I. 1. Couche and C. De, 72 III.3, p.89

I. Les and L. De, 102 II.3.1. Dans la direction normale à l'interface entre deux corps, 99 II.2. MODELISATION

I. De-flexion-4, P. De-l-'irsid, and .. , 137 III.2, 139 III.6. INSTRUMENTATION DE L'EMISSION, p.141

V. Determination, . De, L. Pour-l-'acier-et, and P. , 161 VI.1. L'ANALYSE INVERSE, 162 VI.2.2, p.163

C. V. Extension, . Autres, . De, . Et, . Deformation et al., 188 I.3

P. Montmitonnet, Laminage ? Objectifs et modélisation, technique de l'ingenieur M3065, 2002.

P. Montmitonnet, Laminage à chaud ? Théorie du laminage, technique de l'ingenieur M7840, 1991.

]. G. Mor, H. Moreas, and . Uijtdebroeks, On-line roughness measurement of hot rolled strips, Publication CD European Communities, 2002.

]. A. Munt, J. G. Munther, and . Lenard, A study of friction during hot rolling of steels, Scandinavian Journal of Metallurgy, vol.26, pp.231-240, 1997.

]. H. Oka and . Okada, Effect of scale deformation at hot rolling on strip surface, p340 [Paw] O.Pawelski, Berechnung der Wärmedurchgangszahl für das Warmwalsen und Schmieden, pp.821-827, 1969.

]. I. Sam and . Samarasekera, The Importance of Characterizing Heat Transfer in Hot Rolling of Steel Strip, Int. Symp. on Mathematical Modelling of Hot Rolling of Steel, pp.26-29148, 1990.

]. P. Ste, K. P. Stevens, P. Ivens, and . Harper, Increasing work roll life by improving roll cooling practice, J. Iron Steel Inst, pp.1-11, 1971.

]. J. Til, J. G. Tiley, Y. Lenard, and . Yu, Roll bite deformation of the thin scale layer on a plain carbon steel during hot rolling, MWSP CONF. PROC., ISS, vol.42, pp.215-220, 2000.

]. K. Tom and . Tominaga, Prevention of secondary scale defect at H.S.M in Mizushima Works, p.1242, 1995.

I. General, . Of, .. Specimens, . Phbt, . On et al., 145 IV.2.2. A granular structure, Strain rate influence, p.154

V. 1. First-works and .. , 155 V.2. CRACKS INITIATION, CONCLUSION, p.161

V. Determination, . Of, . Laws, S. Steel, P. Steel et al., 161 VI.1. THE INVERSE ANALYSIS, 162 VI.2.2. Steel mechanical parameters identification by inverse analysis method, p.163

V. 3. Oxide and C. Scale, 167 VI.3.1. Young's modulus identification, 700°C, p.172

V. Simulation, . Determination, . Of, and .. Stresses, 172 VII.1. DETERMINATION OF, TEMPERATURE / STRAIN RATE INFLUENCES, p.175

]. O. Bruh, N. K. Bruhns, A. T. Gupta, H. Meyers, and . Xiao, Bending of an elastoplastic strip with isotropic and kinetic hardening, Arch. Appl. Mech, vol.72, pp.759-778, 2003.

]. D. Dal, S. Dalmas, C. Benmedakhene, A. Richard, G. Laksimi et al., Caractérisation par émission acoustique de l'adhérence et de l'endommagement d'un revêtement: cas d'un revêtement WC-CO sur acier, Chimie des surfaces et catalyse, Factors Effecting Acoustic Emission Response of Materials, Materials Research and Standards, MTRSA, pp.345-350, 1971.

]. H. Echs, S. Echsler, M. Ito, and . Schütze, Mechanical properties of oxide scales on mild steel at 800 and 1000°C, Oxid. Met, vol.60, issue.34, pp.241-269, 2002.

]. Y. Fav, V. Favennec, F. Labbe, and . Bay, Identification of physical parameters involved in induction heating processes, Proc. ESAFORM'00, pp.19-22, 2000.

]. J. Fle, Y. H. Fletcher, J. H. Li, C. M. Beynon, and . Sellars, The influence of surface conditions in hot forming determined by ring upsetting: a numerical and experimental investigation, Proc. Instn. Mech.Engrs, vol.212, pp.453-465, 1998.

]. P. Han, J. R. Hancock, and . Nicholls, Application of fracture mechanics to failure of surface oxide scales, Mater. Sci. Technol, vol.4, pp.398-406, 1988.

]. R. Mor and . Morrel, Handbook of properties of technical and engineering ceramics, 1987.

]. M. Mou1 and . Essid, Etude du comportement de la calamine sur un acier extra doux en flexion 4 points Encadrant: G. Moulin, 2003.

I. References-[-krz1, ]. M. Krzyzanowski, and J. H. Beynon, Oxide behavior in hot rolling, in Metal Forming Science and Practice, a state of the art volume in honour of Pr J.A.Schey's 80 th birthday, pp.85-114, 2002.

