A. Bourmaud, J. Beaugrand, D. U. Shah, V. Placet, and C. Baley, Towards the design of highperformance plant fibre composites, Progress in Materials Science, vol.97, pp.347-408, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02069267

G. Bousfield, S. Morin, N. Jacquet, and A. , Extraction and refinement of agricultural plant fibers for composites manufacturing, Comptes Rendus ChimieVolume, vol.21, issue.9, pp.897-906, 2018.

A. K. Bledzki and J. Gassan, Composites Reinforced with Cellulose Based Fibers. Progress in Polymer Science, vol.24, pp.221-274, 1999.

. Frd-lab, Données internes. 2011, Fibres Recherche Dévoloppement : Troyes

F. Gouanvé, S. Marais, M. Métayer, C. Morvan, and F. Poncin-epaillard, Composites polyester insaturés renforcés par des fibres de lin : Effets de traitements plasma froid et autoclave sur les propriétés perméamétriques. Revue des composites et des matériaux avancés, pp.115-128, 2006.

A. Stamboulis and A. C. Baillie, Effects of environmental conditions on mechanical and physical properties of flax fibers, Compos Part A, vol.32, pp.1105-1120, 2001.

E. Balnois, F. Busnel, C. Baley, and Y. Grohens, An AFM study of the effect of chemical treatments on the surface microstructure and adhesion properties of flax fibres, Composite Interfaces, pp.715-731, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00399328

A. K. Bledzki, H. P. Fink, and K. Specht, Unidirectional hemp and flax EPand PPcomposites: Influence of defined fibre treatment, Journal of Applied Polymer Science, vol.93, pp.2150-2156, 2004.

R. M. Rowell, Performance driven composites from lignocellulosic resources, Proceedings of International Conference on Science and Technology of Composite Materials, 2001.

J. Gassan and A. K. Bledzki, Possibilities for improving the mechanical properties of jute/epoxycomposites by alkali treatment of fibres, Composites Science and Technology, vol.59, pp.1303-1309, 1999.

D. E. Akin, J. A. Foulk, R. B. Dodd, and D. D. Mcalister, Enzyme-retting of flax and characterization of processed fibres, Journal of Biotechnology, vol.89, pp.193-203, 2001.

G. Calafell, Effect of some process parameters in the biological, 2004.

J. D. Evans, D. E. Akin, and J. A. Foulk, Flax retting by polygalacturonase containing enzyme mixtures and effects on fiber properties, Journal of Biotechnology, vol.97, pp.223-231, 2002.

J. De-prez, A. W. Van-vuure, J. Ivens, G. Aerts, and I. V. De-voorde, Enzymatic treatment of flax for use in composites, Biotechnology Reports, vol.20, 2018.

C. Bathias, A. Bunsell, and E. Morel, Matériaux composites 2ème édition, pp.73-75, 2009.

D. Gay, Matériaux composites, 1997.

C. Bathias, A. Bunsell, and E. Morel, Matériaux composites 2ème édition, pp.73-75, 2009.

S. M. Sapuan and M. A. Maleque, Design and fabrication of natural woven fabric reinforced epoxy composite for household telephone stand, Materials and Design, vol.26, pp.65-71, 2005.

N. Quelenis, Les matériaux composites à base de fibres végétales. fiche technique Agro-industrie, 2005.

A. P. Haseena, G. Unnikrishnan, and G. Kalaprasad, Dielectric properties of short sisal/coir hybrid fibre reinforced natural rubber composites. Composite Interfaces, pp.763-786, 2007.

A. Bendahou, H. Kaddami, and A. Dufresne, Investigation on the effect of cellulosic nanoparticles morphology on the properties of natural rubber based nanocomposites, European Polymer Journal, vol.46, pp.609-620, 2010.

B. H. Nguyen-thuc and A. Maazouz, Elastomer-modified epoxy/amine systems in a resin transfer moulding process, Polymer International, vol.53, pp.591-602, 2004.

J. Bréard, L. Bizet, N. Montrelay, and C. Baley, Comparaison des propriétés de composites mats verre/polyester et lin/ polyester pour faisabilité par procédé RTM. Revue des composites et des matériaux avancés, pp.101-113

M. Assarar, D. Scida, A. E. Mahi, C. Poilâne, and R. Ayad, Influence of water ageing on mechanical properties and damage events of two reinforced composite materials: Flax-fibres and glass-fibres, Materials & DesignVolume, vol.32, pp.788-795, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02497295

. Mondher,

C. Poilane, Z. Cherif, F. Richard, A. Vivet, B. Ben-doudou et al., Polymer reinforced by flax fibres as a viscoelastoplasticmaterial, Composites structures, vol.112, pp.100-112, 2014.

