E. Ruffio, Estimation de paramètres et de conditions limites thermiques en conduction instationnaire pour des matériaux anisotropes Apport des algorithmes stochastiques à la conception optimale d'expérience, Thèse de l'Ecole Nationale, 2011.

D. Mori and K. Hirose, Recent challenges of hydrogen storage technologies for fuel cell vehicles, International Journal of Hydrogen Energy, vol.34, issue.10, pp.4569-4573, 2009.
DOI : 10.1016/j.ijhydene.2008.07.115

S. Satyapal, J. Petrovic, C. Read, G. Thomas, and G. Ordaz, The U.S. Department of Energy's National Hydrogen Storage Project: Progress towards meeting hydrogen-powered vehicle requirements, Catalysis Today, vol.120, issue.3-4, pp.246-251, 2007.
DOI : 10.1016/j.cattod.2006.09.022

N. Takeichi, H. Senoh, T. Yokota, H. Tsuruta, K. Hamada et al., ???Hybrid hydrogen storage vessel???, a novel high-pressure hydrogen storage vessel combined with hydrogen storage material, International Journal of Hydrogen Energy, vol.28, p.1121, 2003.
DOI : 10.1016/S0360-3199(02)00216-1

S. Villalonga, F. Nony, C. Magnier, J. Yvernes, C. Thomas et al., Composite 700 bar-vessel for on-board compressed gaseous hydrogen storage, 17th International Conference on Composite Materials. Edinburgh (UK), 2007.

J. Velosa, J. Nunes, P. Antunes, J. Silva, and A. Marques, Development of a new generation of filament wound composite pressure cylinders, Composites Science and Technology, vol.69, issue.9, p.1348, 2009.
DOI : 10.1016/j.compscitech.2008.09.018

L. Williams and D. Spond, A storage tank for vehicular storage of liquid hydrogen, Applied Energy, vol.6, issue.2, p.99, 1980.
DOI : 10.1016/0306-2619(80)90064-1

D. Zellouf, J. Goyette, D. Massicotte, and T. Bose, Ultrasonic inspection of composite hydrogen reservoirs using frequency diversity techniques, Ultrasonics, vol.39, issue.3, p.203, 2001.
DOI : 10.1016/S0041-624X(00)00065-2

C. Aardahl and S. Rassat, Overview of systems considerations for on-board chemical hydrogen storage, International Journal of Hydrogen Energy, vol.34, issue.16, p.6676, 2009.
DOI : 10.1016/j.ijhydene.2009.06.009

G. Banyay, M. Shaltout, H. Tiwari, and B. Mehta, Polymer and composite foam for hydrogen storage application, Journal of Materials Processing Technology, vol.191, issue.1-3, p.102, 2007.
DOI : 10.1016/j.jmatprotec.2007.03.074

S. Levesque, M. Ciureanu, R. Roberge, and T. Motyka, Hydrogen storage for fuel cell systems with stationary applications?????? I. Transient measurement technique for packed bed evaluation, International Journal of Hydrogen Energy, vol.25, issue.11, p.1095, 2000.
DOI : 10.1016/S0360-3199(00)00023-9

M. Melnichuk, G. Andreasen, H. Corso, A. Visintin, and H. Peretti, Study and characterization of a metal hydride container, International Journal of Hydrogen Energy, vol.33, issue.13, p.3571, 2008.
DOI : 10.1016/j.ijhydene.2007.12.029

F. Kromm, J. Quenisset, T. Lorriot, R. Harry, and H. Wargnier, Definition of a multimaterials design method, Materials & Design, vol.28, issue.10, p.2641, 2007.
DOI : 10.1016/j.matdes.2006.09.019

J. Hu, J. Chen, S. Sundararaman, K. Chandrashekhara, and W. Chernicoff, Analysis of composite hydrogen storage cylinders subjected to localized flame impingements, International Journal of Hydrogen Energy, vol.33, issue.11, p.2738, 2008.
DOI : 10.1016/j.ijhydene.2008.03.012

J. Park, C. Hong, C. Kim, and C. Kim, Analysis of filament wound composite structures considering the change of winding angles through the thickness direction, Composite Structures, vol.55, issue.1, p.63, 2002.
DOI : 10.1016/S0263-8223(01)00137-4

P. Xu, J. Zheng, and P. Liu, Finite element analysis of burst pressure of composite hydrogen storage vessels, Materials & Design, vol.30, issue.7, p.2295, 2009.
DOI : 10.1016/j.matdes.2009.03.006

