1. 5) Cantournet, S., Desmorat, R. and Besson, J. : Mullins effect and cyclic stress softening of filled elastomers by internal sliding and friction thermodynamics model, Int. J. Solids, Struct., Vol. 46, pp. 2255-2264, 2009.
2. 6) Arruda, E. M. and Boyce, M. C. : A three-dimensional constitutive model for the large stretch behavior of rubber elastic materials, J. Mech. Phys. Solids, Vol. 41, pp. 389-412, 1993.
3. 7) Ogden, R. W. and Roxburgh, D. G. : A pseudo-elastic model for the Mullins effect in filled rubber, Proceedings of the Royal Society of London, Series A, Vol. 455, pp. 2861-2877, 1999.
4. 8) Diani, J., Fayolle, B. and Gilormini, P. : A review on the Mullins effect, European Polymer Journal, pp. 601-612, 2009.
5. 9) Mai, T-T., Morishita, Y. and Urayama, K. : Novel features of the Mullins effect in filled elastomers revealed by stretching measurements in various geometries, Soft Mater., Vol. 13, pp. 1966-1977, 2017.