B. S. , F. J. , and H. J. Overington-m, Comparison of fatigue data for polyester and wire ropes relevant to deepwater moorings, 18th International Conference on Offshore Mechanics and Arctic Engineering Proceedings, 1999.

B. I. , A. M. Schadler-l, and P. S. , New methodology for determining in situ fiber, matrix, and interface stresses in damaged multifiber composites, Science and Engineering of Composite Materials, vol.7, pp.1-2, 1998.

B. P. Parisot-a, Etude par spectrographie infra-rouge de quelques modifications de la structure des fibres de polyamides provoquées par les traitements d'ennoblissement (fixage thermique, texturation), Journal of Polymer Science C, pp.16-1393, 1967.

B. J. Immergut-e and G. E. , Polymer handbook, 1999.

B. Hansen, S. H. Christensen-d, and F. Nielsen-o, Low frequency near-IR Fourier transform Raman studies of hydrogen bonding in nylons, Spectrochimica Acta, pp.49-769, 1993.

B. C. Garner-e, The crystal structures of two polyamides, Proceedings of the Royal Society of London A, pp.189-228, 1947.

C. Ph and B. J. , Frequency dependent conductivity, microwave dielectric relaxation and proton dynamics, in: Proton conductors: solids, membranes and gels -materials and devices, pp.389-408, 1992.

C. P. , G. A. Novak-a, and R. A. , Infrared and Raman study of polyaniline. Part I. Hydrogen bonding and electronic mobility in emeraldine salts, Journal of Molecular Structure, pp.317-261, 1994.

C. M. Kemp-k, The orientation of the structure of 6-6 nylon fibres, Proceedings of the Physical Society, pp.69-1301, 1957.

D. M. and S. J. White-j, Structure development in the melt spinning of nylon 66 fibers and comparison to nylon 6, Journal of Applied Polymer Science, pp.22-3351, 1978.

D. P. Dha85-]-dhamelincourt, Applications marines de câbles à fibres synthétiques ; hier, aujourd'hui et demain Microsonde à effet Raman et quelques exemples d'application à l'étude des polymères, Annales des Composites, issue.13, pp.143-158, 1985.

D. J. Buchanan-d and . B. Bowles-b, Characterization of nylon 66 structure from X-ray diffraction, Journal of Applied Polymer Science, pp.12-2067, 1968.

E. T. Brogly-m, G. M. Schultz-j-fontanille, . Ful40, . S. Fuller-c, . O. Baker-n et al., Structure moléculaire et morphologie des polymères, Techniques de l'ingénieur, A3042 Crystalline behavior of linear polyamides Effect of heat treatment Laser Raman spectroscopy, a new stress/strain measurement technique for the remote and on-line non-destructive inspection of reinforced polymer composites Unification of fibre/matrix interfacial measurements with Raman microscopy Raman extensometry study of NLM202 and Hi-Nicalon SiC fibres Analyse (micro)mécanique et (nano)structurale de solides hétérogènes par spectroscopie Raman Non-destructive mechanical characterization of SiC fibers by Raman spectroscopy The principle of Raman spectroscopy, Forschungsinstitut für Elektronen-mikroskopie Introduction à la mécanique des polymères, INPL Calorimetric, X -ray and infra-red investigations on poly(hexamethylene adipamide) Molecular ordering and crystallinity in polyhexamethylene adipamide Deux phases " amorphes " dans les multifilaments préorientés de polyester. Essai d'interprétation à partir de l'analyse calorimétrique différentielle The fractography of thermoplastic textile fibres, Thèse de Doctorat Imageries Raman et Rayleigh de nanophases. Nouveaux outils pour l'étude de la corrosion de matériaux hétérogènes. Application aux fibres et composites céramiques On the form of lamellar crystals in nylon fibres, Journal of the Textile InstituteHEA73] HEARLE J.W.S., An atlas of fibre fracture, Textile Manufacturer, pp.3649-3660, 1940.

H. J. Lomas-b and . R. Bunsell-a, The study of fiber fracture, Applied Polymer Symposia, pp.147-156, 1974.

H. J. Lomas-b and . D. Cooke-w, Atlas of fibre fracture and damage to textiles, 1998.

H. H. Huisman-r, Five-line model for the description of radial X -ray diffractometer scans of nylon 6 yarns, Journal of Polymer Science, polymer phys. ed, vol.19, pp.121-134, 1981.

H. H. , L. L. Van-den-heuvel-c, and W. A. De, Experimental relations between physical structure and mechanical properties of a huge number of drawn poly(ethylene terephthalate) yarns, Journal of Applied Polymer Science, pp.45-1649, 1992.