A. Monti, A. E. Mahi, Z. Jendli, and L. Guillaumat, Mechanical behaviour and damagemechanisms analysis of a flax-fibre reinforced composite by acoustic emission, Composites, Part A, vol.90, pp.100-110, 2016.

A. Arbelaiz, B. Fernandez, A. Valea, and I. Mondragon, Mechanical properties of short flax fibre bundle/poly(3-caprolactone) composites: Influence of matrix modification and fibre content, Carbohydrate Polymers, vol.64, pp.224-232, 2006.

G. Cicala, G. Cristaldi, G. Recca, G. Ziegmann, A. El-sabbagh et al., Properties and performances of various hybrid glass/natural fibre composites for curved pipes, Materials and Design, vol.30, pp.2538-2542, 2009.

G. D. Bella, V. Fiore, and A. Valenza, Effect of areal weight and chemical treatment on the mechanical properties of bidirectional flax fabrics reinforced composites, Materials and Design, vol.31, pp.4098-4103, 2010.

M. J. John and R. D. Anandjiwala, Chemical modification of flax reinforced polypropylene composites, Composites: Part A, vol.40, pp.442-448, 2009.

A. Pizzi, R. Kueny, F. Lecoanet, B. Massetau, D. Carpentier et al., High resin content natural matrix-natural fibrebiocomposites, Industrial Crops and Products, vol.30, pp.235-240, 2009.

R. Burgueno, M. J. Quagliata, A. K. Mohanty, G. Mehta, L. T. Drzal et al., Hybrid biofiber-based composites for structural cellular plates, vol.36, pp.581-593, 2005.

H. Daoud, « Contribution à l'étude du comportement mécanique et vibratoire des composites biosourcés incorporant des matériaux fonctionnels, 2018.

S. Liang, P. B. Gning, and L. Guillaumat, « Comportement en fatigue de composites en lin/époxy » Revue des, Composites et des Matériaux Avancés, vol.22, pp.351-365

C. Baley, « Etude du comportement de fibres unitaires de lin et d'unidirectionnels linépoxy soumis à des sollicitations cycliques en traction, Fatigue des composites, AMAC, vol.11, pp.235-254, 2001.

C. Baleya, C. Goudenhoofta, P. Perréb, P. Lub, F. Pierreb et al., Mondher HAGGUI 167

, Compressive strength of flax fibre bundles within the stem and comparison with unidirectional flax/epoxy composites, Industrial Crops and Products, vol.130, pp.25-33, 2019.

C. E. Stromeyer, The Determination of Fatigue Limits under Alternting Stress Conditions, Proc. Roy. Soc. London, vol.90, pp.411-425, 1914.

N. Arnold, P. Towo, and A. Martin, Fatigue of sisal fibre reinforced composites: Constant-life diagrams and hysteresisloop capture, Composites Science and TechnologyVolume, vol.68, pp.915-924, 2008.

D. U. Shah, P. J. Schubel, M. J. Clifford, and P. Licence, Fatigue life evaluation of aligned plant fibre composites through S-N curves and constant-life diagrams, Composites Science and Technology, vol.74, pp.139-149, 2013.

A. Shahzad and D. H. ,

J. Gassan, «A study of fibre and interface parameters affecting the fatigue behavior of natural fibre composites, Composites Part A, vol.33, issue.3, pp.369-374, 2002.

S. Liang, P. B. Gning, and L. Guillaumat, Comportement en fatigue des composites en lin/époxy. AMAC. 17èmes Journées Nationales sur les Composites (JNC17), p.75, 2011.

A. Elouaer, Z. Aboura, R. Ayad, H. Sabhi, M. Benzeggagh-;-philippe et al., Suivi de l'endommagement en fatigue des composites à base de fibres végétales, vol.16, 2009.

N. H. Tai, M. C. Yip, and J. L. Lin, Effects of low-energy impact on the fatigue behaviour of carbon/epoxy composites, Composite science and technology, vol.58, pp.1-8, 1998.

