R. Behnke, T. Berger, and &. M. Kaliske, Numerical modeling of time-and temperature-dependent straininduced crystallization in rubber, International Journal of Solids and Structures, pp.15-34, 2018.

K. Brüning, K. Schneider, S. V. Roth, and &. G. Heinrich, Kinetics of strain-induced crystallization in natural rubber: A diffusion-controlled rate law, Polymer, vol.72, pp.52-58, 2015.

N. Candau, R. Laghmach, L. Chazeau, J. Chenal, C. Gauthier et al., Strain-Induced Crystallization of Natural Rubber and Cross-Link Densities Heterogeneities, Macromolecules, vol.47, issue.16, pp.5815-5824, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01808042

A. Chrysochoos, V. Huon, F. Jourdan, J. Muracciole, R. Peyroux et al., Use of full-field digital image correlation and infrared thermography measurements for the thermomechanical analysis of material behaviour, Strain, vol.46, pp.117-130, 2010.

E. Ducrot, Y. Chen, M. Bulters, R. P. Sijbesma, and &. C. Creton, Toughening elastomers with sacrificial bonds and watching them break, Science, vol.344, issue.6180, pp.186-189, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01516045

P. Germain, Q. S. Nguyen, and &. P. Suquet, Continuum Thermodynamics. Journal of Applied Mechanics, vol.59, issue.4b, pp.1010-1020, 1983.

A. Gros, B. Huneau, E. Verron, and &. M. Tosaka, A physically-based model for strain-induce d crystallization in natural rubber. Part I: Life cycle of a crystallite, Journal of the Mechanics and Physics of Solids, vol.125, pp.164-177, 2019.

A. Gros, M. Tosaka, B. Huneau, E. Verron, S. Poompradub et al., Dominating Factor of Strain-induced Crystallization in Natural Rubber, Polymer, vol.76, pp.230-236, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01276181

J. D. Hoffman and . Lauritzen, Crystallization of Bulk Polymers With Chain Folding: Theory of Growth of Lamellar Spherulites, Journal of Research of the National Bureau of Standards-A. Physics and Chemistry, vol.65, issue.4, pp.297-336, 1961.

G. Holzapfel, Non linear solid mechanics -a continuum approach for engineering, 2000.

V. N. Khiêm and . Itskov, Analytical network-averaging of the tube model: Rubber elasticity, Journal of the Mechanics and Physics of Solids, vol.95, pp.254-269, 2016.

V. N. Khiêm and . Itskov, An averaging based tube model for deformation induced anisotropic stress softening of filled elastomers, International Journal of Plasticity, vol.90, pp.96-115, 2017.

V. N. Khiêm and . Itskov, Analytical networkaveraging of the tube model: Mechanically induced chemiluminescence in elastomers, International Journal of Plasticity, vol.102, pp.1-15, 2018.

V. N. Khiêm and . Itskov, Analytical networkaveraging of the tube model: Strain-induced crystallization in natural rubber, Journal of the Mechanics and Physics of Solids, vol.116, pp.350-369, 2018.

R. Laghmach, N. Candau, L. Chazeau, and &. E. Munch, Phase field modelling of strain induced crystal growth in an elastic matrix, The Journal of Chemical Physics, vol.142, p.244905, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01804755

,. Leâ-cam, Strain-induced crystallization in rubber: A new measurement technique, Strain, vol.54, issue.1, p.12256, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01695571

,. Le-cam, J. R. Martinez, X. Balandraud, E. Toussaint, and &. J. Caillard, Thermomechanical Analysis of the Singular Behavior of Rubber: Entropic Elasticity, Reinforcement by Fillers, Strain-Induced Crystallizaation and the Mullins Effect, Experimental Mechanics, vol.55, issue.4, pp.771-782, 2015.

,. Le-cam and . Toussaint, Volume Variation in Stretched Natural Rubber: Competition between Cavitation and Stress-Induced Crystallization, Macromolecules, vol.41, pp.7579-7583, 2008.
URL : https://hal.archives-ouvertes.fr/hal-01131586

D. Liu, N. Tian, N. Huang, K. Cui, Z. Wang et al., Extension-induced nucleation under near-equilibrium conditions: The mechanism on the transition from point nucleus to shish, Macromolecules, vol.47, pp.6813-6823, 2014.

J. &. Plagge and . Klüppel, A Theory Relating Crystal Size, Mechanical Response, and Degree of Crystallization in Strained Natural Rubber, Macromolecules, vol.51, issue.10, pp.3711-3721, 2018.

J. R. Samaca-martinez, J. Cam, X. Balandraud, E. Toussaint, and &. J. Caillard, Mechanisms of deformation in crystallizable natural rubber. Part 1: Thermal characterization, Polymer, vol.54, issue.11, pp.2717-2726, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01131576

J. R. Samaca-martinez, J. Cam, X. Balandraud, E. Toussaint, and &. J. Caillard, Mechanisms of deformation in crystallizable natural rubber. Part 2: Quantitative calorimetric analysis, Polymer, vol.54, issue.11, pp.2727-2736, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01131576

S. Toki, I. Sics, S. Ran, L. Liu, B. S. Hsiao et al., New insights into structural development in natural rubber during uniaxial deformation by in situ synchrotron X-ray diffraction, Macromolecules, vol.35, issue.17, pp.6578-6584, 2002.