K. Y. Kuhn-w and . J. Sichina-w, Reliable measurements of the nylon 6 glass transition made possible by the new dynamic DSC, Macromolecules, pp.28-2644, 1995.

K. Y. Kuhn-w, Measurement of crystalline index in nylons by DSC: complexities and recommendations, Journal of Polymer Science B, vol.35, pp.2219-2231, 1997.

M. C. Mar03a, . A. Marcellan, . Bunsell-a, . Piques-r, . S. Colomban-pmur95b-]-murthy-n et al., Microstructures, micromécanismes et comportement à rupture de fibres PA 66 Analysis of poorly crystallized polymers using resolution enhanced X-ray diffraction scans, Polymer Drawing and annealing of nylon-6 fibres: studies of crystal growth, orientation of amorphous and crystalline domains and their influence on properties, Polymer Une nouvelle contribution à la compréhension de mécanismes de rupture de fibres polyamide 6-6 à usages techniques et textiles Studies on tyre cords: degradation of polyester due to fatigue, Polymer Degradation and Stability Hydrogen bonding in solids. Correlation of spectroscopic and crystallographic data Structure of heat-treated nylon 6 fibers, I. Application of the Arrhenius equation Loading criteria for the fatigue failure of polyamide 6 fibres Structural changes in polyester fibers during fatigue Contribution à l'étude de l'endommagement par fatigue des fibres de polyester à usage technique Effects of structure on the tensile, creep and fatigue properties of polyester fibres Molecular mechanism of plastic deformation of polyethylene Structural model of mechanical properties and failure of crystalline polymer solids with fibrous structure, Cristallisation du PA66 utilisé en filage textile Thèse de Doctorat PA 66 fibres Thèse de DoctoratOUD94] OUDET C., Polymères ? Structure et propriétés: introduction, Masson Nylon 6 fibers : changes in structure between moderate and high draw ratiosREA93] READING M., Modulated differential scanning calorimetry ? a new way forward in materials characterization, Trends in Polymer Science, pp.2117-2123, 1967.

S. D. and M. R. Weigmann-h, Macromolecular order in spin-oriented nylon 6, Journal of Polymer Science B, pp.25-567, 1987.

S. L. Galiotis-c, Fundamentals and applications of micro Raman spectroscopy to strain measurements in fibre reinforced composites, International Materials Reviews, vol.40, issue.3, pp.116-134, 1995.

S. H. Holland-moritz-k, . Dekker, and M. A. Simal, Infrared and Raman spectroscopy of polymers Structure of heat-treated nylon 6 and 6.6 fibers, II. Recrystallization mechanism, Journal of Applied Polymer Science, pp.68-453, 1980.

S. S. Del-zoppo-m and . Zerbi-g, Chain flexibility and non linear optical properties in polyenes within a two-state (VB-CT) model, Chemical Physics, pp.271-127, 2001.

S. M. Miyasaka-k and . Ishikawa-k, Effect of drawing on the melting point and heat of fusion of polyethylene, Journal of Polymer Science, pp.15-837, 1977.

T. M. Kawaguchi-t, Melting of constrained drawn nylon 6 yarns, Journal of Polymer Science, vol.15, pp.1507-1520, 1977.

T. N. Valentini-j, Raman studies of hydrogen bonding in polyamides, Israel Journal of Chemistry, vol.34, pp.89-93, 1994.

V. Assche, G. A. Van-hemelrijck, and R. H. Van-mele-b, Modulated differential scanning calorimetry: non-isothermal cure, vitrification, and devitrification of thermosetting systems, Thermochimica Acta, pp.268-121, 1995.

V. Assche, G. A. Van-hemelrijck, and R. H. Van-mele-b, Modulated differential scanning calorimetry: non-isothermal cure, vitrification, and devitrification of thermosetting systems, Thermochimica Acta, pp.286-209, 1996.

V. J. Bunsell-a, B. C. , H. R. Loading, +. Kautschuk, W. M. Gummi-kunststoffewin91-]-winkler-e et al., An investigation into the fatigue mechanism of PET tire cord in the goodrich block fatigue test Equilibrium melting of flexible linear macromolecules Academic press Deformation processes in poly(ethylene terephtalate) fibers Molecular deformation processes in aromatic high modulus polymer fibres Relationship between structure and mechanical properties for aramid fibres Raman spectroscopy and mechanical properties, in: Characterization of solid polymers Evaluation of composite interfaces using Raman spectroscopy Deformation mechanisms in single polymer fibres, Macromolecular physics, pp.941-944, 1978.