J. Yang and M. Huber, Analysis of thermodynamic processes involving hydrogen???, International Journal of Hydrogen Energy, vol.33, issue.16, p.4413, 2008.
DOI : 10.1016/j.ijhydene.2008.05.085

B. Maytal, 3He Joule-Thomson inversion curve, Cryogenics, vol.36, issue.4, p.271, 1996.
DOI : 10.1016/0011-2275(96)88786-8

Y. Liu, Y. Zhao, L. Zhao, X. Li, H. Chen et al., Experimental studies on temperature rise within a hydrogen cylinder during refueling, International Journal of Hydrogen Energy, vol.35, issue.7, p.2627, 2010.
DOI : 10.1016/j.ijhydene.2009.04.042

L. Zhao, Y. Liu, J. Yang, Y. Zhao, J. Zheng et al., Numerical simulation of temperature rise within hydrogen vehicle cylinder during refueling, International Journal of Hydrogen Energy, vol.35, issue.15, p.8092, 2010.
DOI : 10.1016/j.ijhydene.2010.01.027

C. Dicken and W. Merida, Measured effects of filling time and initial mass on the temperature distribution within a hydrogen cylinder during refuelling, Journal of Power Sources, vol.165, issue.1, p.324, 2007.
DOI : 10.1016/j.jpowsour.2006.11.077

E. Werlen, P. Pisot, K. Barral, and R. P. , Thermal effects related to H2 fast filling in high pressure vessels depending on vessels types and filling procedures: modelling, trials and studies, European Energy Conference, 2003.

K. Barral, S. Pregassame, and R. P. , Thermal effects of fast filling hydrogen compression in refueling stations. 15th World Hydrogen Energy Conference, Yokohama (Japan), 2004.

O. Comond, D. Perreux, F. Thiebaud, and M. Weber, Methodology to improve the lifetime of type III HP tank with a steel liner, International Journal of Hydrogen Energy, vol.34, issue.7, p.3077, 2009.
DOI : 10.1016/j.ijhydene.2009.01.080

M. Bertin, Fatigue thermomécanique de multicouches polymère/composite, Thèse de l'Ecole Nationale Supérieure de Mécanique et d'Aérotechnique, 2011.

L. Ballère, P. Viot, J. Lataillade, L. Guillaumat, and S. Cloutet, Damage tolerance of impacted curved panels, International Journal of Impact Engineering, vol.36, issue.2, p.243, 2009.
DOI : 10.1016/j.ijimpeng.2008.03.004

A. Vinet, Identification d'une loi de comportement viscoélastique-viscoplastiquepour des stratifiés aéronautiques ; prévision du comportement à long terme à l'aide d'essais accélérés

R. Schapery, On the characterization of nonlinear viscoelastic materials, Polymer Engineering and Science, vol.9, issue.4, p.295, 1969.
DOI : 10.1002/pen.760090410

Y. Lou and R. Schapery, Viscoelastic Characterization of a Nonlinear Fiber-Reinforced Plastic, Journal of Composite Materials, vol.5, issue.2, p.208, 1971.
DOI : 10.1177/002199837100500206

Y. Ousset and F. Roudolff, Numerical analysis of delamination in multilayered composite plates, Computational Mechanics, vol.20, issue.1-2, p.122, 1997.
DOI : 10.1007/s004660050227

M. Tuttle and H. Brinson, Prediction of the long-term creep compliance of general composite laminates, Experimental Mechanics, vol.15, issue.1, p.89, 1986.
DOI : 10.1007/BF02319961

J. Maire, Etudes théorique et expérimentale du comportement de matériaux composites en contraintes planes, Thèse de l'Université de Franche-Comté, 1992.

F. Thiébaud, Modélisation du comportement global en sollicitations quasi-statiques d'un composite stratifié verre époxy : aspects théorique et expérimental Thèse de l'Université de Franche-Comté, 1994. [38] Pepitas C. Analyse et prévision du comportement à long terme des composites fibres de carbone, 2000.

