Y. Combres and B. Champin, Traitements thermiques des alliages de titane

J. R. Toran and R. R. Biederman, Phase transformation study of Ti-10V-2Fe-3Al, Titanium '80 Science and Technology -Proceedings of the 4 th international, pp.1491-1501, 1980.

Y. Combres, Métallurgie et recyclage du titane et de ses alliages

T. Furuhara, S. Annaka, and Y. Tomio, Superelasticity in Ti10V-2Fe-3Al alloys with nitrogen addition, Materials Science and Engineering, pp.438-440825, 2006.

I. Weiss and S. L. Semiatin, Thermomechanical processing of beta titanium alloys???an overview, Materials Science and Engineering: A, vol.243, issue.1-2, pp.46-65, 1998.
DOI : 10.1016/S0921-5093(97)00783-1

D. Bhattacharyya, S. Bhargava, and V. K. Varma, Effect of ?? grain size on stress induced martensitic transformation in ?? solution treated Ti???10V???2Fe???3Al alloy, Scripta Materialia, vol.53, issue.2, pp.195-200, 2005.
DOI : 10.1016/j.scriptamat.2005.03.039

D. Bhattacharyya, V. K. Varma, and A. K. Gogia, Influence of ? grain size on tensile behavior and ductile fracture toughness of titanium alloy Ti-10V-2Fe-3Al, Metallurgical and Materials Transactions, issue.37, pp.1423-1433, 2006.

K. Kubiak and J. Sieniawski, Development of the microstructure and fatigue strength of two phase titanium alloys in the processes of forging and heat treatment, Journal of Materials Processing Technology, vol.78, issue.1-3, pp.117-121, 1998.
DOI : 10.1016/S0924-0136(97)00472-X

Y. G. Zhou, W. D. Zeng, and H. Q. Yu, An investigation of a new near-beta forging process for titanium alloys and its application in aviation components, Materials Science and Engineering: A, vol.393, issue.1-2, pp.204-212, 2005.
DOI : 10.1016/j.msea.2004.10.016

P. Laheurte, A. Eberhardt, and M. J. Philippe, Influence of the microstructure on the pseudoelasticity of a metastable beta titanium alloy, Materials Science and Engineering: A, vol.396, issue.1-2, pp.223-230, 2005.
DOI : 10.1016/j.msea.2005.01.022

URL : https://hal.archives-ouvertes.fr/hal-00111856

R. Filip, K. Kubiak, W. Ziaja, and J. Sieniawski, The effect of microstructure on the mechanical properties of two-phase titanium alloys, Journal of Materials Processing Technology, vol.133, issue.1-2, pp.84-89, 2003.
DOI : 10.1016/S0924-0136(02)00248-0

R. R. Boyer and G. W. Kuhlman, Processing properties relationships of Ti-10V-2Fe-3Al, Metallurgical Transactions A, vol.16, issue.12, pp.2095-2103, 1987.
DOI : 10.1007/BF02647081

R. R. Boyer, E. W. Collings, G. Welsch, and P. A. Blenkinsop, Materials Properties Handbook -titanium alloys, chapter Section V : beta and near-beta alloys -Ti-10V-2Fe-3Al (Ti-10-2-3) Titanium alloys. advances in alloys, processes, products and applications, American Society for Metals Journal de Physique IV, issue.2, pp.828-865, 1993.

A. Indice and B. , Alliage de titane T-V10A3Fe2 (Ti10.2.3) -Barres rondes pour forgeage

S. Aerospace, Approval and control of premium-quality Titanium alloys. Aerospace Material Specification AMS2380 Indice, 2003.