Z. Jendli, F. Meraghni, J. Fitoussi, and D. Baptiste, Micromechanical analysis of strain rate effect on damage evolution in sheet molding compound composites, Composites, Part A, vol.35, pp.779-785, 2004.

S. Lee, J. Seungcheon, and Y. T. Im, Experimental and numerical study of the impact behaviour of SMC plates, Composite structures, vol.47, pp.551-561, 1999.

Z. Y. Zhang and M. O. Richardson, Low velocity impact induced damage evaluation and its effect on the residual flexural properties of pultruded GRP composite, Composite structures, vol.81, issue.2, pp.195-201, 2007.

E. O. , Etude du comportement des structures composites endommagées par un Mondher HAGGUI 168 impact basse vitesse-Applications aux structures aéronautiques, 1999.

S. Petit, C. Bouvet, A. Bergerot, and J. J. Barrau, Impact and compression after impact experimental study of a composite laminate with a cork thermal shield, Composites Science andTechnology, vol.67, pp.3286-99, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00509042

F. K. Chang and K. Y. , Chang k, A progressive damage model for laminate composites containing stress concentrations, Journal of Composite Materials, pp.834-855, 1987.

J. F. Deü, Rupture des composites stratifiés sous chargement dynamique : apport des mésomodèles avec endommagement retardé, 1997.

S. Blassiau, Modélisation des phénomènes microstructuraux au sein d'un composite unidirectionnel carbone/époxy et prédiction de durée de vie : contrôle et qualification de réservoirs bobinés, 2005.

K. Henkhaus, Overview of research on composite material impact behaviour, 16th Engineering Mechanics Conference, 2001.

C. Huchette, Sur la complémentarité des approches expérimentales et numériques pour la modélisation des mécanismes d'endommagement des composites stratifies, 2005.

K. K. Chawla and A. C. Bastos, «The mechanical properties of jute fibers and polyester /jute composites, Proceedings of the third international conference on mechanical behavior of materials, pp.1991-196, 1977.

C. Santulli, Post-impact damage characterisation on natural fibre reinforced composites using acoustic emission, NDT&E, vol.34, issue.8, pp.531-536, 2001.

C. Pavithran, P. S. Mukherjee, M. Brahmakumar, and A. D. Damodaran, Impact properties of natural fibre composites». Composites, vol.19, p.79, 1988.

C. V. Srinivasa, A. Arifulla, N. Goutham, T. Santhosh, H. J. Jaeethendra et al.,

S. G. Ravikumar, D. G. Anil, and . Kumar, J. Ashish Static bending and impact behaviour of areca fibers composites Materials and Design, vol.32, pp.2469-2475, 2011.

Y. Tong and D. H. Isaac, Impact and fatigue behaviour of hemp fibre composites, Composites Science and Technology, vol.67, pp.3300-3307, 2007.

R. Benoît, Matériaux composites à base de fibres de chanvre, Mémoire de maitrise

M. Hammami, Comportement mecanique et vibratoire des composites stratifies sains et endommages par delaminage, 2016.
URL : https://hal.archives-ouvertes.fr/tel-01777958

A. Monti, A. E. Mahi, Z. Jendli, and L. Guillaumat, Experimental and finite elements analysis of the vibration behaviour of a bio-based composite sandwich beam, Composites Part B, vol.110, pp.466-475, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02408560

M. Assarar, W. Zouari, H. Sahbi, R. Ayad, and J. Berthelot, Evaluation of the dampingof hybrid carbon-flax reinforced composites, Composites Structures, vol.132, pp.148-154, 2015.

S. Prabhakaran, V. Krishnaraj, M. Senthilkumar, and R. Zitoune, Sound and Vibration Damping Properties of Flax Fiber Reinforced Composites, Procedia Engineering, vol.97, pp.573-581, 2014.
URL : https://hal.archives-ouvertes.fr/hal-02054330

M. Hammami, A. E. Mahi, C. Karra, and M. Haddar, Experimental analysis of the linear and nonlinear behaviour of composites with delaminations

. Acoustics, , vol.108, pp.31-39, 2016.

H. Daoud, A. E. Mahi, J. L. Rebiere, C. Mechri, M. Taktak et al., Experimental analysis of the linear and nonlinear vibration behavior of flax fibre reinforced composites with an interleaved natural viscoelastic layer, Composites Part B: Engineering, vol.151, pp.201-214, 2018.

