ICF13B

13th International Conference on Fracture June 16–21, 2013, Beijing, China -10- [3] J. Fineberg, S.P. Gross, M. Marder, and H.L. Swinney, Instability in the propagation of fast cracks. Phys. Rewiew B 45 (1992) 5146-5154. [4] Yu.A. Kostandov, A.N. Ryzhakov, and S.I. Fedorkin, Failure of solid polymers under pulse tension. Strength of Mater 42 (1992) 444-447. [5] I.V. Smirnov, Yu.V. Sud’enkov, Crack dynamics in PMMA plates under quasi-static and dynamic loading. Technical Physics 56 (2011) 1811-1814. [6] J.F. Kalthoff, The shadow optical method of caustics, in: A.S. Kobayashi (Ed), Handbook on Experimental Mechanics, Prentice Hall, Englewood Cliffs, New Jersey, 1986. [7] R.P. Kusy and D.T. Turner, Influence of the molecular weight of PMMA on fracture morphology in notched tension. Polymer 18 (1976) 391-402. [8] J.P., Berry, The morphology of polymer fracture surfaces. J. of Polymer Sci. C 3 (1963) 91-101. [9] Yu.A. Kostandov and S. I. Fedorkin, Micromechanics of fracture of solid polymers in dynamic loading. Strength of Materials 22 (1990) 257-262. [10] K. Ravi-Chandar and W.G. Knauss, An experimental investigation into dynamic fracture: II. Microstructural aspects. Int. J. of Fract. 26 (1984) 65-80 [11] O.B. Naimark, V.A. Barannikov, et al. Crack propagation: dynamic stochasticity and scaling. Tech. Phys. Lett. 26 (2000), p. 254. [12] A.M. Leskovskii and B.L. Baskin, Some aspects of nucleation and evolution of microscopic and mesoscopic cracks and quasi-brittle fracture of homogeneous materials. Phys. Solid State 53 (2011) 1223-1233.

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