A. Indice and B. , Alliages de titane T-V10A3Fe2 (Ti10.2.3) -Ebauches corroyées

O. M. Ivasishin, P. E. Markovsky, and S. L. Semiatin, Aging response of coarse- and fine-grained ?? titanium alloys, Materials Science and Engineering: A, vol.405, issue.1-2, pp.296-305, 2005.
DOI : 10.1016/j.msea.2005.06.027

J. Da-costa-teixeira, B. Appolaire, and E. Aeby-gautier, Modeling of the effect of the ?? phase deformation on the ?? phase precipitation in near-?? titanium alloys, Acta Materialia, vol.54, issue.16, pp.4261-4271, 2006.
DOI : 10.1016/j.actamat.2006.05.019

URL : https://hal.archives-ouvertes.fr/hal-00163456

F. Warchomicka, M. Stockinger, and H. P. Degisher, Quantitative analysis of the microstructure of near ?? titanium alloy during compression tests, Journal of Materials Processing Technology, vol.177, issue.1-3, pp.473-477, 2006.
DOI : 10.1016/j.jmatprotec.2006.04.022

T. W. Duerig, G. T. Terlinde, and J. C. Williams, The ?-phase reaction in titanium alloys, Titanium'80 Science and Technology -Proceedings of the 4 th International Conference on Titanium, pp.1299-1308, 1980.

M. Campagnac, Structures et propriétés mécaniques d'alliages de titane à bas transus : Ti-10V-2Fe-3Al et Ti-10V-3Cu-Al, 1988.

T. W. Duerig, J. Albrecht, and D. Richter, Formation and reversion of stress induced martensite in Ti-10V-2Fe-3Al, Acta Metallurgica, vol.30, issue.12, pp.2161-2172, 1982.
DOI : 10.1016/0001-6160(82)90137-7

T. W. Duerig, R. M. Middleton, and G. T. Terlinde, Stress assisted transformation in Ti-10V-2Fe-3Al, Titanium'80 Science and Technology -Proceedings of the 4 th International Conference on Titanium, pp.1503-1508, 1980.

E. Sukedai, H. Yagi, and D. Yoshimitsu, Electron microscopy study on a new phase in ??-titanium alloys aged at a high temperature, Ultramicroscopy, vol.98, issue.2-4, pp.209-218, 2004.
DOI : 10.1016/j.ultramic.2003.08.014

V. Trinite, Etude théorique des phases du titane, 2006.

C. Leyens, M. Peters, and J. Kumpfert, Titanium and Titanium Alloys : Fundamentals and Applications, 2003.
DOI : 10.1002/3527602119

G. T. Terlinde, T. W. Duerig, and J. C. Williams, The effect of heat treatment on microstructure and tensile properties of Ti-10V-2Fe-3Al, Titanium'80 Science and Technology -Proceedings of the 4 th International Conference on Titanium, pp.1561-1581, 1980.

A. Sreeramamurthy, H. Margolin, and C. A. Greene, Mechanical properties of alloys consisting of two ductile phases, Progress in Materials Sciences, pp.632-709, 2006.

P. Hadmar, Contribution à l'étude par diffractométrie X du comportement mécanique d'alliages métalliques polyphasés. Mécanique des solides, 1996.

J. M. Sprauel, Evaluation des contraintes résiduelles dans les matériaux polyphasés, Analyse des contraintes résiduelles par diffraction des rayons X et des neutrons, pp.185-202, 1994.

J. M. Sprauel and L. Castex, X-Ray Stress Analysis, EPDIC1, 1991.
DOI : 10.4028/www.scientific.net/MSF.79-82.143

L. Castex, Etude par diffractométrie X d'aciers au voisinage de la limite d'endurance et à différents stades de la fatigue, 1987.

L. Castex, J. L. Lebrun, G. Maeder, and J. M. Sprauel, Détermination des contraintes résiduelles par diffraction des rayons X, 1981.

P. Mabelly, Contribution à l'étude des pics de diffraction Approche expérimentale et modélisation micromécanique, Mécanique et matériaux, 1996.

R. Dakhlaoui, Analyse du comportement mécanique des constituants d'un alliage polycrystallin multiphasé par diffraction des rayons X et neutronique, 2006.

E. Macherauch, H. Wohlfahrt, and U. Wolfstieg, Zur zweckmä?igen definition von eigenspannungen, Härt. Tech. Mitt, vol.28, pp.201-211, 1973.