G. Coroller, A. Lefeuvre, A. L. Duigou, A. Bourmaud, G. Ausias et al., Effect of flax fibres individualisation on tensile failure of flax/epoxy unidirectional composite, Composites: Part A, vol.51, pp.62-70, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00985219

E. Abisset, « Un mésomodèle d'endommagement des composites stratifiés pour le virtual testing : identification et validation, 2012.

Z. Jendli, « Analyse et modélisation multi-échelles du comportement mécanique sous sollicitations rapides de composites smc »Thèse de doctorat l'école nationale supérieure d'arts et métiers, 2005.

S. Gatouillat, « Approche mésoscopique pour la mise en forme des renforts tissés de composites, 2010.

T. Väisänen, O. Das, and L. Tomppo, A review on new bio-based constituents for natural fibre-polymer composites, Journal of Cleaner Production, vol.149, pp.582-596, 2017.

F. S. Mohanty and A. R. , Acoustical and fire-retardant properties of jute composite materials Applied Acoustics, vol.72, pp.108-114, 2011.

E. Zini and M. Scandola, Green composites: an overview, Polymer Composites, vol.32, 1905.

R. Dunne, D. Desai, and R. Sadiku, A review of natural fibres, their sustainability and automotive applications, Journal of Reinforced Plastics and Composites, vol.35, pp.1-10, 2016.

C. Baley, L. A. Duigou, . A. Bourmaud, and P. Davies, Influence of drying on the mechanical behaviour of flax fibres and their unidirectional composites, Composites: Part A, vol.43, pp.1226-1233, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00717191

A. Arbelaiz, B. Fernandez, J. A. Ramos, A. Retegi, R. Llano-ponte et al., Mechanical properties of short flax fibre bundle/polypropylene composites: Influence of matrix/fibre modification, fibre content, water uptake and recycling, Composites Science and Technology, vol.65, pp.1582-1592, 2005.

R. H. Newman, Auto-accelerative water damage in an epoxy composite reinforced with plain-weave flax fabric, Composites: Part A, vol.40, pp.1615-1620, 2009.

C. Poilâne, Z. E. Cherif, F. Richard, A. Vivet, B. B. Doudou et al., Polymer reinforced by flax fibres as a viscoelastoplastic material, Composite Structures, vol.112, issue.1, pp.100-112, 2014.

, Méthode d'essai standard pour les propriétés de traction des matériaux composites à matrice polymère, ASTM D3039 / D3039M -17

J. Baets, D. Plastria, J. Ivens, and I. Verpoest, Determination of the optimal flax fibre preparation for use in unidirectional flax-epoxy composites, Journal of Reinforced Plastics and Composites, vol.33, pp.493-502, 2014.

G. Coroller, A. Lefeuvre, L. Duigou, A. Bourmaud, A. Ausias et al., Effect of flax fibres individualisation on tensilefailure of flax/epoxyunidirectional composite, Composite Part A, vol.51, pp.62-70, 2013.

S. Masmoudi, A. El-mahi, and . Turki, S, Fatigue behaviour and structural health monitoring by acoustic emission of E-glass/epoxy laminates with piezoelectric implant, Applied Acoustics, vol.108, pp.50-58, 2016.

, Advanced acoustic emission data analysis pattern recognition and neural networks software, NOESIS software, 2004.

A. Likas, N. Vlassis, and J. Verbeek, The global k-means clustering algorithm, Pattern Recognition, vol.36, pp.451-461, 2003.
URL : https://hal.archives-ouvertes.fr/inria-00321515

B. Ammar, I. Karra, C. El-mahi, A. Haddar, M. El-guerjouma et al., Mechanical behaviour and acoustic emission technique for detecting damage in sandwich structures, Applied Acoustics, vol.86, pp.106-117, 2014.

S. Masmoudi, A. El-mahi, S. Turki, and R. El-guerjouma, Mechanical behaviour and health monitoring by Acoustic Emission of unidirectional and cross-ply laminates integrated by piezoelectric implant, Applied Acoustics, vol.86, pp.118-125, 2014.

Y. Ech-choudanya, M. Assarar, D. Scida, F. Morain-nicoliera, and B. Bellach, Unsupervised clustering for building a learning database of acoustic emission signals to identify damage mechanisms in unidirectional laminates, Applied Acoustics, vol.123, pp.123-132, 2017.