M. Karahan, S. Lomov, A. Bogdanovich, and I. Verpoest, Fatigue tensile behavior of carbon/epoxy composite reinforced with non-crimp 3D orthogonal woven fabric, Composites Science and Technology, vol.71, issue.16, 1961.
DOI : 10.1016/j.compscitech.2011.09.015

S. Ogihara, N. Takeda, S. Kobayashi, and A. Kobayashi, Effects of stacking sequence on microscopic fatigue damage development in quasi-isotropic CFRP laminates with interlaminar-toughened layers, Composites Science and Technology, vol.59, issue.9, p.1387, 1999.
DOI : 10.1016/S0266-3538(98)00180-8

H. Kumazawa, T. Aoki, and I. Susuki, Influence of stacking sequence on leakage characteristics through CFRP composite laminates, Composites Science and Technology, vol.66, issue.13, pp.2107-2149, 2006.
DOI : 10.1016/j.compscitech.2005.12.017

M. Lafarie-frenot, D. Gamby, and T. Nguyen, Experimental and numerical analysis of loading rate and temperature effects on matrix cracking in CFRP laminates, Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials Design and Applications, vol.218, issue.1, pp.47-90, 2004.
DOI : 10.1177/146442070421800106

M. Bertin, F. Touchard, and M. Lafarie-frenot, Experimental study of the stacking sequence effect on polymer/composite multi-layers submitted to thermomechanical cyclic loadings, International Journal of Hydrogen Energy, vol.35, issue.20, p.11397, 2010.
DOI : 10.1016/j.ijhydene.2010.07.018

E. Gamstedt and B. Sjogren, Micromechanisms in tension-compression fatigue of composite laminates containing transverse plies, Composites Science and Technology, vol.59, issue.2, pp.167-212, 1999.
DOI : 10.1016/S0266-3538(98)00061-X

S. Hallett, W. Jiang, B. Khan, and M. Wisnom, Modelling the interaction between matrix cracks and delamination damage in scaled quasi-isotropic specimens, Composites Science and Technology, vol.68, issue.1, p.80, 2008.
DOI : 10.1016/j.compscitech.2007.05.038

S. Blassiau, A. Thionnet, and A. Bunsell, Micromechanisms of load transfer in a unidirectional carbon fibre???reinforced epoxy composite due to fibre failures. Part 1: Micromechanisms and 3D analysis of load transfer: The elastic case, Composite Structures, vol.74, issue.3, pp.303-350, 2006.
DOI : 10.1016/j.compstruct.2005.04.013

URL : https://hal.archives-ouvertes.fr/hal-00130644

S. Blassiau, A. Thionnet, and A. Bunsell, Micromechanisms of load transfer in a unidirectional carbon fibre???reinforced epoxy composite due to fibre failures. Part 2: Influence of viscoelastic and plastic matrices on the mechanisms of load transfer, Composite Structures, vol.74, issue.3, pp.319-367, 2006.
DOI : 10.1016/j.compstruct.2005.04.029

URL : https://hal.archives-ouvertes.fr/hal-00130644

S. Blassiau, A. Thionnet, and A. Bunsell, Micromechanisms of load transfer in a unidirectional carbon fibre-reinforced epoxy composite due to fibre failures: Part 3. Multiscale reconstruction of composite behaviour, Composite Structures, vol.83, issue.3, p.312, 2008.
DOI : 10.1016/j.compstruct.2007.05.004

URL : https://hal.archives-ouvertes.fr/hal-00130644

L. Kachanov, Rupture time under creep conditions, International Journal of Fracture, vol.97, 1999.

I. Lapczyk and J. Hurtado, Progressive damage modeling in fiber-reinforced materials, Composites Part A: Applied Science and Manufacturing, vol.38, issue.11, p.2333, 2007.
DOI : 10.1016/j.compositesa.2007.01.017

Z. Hashin and A. Rotem, A Fatigue Failure Criterion for Fiber Reinforced Materials, Journal of Composite Materials, vol.7, issue.4, p.448, 1973.
DOI : 10.1177/002199837300700404

Z. Hashin, Failure Criteria for Unidirectional Fiber Composites, Journal of Applied Mechanics, vol.47, issue.2, p.329, 1980.
DOI : 10.1115/1.3153664

F. Laurin, N. Carrere, and J. Maire, A multiscale progressive failure approach for composite laminates based on thermodynamical viscoelastic and damage models, Composites Part A: Applied Science and Manufacturing, vol.38, issue.1, p.198, 2007.
DOI : 10.1016/j.compositesa.2006.01.018

F. Laurin, N. Carrère, J. Maire, G. Lubineau, and P. Ladeveze, Approche hybride multiéchelle pour l'analyse de la tenue de structures composites sous sollicitations complexes 3D Construction of a micromechanics-based intralaminar mesomodel, and illustrations in ABAQUS/Standard, Computational Materials Science, vol.4356, p.137, 2008.