W. Voigt, Lehrbuch des Kristallphysik, 1910.

A. Reuss, Berechnung der fliessgrenze von mischkristallen auf grund der plastizitatsbedingung fur einekristalle, Z. Angew. Math. Mech, issue.9, pp.49-59, 1929.
DOI : 10.1002/zamm.19290090104

L. Barrallier, Génèse des contraintes résiduelles de nitruration Etude expérimentale et modélisation, Mécanique et matériaux, ENSAM, Lab. MécaSurf, 2 cours des Arts et Métiers, 13617 Aix-en-Provence, 1992.

R. Kubler, Comportement thermomécanique des aciers à effet trip : approches micromécaniques et phénoménologiques, 2004.
DOI : 10.1051/mattech:2004012

J. Barrallis and G. Maeder, Métallurgie physique. Collection scientifique, ENSAM, 1983.

B. D. Cullity and S. R. Stock, Elements of X-ray diffraction, 2001.

I. Chaieb, Analyse et simulation des contraintes résiduelles induites par des traitements mécaniques de précontrainte en grenaillage et choc laser, 2004.

P. S. Prevey, Current applications of X-ray diffraction residual stress measurement, Developments in materials characterization technologies, pp.103-110, 1996.

J. D. Eshelby, The determination of the elastic field of an ellipsoïdal inclusion and related problems The elastic field outside an ellipsoïdal inclusion, Proc. of the royal society London Proc. of the royal society London, 1957.

J. D. Eshelby, Elastic Inclusions and Inhomogeneities, Prog. in Sol. Mech, 1961.
DOI : 10.1007/1-4020-4499-2_26

M. Mathon, Caract??risation des textures par diffraction neutronique, ??tudes Structurales par Diffraction des Neutrons, pp.49-64, 2008.
DOI : 10.1051/sfn:2008005

D. Battacharyya, The development of textures and microstructures in ?/? titanium alloys. Materials science and engineering, 2004.

M. Battaini, E. V. Pereloma, and C. H. Davies, Orientation Effect on Mechanical Properties of Commercially Pure Titanium at Room Temperature, Metallurgical and Materials Transactions A, vol.39, issue.2, pp.276-285, 2007.
DOI : 10.1007/s11661-006-9040-2

U. F. Kocks, C. N. Tomé, and H. Wenk, Texture and anisotropy, 2000.

N. Gey, M. Humbert, and H. Moustahfid, Study of the ?? ??? ?? phase transformation of a Ti-6Al-4V sheet by means of texture change, Scripta Materialia, vol.42, issue.6, pp.525-530, 2000.
DOI : 10.1016/S1359-6462(99)00396-6

URL : https://hal.archives-ouvertes.fr/hal-00110499

N. Bozzolo, N. Dewobroto, and T. Grosdidier, Texture evolution during grain growth in recrystallized commercially pure titanium, Materials Science and Engineering: A, vol.397, issue.1-2, pp.346-355, 2005.
DOI : 10.1016/j.msea.2005.02.049

URL : https://hal.archives-ouvertes.fr/hal-00111853

J. Delfosse, Forgeage beta du Ti-17 -Propriétés en fatigue. Sols, structures et matériaux, 2005.

I. Lonardelli, N. Gey, and H. Wenk, In situ observation of texture evolution during ??????? and ??????? phase transformations in titanium alloys investigated by neutron diffraction, Acta Materialia, vol.55, issue.17, pp.5718-5727, 2007.
DOI : 10.1016/j.actamat.2007.06.017

Z. S. Zhu, J. L. Gu, and N. P. Chen, Transition textures induced by cyclic phase transformation in titanium sheet, Scripta Metallurgica et Materialia, vol.32, issue.4, pp.499-504, 1995.
DOI : 10.1016/0956-716X(95)90827-7

