|
|
|
Библиографический список
|
|
|
1. |
Msekh M. A., Cuong N. H., Zi G., Areias P., Zhuang X., Rabczuk T., “Fracture properties prediction of clay/epoxy nanocomposites with interphase zones using a phase field model”, Engineering Fracture Mechanics, 188 (2018), 287–299 |
2. |
Vu-Bac N., Silani M., Lahmer T., Zhuang X., Rabczuk T., “A unified framework for stochastic predictions of mechanical properties of polymeric nanocomposites”, Computational Materials Science, 96:B (2015), 520–535 |
3. |
Zare Y., Rhee K. Y., Hui D., “Influences of nanoparticles aggregation/agglomeration on the interfacial/interphase and tensile properties of nanocomposites”, Composites Part B: Engineering, 122 (2017), 41–46 |
4. |
Korchagin S. A., Terin D. V., Klinaev Yu. V., “Simulation of a fractal composite and study of its electrical characteristics”, Mat. Mod. Chisl. Met., 2017, no. 13, 22–31 (in Russian) |
5. |
Balagurov B. Ya., “Conduction of the three-dimensional model of a composite with structural anisotropy”, Journal of Experimental and Theoretical Physics, 123:2 (2016), 348–356 |
6. |
Zarubin V. S., Kuvirkin G. N., Savelieva I. Yu., “Evaluation of dielectric permittivity of composite with dispersed inclusions”, Herald of the Bauman Moscow State Technical University. Ser. Instrument Engineering, 2015, no. 3(102), 50–64 (in Russian) |
7. |
Zarubin V. S., Sergeeva E. S., “Application of mathematical modeling to determine the thermoelastic characteristics of nano-reinforced composites”, Math. Models Comput. Simul., 29:10 (2017), 288–298 |
8. |
Aberth O., “Iteration methods for finding all zeros of a polynomial simultaneously”, Mathematics of Computation, 27:122 (1973), 339–344 |
9. |
Kerner I. O., “Ein Gesamtschrittverfahren zur Berechnung der Nullstellen von Polynomen”, Numerische Mathematik, 8 (1966), 290–294 |
10. |
Korchagin S. A., Terin D. V., Romanchuk S. P., “Synergetics of mathematical models for analysis of composite materials”, Izvestiya VUZ. Applied nonlinear dynamics, 23:3 (2015), 55–64 (in Russian) |
11. |
Aleksandrov Y. M., Yatsishen V. V., “Calculation of the elements of the complex dielectric tensor for anisotropic materials”, Physics of Wave Processes and Radio Systems, 18:1 (2015), 23–27 (in Russian) |
12. |
Kasumova R. D., Amirov Sh. Sh., Shamilova Sh. A., “Parametric interaction of optical waves in metamaterials under low-frequency pumping”, Quantum Electronics, 47:7 (2017), 655–660 |
13. |
Toader G., Rusen E., Teodorescu M., Diacon A., Stanescu P. O., Damian C., Rotariu T., Rotariu A., “New polyurea MWCNTs nanocomposite films with enhanced mechanical properties”, J. Appl. Polym. Sci., 134:28 (2017), 45061 pp. |
14. |
Kramer O., Genetic algorithm essentials, Springer, 2017, 94 pp. |
15. |
Huang Yu., Du L., Liu K., Yao X., Risacher Sh. L., Guo L.. Saykin A. J., Shen L., “A Fast SCCA Algorithm for Big Data Analysis in Brain Imaging Genetics”, Graphs in Biomedical Image Analysis, Computational Anatomy and Imaging Genetics, GRAIL 2017, MICGen 2017, MFCA 2017, Lecture Notes in Computer Science, 10551, Springer, Cham, 2017, 210–219 |
16. |
E. D. Palik (ed.), Handbook of optical constants of solids, in 5 vols., v. 3, Academic Press, San Diego, 1997, 999 pp. |
17. |
Romanchuk S. P., Korchagin S. A., Terin D. V., “Simulation of the characteristics of a nanocomposite material with spherical inclusions using the genetic algorithm”, Mathematical Modeling and Computational Methods, 2018, no. 2, 21–31 (in Russian) |