M. Krzyzanowski, C. M. Sellars, and J. H. Beynon, Characterisation of oxide scale in thermomechanical processing of steel, Proc. Int. Conf. on Thermomechanical Processing: Mechanics, Microstructure and Control, pp.91-102, 2003.

M. Krzyzanowski and J. H. Beynon, Modelling the boundary conditions for thermo-mechanical processing - oxide scale behaviour and composition effects, Modelling and Simulation in Materials Science and Engineering, vol.8, issue.6, pp.927-945, 2000.
DOI : 10.1088/0965-0393/8/6/312

M. Krzyzanowski and J. H. Beynon, Finite element model of steel oxide failure during tensile testing under hot rolling conditions, Materials Science and Technology, vol.13, issue.2, pp.1191-1198, 1999.
DOI : 10.1179/mst.1988.4.5.398

]. O. Paw, V. Pawelski, and . Gopinathan, Comparison of material flow and deformation resistance of HSLA steel deformed by hot rolling and by flat compression under simulated conditions, J. Mech. Working Technol, vol.5, pp.267-280, 1981.

]. G. Vagn, J. Vagnard, and . Manenc, Etude de la plasticité du protoxyde de fer et de l'oxyde cuivreux, Mém. Sci. Rev. Mét. LXI, issue.n°11, pp.768-776, 1964.

M. Krzyzanowski, C. M. Sellars, and J. H. Beynon, Characterisation of oxide scale in thermomechanical processing of steel, Proceedings of Int. Conf. On Thermomechanical Processing : Mechanics, Microstructure and Control, pp.91-102, 2003.

M. Krzyzanowski and J. H. Beynon, Evaluation of interfacial heat transfer during hot steel rolling assuming scale failure effects, Proc 10 th Int. Symp Plasticity'03 " : Dislocations, Plasticity and Metal Forming, pp.184-186, 2003.

M. Krzyzanowski and J. H. Beynon, Oxide behavior in hot rolling, in " Metal Forming Science and Practice, a state of the art volume in honour of Pr J.A.Schey's 80 th birthday, pp.85-114, 2002.

]. K. Tan, M. Tan, J. H. Krzyzanowski, and . Beynon, Effect of steel composition on failure of oxide scales in tension under hot rolling conditions, Steel Research, vol.4, issue.1-2, pp.250-258, 2001.
DOI : 10.1002/srin.200100113

]. Y. Zhou, T. Zhou, A. Tonomori, L. Yoshiba, G. Liu et al., Fracture characteristics of thermal barrier coatings after tensile and bending tests, Surface and Coatings Technology, vol.157, issue.2-3, pp.118-127, 2002.
DOI : 10.1016/S0257-8972(02)00154-8

A. References-[-fav, ]. Y. Favennec, V. Labbe, and F. Bay, Identification of physical parameters involved in induction heating processes, Proc. ESAFORM'00, pp.19-22, 2000.

]. J. Fle, Y. H. Fletcher, J. H. Li, C. M. Beynon, and . Sellars, The influence of surface conditions in hot forming determined by ring upsetting: a numerical and experimental investigation, Proc. Instn. Mech.Engrs, vol.212, pp.453-465, 1998.

M. Krzyzanowski, J. H. Beynon, and C. M. Sellars, Analysis of secondary oxide-scale failure at entry into the roll gap, Metallurgical and Materials Transactions B, vol.4, issue.2, pp.1483-1490, 2000.
DOI : 10.1007/s11663-000-0033-z

]. Y. Lee, B. M. Lee, K. J. Kim, S. W. Park, O. Seo et al., A study for the constitutive equation of carbon steel subjected to large strains, high temperatures and high strain rates, Journal of Materials Processing Technology, vol.130, issue.131, pp.130-131181, 2002.
DOI : 10.1016/S0924-0136(02)00707-0

M. Pietrzyk and J. G. Lenard, A study of thermal-mechanical modelling of flat rolling, J. Mater. Shaping Technol, vol.7, pp.2117-126, 1989.

]. C. Sel, W. J. Sellars, and . G. Mc, Tegart: La relation entre la résistance et la structure dans la déformation à chaud, Mém. Sci. Rev. Mét, vol.63, pp.731-746, 1966.

]. S. Shi and . Shida, Empirical formulae of flow stress of carbon steels, J. Japan Soc. Technol. Plasticity, vol.10, issue.103, pp.610-615, 1969.

]. Y. Tak, S. Takeuti, and . Komori, Thermal stress problems in industry. 3 : temperature dependency of elastic moduli for several metals from ?196°C to 1000°C, J. Thermal Stresses, vol.2, pp.223-250, 1979.

]. M. Torr, R. Torres, and . Colas, A model for heat conduction through the oxide layer of steel during hot rolling, Journal of Materials Processing Technology, vol.105, issue.3, pp.258-263, 2000.
DOI : 10.1016/S0924-0136(00)00569-0

]. M. Tru, J. H. Trull, and . Beynon, High temperature tension tests and oxide scale failure

]. S. Zho and . Zhou, An integrated model for hot rolling of steel strips, Journal of Materials Processing Technology, vol.134, issue.3, pp.338-351, 2003.
DOI : 10.1016/S0924-0136(02)01118-4