M. G. Glavicic, P. A. Kobryn, and S. L. Semiatin, Validation of an automated EBSD method to deduce the ??-phase texture in Ti???6Al???4V with a colony-?? microstructure, Materials Science and Engineering A, vol.385, issue.1-2, pp.372-376, 2004.
DOI : 10.1016/S0921-5093(04)00918-9

M. Humbert and N. Gey, The calculation of a parent grain orientation from inherited variants for approximate (b.c.c.???h.c.p.) orientation relations, Journal of Applied Crystallography, vol.35, issue.4, pp.401-405, 2002.
DOI : 10.1107/S0021889802005824

L. Germain, N. Gey, and A. Hazotte, An automated method to analyze separately the microtextures of primary ??p grains and the secondary ??s inherited colonies in bimodal titanium alloys, Materials Characterization, vol.54, issue.3, pp.216-222, 2005.
DOI : 10.1016/j.matchar.2004.11.011

URL : https://hal.archives-ouvertes.fr/hal-00111840

S. Suri, Room temperature deformation and mechanisms of slip transmission in oriented single-colony crystals of an ??/?? titanium alloy, Acta Materialia, vol.47, issue.3, pp.1019-1034, 1999.
DOI : 10.1016/S1359-6454(98)00364-4

P. Zilm and E. N. , Analyse des conditions de diffration sur la nuance de titane Ti10V-2Fe-3Al, 1994.

G. Schröder and T. W. Duerig, Forgeability of ? titanium alloys under isothermal forging conditions, Science and Technology, vol.1, pp.585-592, 1985.

H. Rydstad, T. W. Duerig, and C. R. Boër, Hot-die forging of Ti-10V-2Fe-3Al, Science and Technology, vol.1, pp.641-646, 1985.

M. Jackson, R. J. Dashwood, and L. Christodoulou, The microstructural evolution of a near beta alloy Ti-10V-2Fe-3Al during subtransus forging, Metallurgical and Materials Transactions, issue.36, pp.1317-1327, 2005.

M. Jackson, N. G. Jones, and D. Dye, Effect of initial microstructure on plastic flow behaviour during isothermal forging of Ti???10V???2Fe???3Al, Materials Science and Engineering: A, vol.501, issue.1-2, pp.248-254, 2009.
DOI : 10.1016/j.msea.2008.09.071

J. Delfosse, C. Rey, and N. Späth, Polycrystalline modelling of forging in ? field of Ti-17, Titanium 2003 Sciences and Technology, 10 th world conference on titanium., volume II, p.1219, 2004.

K. and L. Biavant, Etude de l'amorçage de fissures de fatigue dans le TA6V, 2000.

K. , L. Biavant, S. Pommiers, and C. Prioul, Local texture and fatigue crack initiation in a Ti-6Al-4V titanium alloy. Fatigue and fracture of engineering materials and structures, pp.527-545, 2002.

L. Germain, N. Gey, and M. Humbert, Texture heterogeneities induced by subtransus processing of near ?? titanium alloys, Acta Materialia, vol.56, issue.16, pp.4298-4308, 2008.
DOI : 10.1016/j.actamat.2008.04.065

E. Uta, N. Gey, and P. Bocher, titanium forging analysed by EBSD-Relation to fatigue crack propagation, Journal of Microscopy, vol.24, issue.Suppl. 1, pp.451-459, 2009.
DOI : 10.1111/j.1365-2818.2009.03141.x

E. Felder, Procédés d'usinage

B. R. Sridhar, G. Devananda, K. Ramachandra, and R. Bhat, Effect of machining parameters and heat treatment on the residual stress distribution in titanium alloy IMI-834, Journal of Materials Processing Technology, vol.139, issue.1-3, pp.628-634, 2003.
DOI : 10.1016/S0924-0136(03)00612-5

A. Eleöd, Y. Berthier, and E. Lach, Friction-induced structural modifications of Mg and Ti surfaces, Tribology International, vol.42, issue.5, pp.690-698, 2009.
DOI : 10.1016/j.triboint.2008.09.009

C. H. Che-haron, Tool life and surface integrity in turning titanium alloy, Journal of Materials Processing Technology, vol.118, issue.1-3, pp.231-237, 2001.
DOI : 10.1016/S0924-0136(01)00926-8

C. H. Che-haron and A. Jawaid, The effect of machining on surface intergrity of titnaium alloy ti-6, Journal of Materials Processing Technology, issue.166, pp.188-192, 2005.

