ICF13A

13th International Conference on Fracture June 16–21, 2013, Beijing, China -10- [17] E. Pasternak, A.V. Dyskin, Y. Estrin, Deformations in transform faults with rotating crustal blocks. Pure Appl. Geophys. 163 (2006) 2011-2030. [18] Y. Estrin, A.V. Dyskin, E. Pasternak, S. Schaare, S. Stanchits, A.J. Kanel-Belov, Negative stiffness of a layer with topologically interlocked elements. Scripta Materialia, 50 (2003) 291-294. [19] S. Schaare, A.V. Dyskin, Y. Estrin, S. Arndt, E. Pasternak, A. Kanel-Belov, Point loading of assemblies of interlocked cube-shaped elements. Int. J. Engineering Sciences 46 (2008) 1228–1238. [20] A.V. Dyskin, E. Pasternak, Friction and localisation associated with non-spherical particles, in: S. Bonelli, C. Dascalu, F. Nicot (Eds.) Advances in Bifurcation and Degradation in Geomaterials. Proceedings of the 9th International Workshop on Bifurcation and Degradation in Geomaterials, Springer (2011) pp. 53-58. [21] A.V. Dyskin, E. Pasternak, Rock mass instability caused by incipient block rotation, in: Harmonising Rock Engineering and the Environment, in: Proc. Q. Qian, Y. Zhou (Eds.) 12th International Congress on Rock Mechanics, CRC Press / Balkema (2012) 4pp. [22] A.V. Dyskin, E. Pasternak, Rock and rock mass instability caused by rotation of non-spherical grains or blocks, in: Rock Engineering & Technology for Sustainable Underground Construction. Proc. Eurock 2012, paper 102P. [23] A.V. Dyskin, E. Pasternak, Mechanical effect of rotating non-spherical particles on failure in compression. Phil. Mag. 92 (2012) 3451-3473. DOI: 10.1080/14786435.2012.704421. [24] A.V. Dyskin, E. Pasternak, Bifurcation in rolling of non-spherical grains and fluctuations in macroscopic friction, European Mechanics Society, in: G.A. Holzapfel, R.W. Ogden (Eds.), Proc. ESMC 2012, 8th European Solid Mechanics Conference, Graz, Austria, 2012, 2pp. [25] M.Z. Miskin, H.M. Jaeger, Adapting granular materials through artificial evolution. Nature Materials (2013) 1–6, doi:10.1038/nmat3543. [26] A.V. Dyskin, E. Pasternak, Elastic composite with negative stiffness inclusions in antiplane strain. Intern. J. Engin. Sci. 58 (2012) 45-56. [27] R.S. Lakes, W.J. Drugan, Dramatically stiffer elastic composite materials due to a negative stiffness phase? J. Mech. Phys. Solids 50 (2002) 979-1009. [28] R. McLaughlin, A Study of the Differential Scheme in Composite Materials, Intern. J. Engin. Sci. 15 (1977) 237-244.

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