R. Talreja, Transverse Cracking and Stiffness Reduction in Composite Laminates, Journal of Composite Materials, vol.19, issue.4, p.355, 1985.
DOI : 10.1177/002199838501900404

D. Allen, C. Harris, and S. Groves, A thermomechanical constitutive theory for elastic composites with distributed damage???I. Theoretical development, International Journal of Solids and Structures, vol.23, issue.9, p.1301, 1987.
DOI : 10.1016/0020-7683(87)90107-7

J. Renard and A. Thionnet, Damage in composites: From physical mechanisms to modelling, Composites Science and Technology, vol.66, issue.5, p.642, 2006.
DOI : 10.1016/j.compscitech.2005.07.035

URL : https://hal.archives-ouvertes.fr/hal-00136836

J. Renard, J. Favre, T. Jeggy, O. Comond, D. Perreux et al., Influence of transverse cracking on ply behavior -Introduction of a characteristic damage variable Analyse et optimisation du comportement en fatigue des réservoirs d'hydrogène gazeux de type III = Analysis and optimisation of the fatigue lifetime of hydrogen high pressure tanks, Composites Science and Technology, vol.46, 1993.

D. Chapelle and D. Perreux, Optimal design of a Type 3 hydrogen vessel: Part I???Analytic modelling of the cylindrical section, International Journal of Hydrogen Energy, vol.31, issue.5, p.627, 2006.
DOI : 10.1016/j.ijhydene.2005.06.012

D. Chapelle, F. Thiebaud, and D. Perreux, Analysis and modelling of the burst pressure of high pressure hydrogen tanks, 2009.

D. Perreux and E. Joseph, The effect of frequency on the fatigue performance of filament-wound pipes under biaxial loading: Experimental results and damage model, Composites Science and Technology, vol.57, issue.3, p.353, 1997.
DOI : 10.1016/S0266-3538(96)00155-8

A. Pilato, N. Perry, J. Wahl, and C. Bois, Modèle de calcul analytique sur des réservoirs composite multicouche épais soumis à une pression interne et à des contraintes thermiques résiduelles, 2009.

M. Xia, H. Takayanagi, and K. Kemmochi, Analysis of multi-layered filament-wound composite pipes under internal pressure, Composite Structures, vol.53, issue.4, p.483, 2001.
DOI : 10.1016/S0263-8223(01)00061-7

M. Bertin, M. Kempeneers, D. Leh, P. Nimdum, B. Ramirez et al., OSIRHYS IV ? Qualification des codes pour la prédiction du comportement mécanique des structures composites des réservoirs embarqués de stockage à 700 bars de l'hydrogène JNC17, Méthode FE2 simplifiée appliquée à la modélisation des ruptures de fibres et de ses conséquences. Calcul de réservoirs composites. JNC17. Poitiers, 2011.

C. Thomas, Etude des mécanismes d'endommagement des composites fibres de carbone / matrice polyamide : application à la réalisation de réservoirs de stockage de gaz sous haute pression de type IV Thèse de l'Ecole des Mines ParisTech, 2011.

L. Sabatier, Apport des techniques d'analyse locale EBSD et AFM à l'étude de l'émergence des bandes de glissement induites par fatigue dans l'acier inoxydable 316L, Thèse de l'Ecole Nationale, 2002.

G. Giorleo and C. Meola, Location and Geometry of Defects in Composite Laminates from Infrared Images, Journal of Materials Engineering and Performance, vol.7, issue.3, p.367, 1998.
DOI : 10.1361/105994998770347819

L. Krstulovic-opara, B. Klarin, P. Neves, Z. Domazet, D. Roth et al., Thermal imaging and Thermoelastic Stress Analysis of impact damage of composite materials Thermographic imaging for high-temperature composite materials -A defect detection study Acoustic emission energy as a fatigue damage parameter for CFRP composites, Engineering Failure Analysis Research in Nondestructive Evaluation International Journal of Fatigue, vol.7118929, p.713147457, 1997.