J. Sun and Y. B. Guo, A comprehensive experimental study on surface integrity by end milling Ti???6Al???4V, Journal of Materials Processing Technology, vol.209, issue.8, pp.4036-4042, 2009.
DOI : 10.1016/j.jmatprotec.2008.09.022

J. L. Cantero, M. M. Tardio, J. A. Canteli, M. Marcos, and M. M. , Dry drilling of alloy Ti???6Al???4V, International Journal of Machine Tools and Manufacture, vol.45, issue.11, pp.1246-1255, 2005.
DOI : 10.1016/j.ijmachtools.2005.01.010

R. Li, L. Riester, T. R. Watkins, P. J. Blau, and A. J. Shih, Metallurgical analysis and nanoindentation characterization of Ti???6Al???4V workpiece and chips in high-throughput drilling, Materials Science and Engineering: A, vol.472, issue.1-2, pp.115-124, 2008.
DOI : 10.1016/j.msea.2007.03.054

A. R. Machado and J. Wallbank, Machining of titanium and its alloys???a review, ARCHIVE: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 1989-1996 (vols 203-210), vol.204, issue.12, pp.53-60, 1990.
DOI : 10.1243/PIME_PROC_1990_204_047_02

K. Gillespie-laroux89, ]. L. Wagner, and G. Lütjering, Surface strategy Influence of the shot-peening parameters on the surface layer properties and the fatigue life of tial6v4, Cutting Tool Engineering, pp.61-194, 1984.

I. Lillamand, Evolution d'une couche grenaillée sous sollicitations thermiques et mécaniques . Cas de la fatigue oligocyclique, 1999.

I. Lillamand, L. Barrallier, B. Lalanne, and L. Castex, Cyclil modelling of the mechanical state produced by shot-peening. Fatigue Fract, Engng Mater. Struct, issue.24, pp.93-104, 2001.

L. Wagner and J. K. Gregory, Improve the fatigue life of ti alloys, part 1 and 2, Advanced Materials and Processes, 1994.

I. C. Noyan and J. B. Cohen, Residual stress -Measurement by diffraction and interpretation, 1987.

W. A. Rachinger, Doublet in the Measurement of Widths of X-ray Diffraction Lines, Journal of Scientific Instruments, vol.25, issue.7, p.254, 1948.
DOI : 10.1088/0950-7671/25/7/125

W. Rasband, ImageJ http://rsbweb.nih.gov/ij/, dernière consultation le 10, 2010.

T. Ungar, J. Gubicza, and G. Ribarik, Crystallite size distribution and dislocation structure determined by diffraction profile analysis: principles and practical application to cubic and hexagonal crystals, Journal of Applied Crystallography, vol.34, issue.3, pp.298-310, 2001.
DOI : 10.1107/S0021889801003715

T. Ungar, Microstructural parameters from X-ray diffraction peak broadening, Scripta Materialia, vol.51, issue.8, pp.777-781, 2004.
DOI : 10.1016/j.scriptamat.2004.05.007

D. J. Hugues, G. Bruno, T. Pirling, and P. J. Withers, First impressions of salsa : the new engineering instrument at ill. Neutrons News, pp.28-32, 2006.

V. Micro-measurements, http://www.vishaypg.com/micro-measurements/ stress-analysis-strain-gages, 2010.

P. Robert, Des jauges, des ponts et une solution de câblage pour chaque cas, Mesures, issue.767, pp.57-60, 2004.

S. L. Raghunathan, A. M. Stapleton, and R. J. Dashwood, Micromechanics of Ti???10V???2Fe???3Al: In situ synchrotron characterisation and modelling, Acta Materialia, vol.55, issue.20, pp.6861-6872, 2007.
DOI : 10.1016/j.actamat.2007.08.049

J. Delfosse, C. Rey, and M. Mathon, Investigation of the alpha and beta texture evolution of hot forged titanium alloy products, 2003.