P. Gelineau, B. Lascoup, Z. Jendli, L. Gorjujago, and K. , Acoustic emission approach to quantify damage evolution, Proceedings of ECCM 15, 2012.

D. L. Davies and D. W. Bouldin, A cluster separation measure, IEEE Transactions on Pattern Analysis and Machine Intelligence, vol.1, pp.224-227, 1979.

A. Monti, A. El-mahi, Z. Jendli, and L. Guillaumat, Mechanical behaviour and damage mechanisms analysis of a flax-fibre reinforced composite by acoustic emission, Composites Part A: Applied Science and Manufacturing, vol.90, pp.100-110, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01792109

M. Aslan, Investigation of damage mechanism of flax fibre LPET commingled composites by acoustic emission, Composites Part B Engineering, vol.54, pp.289-297, 2013.

B. Madsena, M. Aslan, and H. Lilholt, Fractographic observations of the microstructural characteristics of flax fibre composites, Composites Science and Technology, vol.123, pp.151-162, 2016.

Z. Jendli, F. Meraghni, J. Fitoussi, and D. Baptiste, Multi-scales modelling of dynamic behaviour for discontinuous fibre SMC composites, Composites Science and Technology, vol.69, pp.97-103, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00563495

C. Khouloud, « Analyse du comportement en vibration des matériaux composites à fibres végétales, 2017.

. Champagne-ardenne,

, ASTM D3479 / D3479M-12 Méthode d'essai standard pour la tension de fatigue-Tension de polymère matrice composite Matériaux

K. F. Bensadoun, K. A. Vallons, L. B. Lessard, I. Verpoest, and A. W. Van-vuure, Fatigue behaviourassessment of flax-epoxy composites, Composites: Part A, vol.123, pp.151-162, 2016.

K. Vallons, M. Zong, V. Lomov, and I. Verpoest, Carbon composites based on multiaxialmulti-ply stitched preforms -Part 6. Fatigue behaviour at low loads: stiffness degradation and damage development, Composites Part A: Applied Science and Manufacturing, vol.38, 2007.

B. Lamy and C. Pomel, Influence of fibre defects on the stiffness properties of flax fibresepoxy composite materials, Journal of Materials Science Letters, vol.21, pp.1211-1213, 2002.

W. Hamad, On the mechanisms of cumulative damage and fracture in native cellulose fibres, Journal of Materials Science Letters, vol.17, pp.433-439, 1998.

J. Nosti, Performance analysis and life prediction for small wind turbine blades: a wood laminate case study, 2009.

F. A. Silva, N. Chawla, and R. Filho, An experimental investigation of the fatigue behaviour of sisal fibres, Materials Science and Engineering: A, vol.516, pp.90-95, 2009.

M. Idriss, A. El-mahi, A. Assarar, and R. El-guerjouma, Damping analysis in cyclic fatigue loading of sandwich beams with debonding, Composites: Part B, vol.44, pp.597-603, 2013.

H. Su, Acoustic Emission Analysis of Compressive Properties of Multidirectional Filament Wound Composite Material Tubes, International Conference on Information Engineering and Computer Science, 2009.

M. Idriss, A. E. Mahi, and R. E. Guerjouma, Characterization of sandwich beams with debonding by linear and nonlinear vibration method, Composite Structures, vol.120, 2015.

M. Cho and J. Kim, Higher-Order Zig-Zag Theory for Laminated Composites With Multiple Delaminations, Journal of Applied Mechanics, vol.68, pp.869-877, 2001.

L. Sunghee, P. Tachyon, and Z. V. George, Vibration analysis of multi-delaminated beams, Composite: Part B, vol.34, pp.647-659, 2003.

. Mondher,

L. A. Ostrovsky and P. A. Johnson, Dynamic nonlinear elasticity in geomaterials, Rivista del nuovocimento, vol.24, pp.1-46, 2001.

J. Berthelot and M. Composites, Comportement mécanique et analyse des structures, Éditions TEC & DOC, p.4, 2006.

D. J. Ewins, Modal Testing: Theory and Practice, 1984.

C. Silva, Vibration : Fundamentals and Practice, 2006.

F. Duc, P. E. Bourban, C. J. Plummer, and J. E. Mnson, Damping of thermoset and thermoplastic flax fibre composites, Compos. Part A, vol.64, pp.115-123, 2014.

. Cn, D. Della, and . Shu, Vibration of delaminated composite laminates: A review, Applied Mechanic Review, vol.60, 2007.

