1. | Dandekar D.P., Hall C.A., Chhabildas L.C., Reinhart W.D. Shock response of a glass—fiber-reinforced polymer composite // Compos. Struct. 2003. V. 61. P. 51-59. |
2. | Steinberg D.J. Equation of state and strength properties of selected materials // Report Lawrence Livermore National Laboratory. Livermore. CA. No. UСRL-MA-106439. 1991. 20 p. |
3. | Meyers M.A. Dynamic Behavior of Materials. N.Y.: Wiley, 1994. 668 p. |
4. | Munson D.E., May R.P. Dynamically determined high-pressure compressibilities of three epoxy resin systems // J. Appl. Phys. 1972. V. 43. № 3. P. 962-971. |
5. | Millett J.C.F., Bourne N.K., Barnes N.R. The behaviour of an epoxy resin under one-dimensional shock loading // J. Appl. Phys. 2002. V. 92. P. 6590-6594. |
6. | Zhuk A.Z., Kanel G.L, Lash A.A. Glass-epoxy composite behavior under shock loading // J. Phys. IV. 1994. V. 4. P. 403-407. |
7. | Riedel W., Nahme H., Thoma K. Equation of state properties of modern composite materials: modelling shock, release and spallation // Shock Compression of Condensed Matter / Furnish et al. Eds. 2003. Melville, N.Y.: Amer. Inst, of Phys. 2004. P. 701-704. |
8. | Zaretsky E., deBotton G., Perl M. The response of a glass fibers reinforced epoxy composite to an impact loading // Int. J. Solids Struct. 2004. V. 41. P. 569-584. |
9. | Chen J.K., Allahdadi A., Carney T. High-velocity impact of graphite/epoxy composite laminates // Comp. Sci. and Techn. 1997. V. 57. P. 1268-1270. |
10. | Hayhurst C.J., Hiermaier S.J., Clegg R.A., Riedel W., Lambert M. Development of material models for Nextel and Kevlar-epoxy for high pressures and strain rates // Int. J. Impact Engng. 1999. V. 23. № 1. P. 365-376. |
11. | Anderson C.E., O'Donoghue Jr. P.E., Skerhut D. A mixture theory approach for the shock response of composite materials // J. Comp. Materials. 1990. V. 24. P. 1159-1178. |
12. | Anderson C.E., Cox P.A., Johnson G.R., Maudlin P.J. A constitutive formulation for anisotropic materials suitable for wave propagation computer program-II // Comp. Mech. 1994. V. 15. P. 201-223. |
13. | Bordzilovsky S.A., Karakhanov S.M., Merzhievsky L.A. Shock response of a unidirectional composite at various orientations of fibers // Shock Compression of Condensed Matter / Schmidt et al. Eds. Melville, N.Y.: ALP Press, 1998. P. 545-548. |
14. | Hereil P.-L., Allix O., Gratton M. Shock behaviour of 3D carbon—carbon composite // J. Phys. IV. 1997. V. 7. P. 529-534. |
15. | Millett J.C.F., Bourne N.K., Meziere Y.J.E., Vignjevic R., Lukyanov A.A. The effect of orientation on the shock response of a carbon fibre—epoxy composite // Compos. Sci. Technology. 2007. V. 67. № 15-16. P. 3253-3260. |
16. | Lukyanov A.A. Constitutive behaviour of anisotropic materials under shock loading // Int. J. Plasticity. 2008. V. 24. № 1. P. 140-167. |
17. | Lukyanov A.A. Anisotropic materials behaviour modeling under shock loading // Trans. ASME. J. Appl. Mech. 2009. V. 76. 061012. P. 1-9. |
18. | Лукьянов A.A., Пеньков В.Б. О распространении ударных волн в анизотропных материалах // ПММ. 2009. Т. 73. № 4. С. 635-644. |
19. | McQueen R.G., Marsh S.P., Taylor J.W., Fritz J.N., Carter W.J. The equation of state of solids from shock wave studies // High Velocity Impact Phenomena / Ed. R. Kinslow. N.Y.: Acad. Press, 1970. P. 293-416. |
20. | Канель Г.И., Разоренов С.В., Уткин А.В., Фортов В.Е. Ударно-волновые явления в конденсированных средах. М.: Янус-К, 1996. 407 с. |
21. | Лукьянов А.А. Моделирование ударных волн в композиционных материалах // Вестн. Сам ГУ Естеств. сер. 2010. № 2 (76). С. 105-120. |
22. | Lukyanov A.A. An equation of state of a carbon-fibre epoxy composite under shock loading // Eur. Phys. J. B. 2010. V. 74. P. 35-45. |
23. | Ландау Л.Д., Лифщиц Е.М. Теоретическая физика. Т. 3. Механика. М.: Наука, 2004. 224 с. |