H. Ammar, A. Samuel, and F. Samuel, Effects of surface porosity on the fatigue strength of AE425 and PM390 hypereutectic Al-Si casting alloys at medium and elevated temperatures, Mater Sci Eng, A, vol.473, issue.1-2, pp.58-64, 2008.

G. G. Martin, Failure of a stationary pump engine piston, J Fail Anal Prev, vol.4, issue.1, pp.37-46, 2004.

F. Silva, Fatigue on engine pistons-A compendium of case studies, Eng Fail Anal, vol.13, issue.3, pp.480-92, 2006.

H. Ye, An overview of the development of Al-Si-Alloy based material for engine applications, J Mater Eng Perform, vol.12, issue.3, pp.288-97, 2003.

H. Okamoto, N. Anno, and T. Itoh, New computational and experimental stress analysis method for the design decision on optimum piston configuration of production engine, SAE Technical Paper, 1992.

A. J. Moffat, B. G. Mellor, C. L. Chen, R. C. Thomson, and P. Reed, Microstructural analysis of fatigue initiation in Al-Si casting alloys, Aluminium alloys 2006: innovation through research and technology. In: 10th international conference on aluminum alloys Switzerland, pp.1083-1091, 2006.

W. Yanxia, Q. Xinliang, and H. Kun, The reliability analysis for the piston, connecting rod and crankshaft assembly of diesel engine, International conference on mechanical engineering and mechanics, 2009.

J. Hardy, H. Lahjaily, M. Besson, and P. Gastaldi, Diesel combustion optimization at full load by combined CFD and single cylinder tests. SAE Technical Paper, 2004.

P. Béard, K. Mokaddem, and T. Baritaud, Measurement and modeling of the flowfield in a DI diesel engine: effects of piston bowl shape and engine speed, SAE Technical Paper, 1998.

C. Halászi, C. Gaier, and H. Dannbauer, Fatigue life prediction of thermomachanically loaded engine components, 2007.

L. Gardyn´skigardyn´gardyn´ski and A. Weron´skiweron´weron´ski, Examination of diesel engine pistons cracking reasons, Proc. 10th international scientific conference, 1998.

H. W. Song, Thermal fatigue on pistons induced by shaped high power laser. Part I: experimental study of transient temperature field and temperature oscillation, Int J Heat Mass Transf, vol.51, issue.3-4, pp.757-67, 2008.

H. W. Song, Thermal fatigue on pistons induced by shaped high power laser. Part II: design of spatial intensity distribution via numerical simulation, Int J Heat Mass Transf, vol.51, issue.3-4, pp.768-78, 2008.

R. Ebner, Thermal fatigue behaviour of hot-work tool steels: heat checks nucleation and growth, Int J Microstruct Mater Prop, vol.3, issue.2, pp.182-94, 2008.

S. Mielke, G. Laslaz, and C. Gautier-picard, Aluminium alloy for component with high hot process mechanical strength. WO Patent WO/2006/056,686, 2006.

A. Constantinescu, E. Charkaluk, G. Lederer, and L. Verger, A computational approach to thermomechanical fatigue, Int J Fatigue, vol.26, issue.8, pp.805-823, 2004.
DOI : 10.1016/j.ijfatigue.2004.01.006

URL : https://hal.archives-ouvertes.fr/hal-00022603

F. Szmytka, M. H. Maitournam, and L. Rémy, An implicit integration procedure for an elasto-viscoplastic model and its application to thermomechanical fatigue design of automotive parts, Comput Struct, vol.119, issue.1, pp.155-65, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00815505

F. Szmytka, L. Rémy, H. Maitournam, A. Köster, and M. Bourgeois, New flow rules in elasto-viscoplastic constitutive models for spheroidal graphite cast-iron, Int J Plast, vol.26, issue.6, pp.905-929, 2010.
DOI : 10.1016/j.ijplas.2009.11.007

URL : https://hal.archives-ouvertes.fr/hal-00481350

L. Rémy, Thermal-mechanical fatigue (including thermal shock), Comprehensive structural integrity, pp.113-99, 2003.

Y. Garud, A new approach to the evaluation of fatigue under multiaxial loadings, J Eng Mater Technol-Trans ASME, vol.103, issue.2, pp.118-143, 1981.

R. P. Skelton, Energy criterion for high temperature low-cycle fatigue failure, Mater Sci Technol, vol.7, issue.5, pp.427-466, 1991.
DOI : 10.1179/026708391790183853

S. Tabibian, E. Charkaluk, A. Constantinescu, F. Szmytka, and A. Oudin, TMF-LCF life assessment of a lost foam casting A319 aluminum alloy, Int J Fatigue, vol.53, pp.75-81, 2013.
DOI : 10.1016/j.ijfatigue.2012.01.012

URL : https://hal.archives-ouvertes.fr/hal-00825586

B. Tomkins, Fatigue crack propagation-an analysis, Phil Mag, vol.18, issue.155, pp.1041-66, 1968.

H. U. Lamba, . Urbana-champaign, . Dept, A. Theoretical, U. S. Mechanics et al., J-integral applied to fatigue crack initiation, 1974.

G. Chalant and L. Remy, The slip character and low cycle fatigue behaviour: the influence of F.C.C. twinning and strain-induced F.C.C. > H.C.P. martensitic transformation, Acta Metall, vol.28, issue.1, pp.75-88, 1980.

J. Reuchet and L. Rémy, Fatigue oxidation in a superalloy-application to life prediction in high temperature low cycle fatigue, Metall Trans A-Phys Metall Mater Sci, vol.14, issue.1, pp.141-150, 1983.

L. Rémy, A. Alam, N. Haddar, A. Koester, and N. Marchal, Growth of small cracks and prediction of lifetime in high-temperature alloys. In: Materials science and engineering a-structural materials properties microstructure and processing 468 (SI) McEvily symposium on fatigue and fracture of traditional and advanced materials, pp.40-50, 2006.

V. Maurel, L. Rémy, F. Dahmen, and N. Haddar, An engineering model for low cycle fatigue life based on a partition of energy and micro-crack growth, Int J Fatigue, vol.31, issue.5, pp.952-61, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00367997

W. J. Ostergren, A damage function and associated failure equations for predicting hold time and frequency effects in elevated temperature, lowcycle fatigue, J Test Eval, vol.4, pp.327-366, 1976.

S. Amiable, S. Chapuliot, A. Constantinescu, and A. Fissolo, A comparison of lifetime prediction methods for a thermal fatigue experiment, Int J Fatigue, vol.28, issue.7, pp.692-706, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00111459

J. Park and D. Nelson, Evaluation of an energy-based approach and a critical plane approach for predicting constant amplitude multiaxial fatigue life, Int J Fatigue, vol.22, issue.1, pp.23-39, 2000.

F. Rézaï-aria, B. Dambrine, and L. Rémy, Thermal fatigue of MAR-M509 superalloyr. Part 2: evaluation of life prediction models, Fatigue Fract Eng Mater Struct, vol.11, issue.4, pp.291-302, 1988.

F. Rézaï-aria and L. Rémy, An oxidation fatigue interaction damage model for thermal fatigue crack growth, Eng Fract Mech, vol.34, pp.283-94, 1989.

F. Szmytka and A. Oudin, A reliability analysis method in thermomechanical fatigue design, Int J Fatigue, vol.53, pp.82-91, 2013.
DOI : 10.1016/j.ijfatigue.2012.01.025