E. Mader, E. Moos, and J. Karger-kocsis, Role of film formers in glass fibre reinforced polypropylene ??? new insights and relation to mechanical properties, Composites Part A: Applied Science and Manufacturing, vol.32, issue.5, p.631, 2001.
DOI : 10.1016/S1359-835X(00)00156-1

J. Bohse, Acoustic emission characteristics of micro-failure processes in polymer blends and composites, Composites Science and Technology, vol.60, issue.8, p.1213, 2000.
DOI : 10.1016/S0266-3538(00)00060-9

M. Giordano, A. Calabro, C. Esposito, D. Amore, A. Nicolais et al., An acoustic-emission characterization of the failure modes in polymer-composite materials, Composites Science and Technology, vol.58, issue.12, 1923.
DOI : 10.1016/S0266-3538(98)00013-X

P. De-groot, P. Wijnen, and R. Janssen, Real-time frequency determination of acoustic emission for different fracture mechanisms in carbon/epoxy composites, Composites Science and Technology, vol.55, issue.4, p.405, 1995.
DOI : 10.1016/0266-3538(95)00121-2

C. Bonnafous, F. Touchard, and L. Chocinski-arnault, Damage Mechanisms in Hemp-Fibre Woven Fabric Composite, and Comparison with Glass-Fibre Composite, Polymers & Polymer Composites, vol.19, p.543, 2011.

S. Huguet, N. Godin, R. Gaertner, L. Salmon, and D. Villard, Use of acoustic emission to identify damage modes in glass fibre reinforced polyester, Composites Science and Technology, vol.62, issue.10-11, p.1433, 2002.
DOI : 10.1016/S0266-3538(02)00087-8

URL : https://hal.archives-ouvertes.fr/hal-00475466

S. Barre, M. Benzeggagh, N. Vlassis, J. Verbeek, and J. , On the use of acoustic-emission to investigate damage mechanisms in glass-fiber-reinforced polypropylene The global k-means clustering algorithm, Composites Science and Technology Pattern Recognition, vol.5236, p.451, 1994.

N. Godin, S. Huguet, R. Gaertner, and L. Salmon, Clustering of acoustic emission signals collected during tensile tests on unidirectional glass/polyester composite using supervised and unsupervised classifiers, NDT & E International, vol.37, issue.4, p.253, 2004.
DOI : 10.1016/j.ndteint.2003.09.010

URL : https://hal.archives-ouvertes.fr/hal-00474933

M. Grediac, The use of full-field measurement methods in composite material characterization: interest and limitations, Composites Part A: Applied Science and Manufacturing, vol.35, issue.7-8, p.751, 2004.
DOI : 10.1016/j.compositesa.2004.01.019

F. Lagattu, M. Lafarie-frenot, T. Lam, and J. Brillaud, Experimental characterisation of overstress accommodation in notched CFRP composite laminates, Composite Structures, vol.67, issue.3, p.347, 2005.
DOI : 10.1016/j.compstruct.2004.01.016

K. Ha and R. Schapery, A three-dimensional viscoelastic constitutive model for particulate composites with growing damage and its experimental validation, International Journal of Solids and Structures, vol.35, issue.26-27, p.3497, 1998.
DOI : 10.1016/S0020-7683(97)00213-8

P. Lecomte-grosbras, B. Paluch, M. Brieu, D. Saxce, G. Sabatier et al., Interlaminar shear strain measurement on angle-ply laminate free edge using digital image correlation, Composites Part A: Applied Science and Manufacturing, vol.40, issue.12, 1911.
DOI : 10.1016/j.compositesa.2009.07.011

URL : https://hal.archives-ouvertes.fr/hal-00434420

S. Rouquie, M. Lafarie-frenot, J. Cinquin, and A. Colombaro, Thermal cycling of carbon/epoxy laminates in neutral and oxidative environments, Composites Science and Technology, vol.65, issue.3-4, p.403, 2005.
DOI : 10.1016/j.compscitech.2004.09.007

H. Hu, C. Lee, C. Wu, and W. Lu, Detection of matrix cracks in composite laminates by using the modal strain energy method, Mechanics of Composite Materials, vol.10, issue.4, p.117, 2010.
DOI : 10.1007/s11029-010-9132-3

P. Gulati, V. Katti, and S. Prabhu, Influence of the shape of the nozzle on local heat transfer distribution between smooth flat surface and impinging air jet, International Journal of Thermal Sciences, vol.48, issue.3, p.602, 2009.
DOI : 10.1016/j.ijthermalsci.2008.05.002

P. Woodfield, M. Monde, and T. Takano, Heat Transfer Characteristics for Practical Hydrogen Pressure Vessels Being Filled at High Pressure, Journal of Thermal Science and Technology, vol.3, issue.2, p.241, 2008.
DOI : 10.1299/jtst.3.241

P. Woodfield, T. Takano, M. Monde, and A. , Characteristics of Heat Transfer for Hydrogen and Wall During Filling Hydrogen Into Actual Tank at High Pressure, ASME/JSME 2007 Thermal Engineering Heat Transfer Summer Conference, Volume 1, 2007.
DOI : 10.1115/HT2007-32550