat-akgün, M. Ürgen, and A. F. Et-cakir, The effect of heat treatment on corrosion behavior of laser surface melted 304L stainless steel, pp.324-331, 1995.

K. T. Voisey, Z. Liu, and F. H. Et-stott, Inhibition of metal dusting of Alloy 800H by laser surface melting, Applied Surface Science, vol.252, issue.10, pp.3658-3666, 2006.
DOI : 10.1016/j.apsusc.2005.05.040

M. Von-allmen, Laser drilling velocity in metals, Journal of Applied Physics, vol.47, issue.12, pp.5460-5463, 1976.
DOI : 10.1063/1.322578

E. Yasa and J. Et-kruth, Investigation of laser and process parameters for Selective Laser Erosion, Precision Engineering, vol.34, issue.1, pp.101-112
DOI : 10.1016/j.precisioneng.2009.04.001

B. S. Yilbas, M. Khaled, and M. A. Et-gondal, Electrochemical response of laser surface melted inconel 617 alloy, Optics and Lasers in Engineering, vol.36, issue.3, pp.269-276, 2001.
DOI : 10.1016/S0143-8166(01)00050-1

Y. F. Yin and R. G. Et-faulkner, Model predictions of grain boundary chromium depletion in Inconel 690, Corrosion Science, vol.49, issue.5
DOI : 10.1016/j.corsci.2006.10.022