F. Pmies, L. A. Carlsson, D. Choqueuse, and P. Davies, Dégradation de matériaux composites dans environnement marin : nouveaux matériaux et méthodes d'essais, pp.384-396, 1992.

D. Dutta, H. Sohn, K. A. Harries, and P. Rizzo, A Nonlinear Acoustic Technique for Crack Detection in Metallic Structures?, Structural Health Monitoring, vol.8, pp.251-262, 2009.

S. Haupert, G. Renaud, J. Riviere, M. Talmant, P. A. Johnson et al., Highaccuracy acoustic detection of nonclassical component of material nonlinearity, The Journal of the Acoustical Society of America, vol.130, pp.2654-2661, 2011.

. Ke, A. Van-den-abeele, J. Sutin, P. A. Carmeliet, . Johnson et al., NDT & E International, vol.34, pp.239-248, 2001.

D. Pasqualini, K. Heitmann, J. Tencate, S. Habib, D. Higdon et al., Nonequilibrium and nonlinear dynamics in Berea and Fontainebleau sandstones: Lowstrain, vol.112, pp.1-16, 2007.

P. Jhonson, B. Zinszneret, and R. P. , «Resonance and elastic nonlinear phenomena in rock, Journal of Geophysical Resarch-Solid Earth, vol.101, pp.11553-11564, 1996.

M. Scalerandi, P. Delsanto, V. Agostini, P. Abeele, and . Johnson, Local interaction simulation approach to modeling nonclassical, nonlinear elastic behavior in solids, Journal of the Acoustical Society of America, vol.113, pp.3049-3059, 2003.

V. Zaitsev, V. Gusev, and B. Castagnède, Thermoelastic mechanism for logarithmic slow dynamics and memory in elastic wave interaction with individual cracks, Physical Review Letters, vol.90, pp.1-4, 2003.

M. Idriss, Analyse expérimentale et par élément finis du comportement statique et vibratoire des matériaux, 2013.

F. Wang, X. Li, J. Zhang, L. Li, and L. M. Keer, Micromechanical modeling of the progressive failure in unidirectional composites reinforced with bamboo fibres, Mech Mater, vol.94, pp.180-192, 2016.

Y. Pan and Z. Zhong, A micromechanical model for the mechanical degradation of natural fiber reinforced composites induced by moisture absorption, Mech Mater, vol.85, pp.7-15, 2015.

P. Ladevèze, G. Lubineau, and D. Marsal, Towards a bridge between the micro-and mesomechanics of delamination for laminated composites, Composites Science and Technology, issue.66, pp.698-712, 2006.

A. Rubio-lópez, T. Hoang, and C. Santiuste, Constitutive model to predict the viscoplastic behaviour of natural fibres based composites, Composite Structure, vol.155, pp.8-18, 2016.

P. Ladevèze and E. L. Dantec, Damage modeling of the elementary ply for laminated composites, Composites Science and Technology, issue.43, pp.257-267, 1992.

M. Q. Le, H. Bainier, D. Néron, C. Ha-minh, and P. Ladevèze, On matrix cracking and splits modeling in laminated composites, Composites: Part A, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02275163

P. Ladevèze and G. Lubineau, On a damage mesomodel for laminates: micromechanics basis and improvement, Mechanics of Materials, issue.35, pp.763-775, 2003.

E. Abisset, F. Daghia, and P. Ladevèze, On the validation of a damage mesomodel for laminated composites by means of open-hole tensile tests on quasi-isotropic laminates, Composites: Part A, issue.42, pp.1515-1524, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01581406

D. Violeau, Une stratégie de calcul pour l'analyse à l'échelle "micro" des endommagements jusqu'à, rupture des composites stratifiés

J. A. Nairn and S. Hu, The initiation and growth of delaminations induced by matrix microcracks in laminated composites, International Journal of Fracture, vol.57, pp.1-24, 1992.

. Mondher,

M. Habibi, S. Selmi, L. Laperrière, H. Mahi, and S. Kelouwani, Experimental investigation on the response of unidirectional flax fiber composites to low-velocity impact with after-impact tensile and compressive strength measurement, Composites Part B, vol.171, pp.246-253, 2019.

F. Bensadoun, D. Depuydt, J. Baets, I. Verpoest, and A. W. Van-vuure, Low velocity impact properties of flax composites, Composite Structures, vol.176, pp.933-944, 2017.