Computer modeling of compression for large cell spatially reinforced composite specimen enclosed in~the ring for
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 3 (2011), pp. 176-180.

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Article is dedicated to numerical simulation of compression test of the prismatic specimen of the spatially reinforced composite material in which the mechanisms leading to collapse of basic surfaces are weakened. It is shown that areas of the maximum stresses settle down in a working part of the specimen, initiating macrodestruction by a cut. The structural-phenomenological approach is applied to the description of deformation and fracture of the specimen.
Keywords: spatially reinforced composite materials, structural-phenomenological approach, numerical simulation.
Mots-clés : compression test
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I. Yu. Osheva; V. E. Shavshukov. Computer modeling of compression for large cell spatially reinforced composite specimen enclosed in~the ring for. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 3 (2011), pp. 176-180. http://geodesic.mathdoc.fr/item/VSGTU_2011_3_a20/

[1] Tarnopolskiy Yu. M., Zhigun I. G., Polyakov V. A., Spatially Reinforced Composite Materials, Mashinostroenie, Moscow, 1987, 224 pp.

[2] Sokolkin Yu. V, Votinov A. M, Tashkinov A. A, Postnyh A. M., Chekalkin A. A., Technology and Design of Carbon-Carbon Composites and Constructions, Nauka, Fizmatlit, Moscow, 1996, 240 pp.

[3] Zweben Ed C., Tsai S.W., Comprehensive Composite Materials, v. 4, Carbon/Carbon, Cement, and Ceramic Matrix Composites, Elsevier Science Ltd, Oxford, 2000, 622 pp.

[4] Osheva I. Yu., Tashkinov A. A., Shavshukov V. E., “Edge effects for large cell spatially reinforced bodies in the form of a direct parallelepiped”, Mehanika mikronyeodnorodnyh materialov i razrushenie, IMASH UrO RAN, Ekaterinburg, 2010, 80

[5] Sokolkin Yu. V., Tashkinov A. A., Deformation and Fracture Mechanics of Structurally Inhomogeneous Bodies, Nauka, Moscow, 1984, 115 pp.