P. J. Withers and K. D. Bhadeshia, Residual stress. Part 1 ??? Measurement techniques, Materials Science and Technology, vol.17, issue.6, pp.355-365, 2001.
DOI : 10.1179/mst.1996.12.2.121

K. Tanaka and Y. Akiniwa, Diffraction Measurements of Residual Macrostress and Microstress Using X-Rays, Synchrotron and Neutrons, JSME International Journal Series A, vol.47, issue.3, pp.252-263, 2004.
DOI : 10.1299/jsmea.47.252

.. La-loi-de-bragg, Diffraction des rayons X sur un cristal d'après, p.27

T. Eprouvette-non, ZA-ssTTH) = cycle 1 ; Eprouvette traitée (ZA-avTTH) = cycle 1 + cycle 2, p.97

E. Fdoc-de-la-phase-?,-Échantillon-forgé, E. , and .. , 130 E.3 FDOC de la phase ?, échantillon forgé E3 Coupe à ? 2 constant 131 E.4 FDOC de la phase ?, échantillon forgé E4 Coupe à ? 2 constant 132 E.5 FDOC de la phase ?, échantillon forgé E1 Coupe à ? 2 constant 133 E.6 FDOC de la phase ?, échantillon forgé E2 Coupe à ? 2 constant 134 E.7 FDOC de la phase ?, échantillon forgé E3 Coupe à ? 2 constant 136 E.9 FDOC de la phase ?, échantillon fraisé 0 µm. Coupe à ? 2 constant 137 E.10 FDOC de la phase ?, échantillon fraisé 5 µm, 129 E.2 FDOC de la phase ?, échantillon forgé E2. Coupe à ? 2 constant Coupe à ? 2 constant. . . . . . . 138 E.11 FDOC de la phase ?, échantillon fraisé 18 µm. Coupe à ? 2 constant. . . . . . 139 E.12 FDOC de la phase ?, échantillon fraisé 50 µm. Coupe à ? 2 constant. . . . . . 140 E.13 FDOC de la phase ?, échantillon fraisé 0 µm. Coupe à ? 2 constant. . . . . . . 141 E.14 FDOC de la phase ?, échantillon fraisé 5 µm. Coupe à ? 2 constant. . . . . . . 142 E.15 FDOC de la phase ?, échantillon fraisé 18 µm. Coupe à ? 2 constant. . . . . . 143 E.16 FDOC de la phase ?, échantillon fraisé 50 µm. Coupe à ? 2 constant. . . . . . 144 F.1 FDOC de la phase ?, échantillon forgé E2. Coupe à ? 2 constant. . . . . . . . 145 F.2 FDOC de la phase ?, échantillon forgé E4. Coupe à ? 2 constant. . . . . . . . 146 F.3 FDOC de la phase ?, échantillon forgé E2. Coupe à ? 2 constant. . . . . . . . 146 F.4 FDOC de la phase ?, échantillon forgé E4. Coupe à ? 2 constant, p.147

@. Ecrs8, Riva del Garda, Italy (communication orale) Forging and shot­peening contribution on residual stresses for a textured biphasic titanium alloy, 2010.

@. Ampt2010, Forging and Milling Contribution On Residual Stresses For A Textured Biphasic Titanium Alloy, 2010.

A. Ti­10v­2fe­3al-fraisé-ou-grenaillé, X. , C. Deleuze, A. Fabre, L. Barrallier et al., Publications : Proceedings avec reviewers: ? Forging and Milling Contribution On Residual Stresses For A Textured Biphasic Titanium Alloy, p.2010, 2010.

C. Deleuze, A. Fabre, L. Barrallier, and O. , ? Forging and shot­peening contribution on residual stresses for a textured biphasic titanium alloy, Molinas. ECRS8 (proposé pour publication dans Materials Science Forum)