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Список литературы
|
|
| |
| 1. |
Griffith A.A., “The Phenomena of Rupture and Flow in Solids”, Trans. Roy. Soc. A, 221 (1921), 163– 198 |
| 2. |
Sator C., Becker W., “Closed-form solutions for stress singularities at plane bi- and trimaterial functions”, Arch. Appl. Mech., 82 (2012), 643–658 |
| 3. |
Irwin G., “Fracture Dynamics”, Fracturing of metals, Am. Soc. for Metals, Cleveland, Ohio, 1948, 147–166 |
| 4. |
Leblond J.B., Frelat J., “Crack kinking from an interface crack with initial contact between the crack lips”, Europ. J. Mech. A. Solids, 20:6 (2001), 937–951 |
| 5. |
Loboda V.V., Sheveleva A.E., “Determing prefracture zones at a crack tip between two elastic orthotropic bodies”, Int. Appl. Mech., 39:5 (2003), 566–572 |
| 6. |
Loeber J.F., Sih G.C., “Transmission of anti-plane shear waves past an interface crack in dissimilar media”, Engineering Fracture Mechanics, 5:3 (1973), 699–725 |
| 7. |
Menshykov O.V., Menshykov M.V., Guz I.A., “3-D elastodynamic contact problem for an interface crack under harmonic loading”, Engineering Fracture Mechanics, 80 (2012), 52–59 |
| 8. |
Menshykov O.V., Menshykov M.V., Guz I.A., “Mickucka D and 3-D contact problems for interface cracks under harmonic loading”, Integral Methods in Science and Engineering, v. 2, eds. Constanda C., Harris P., Birkhauser, Boston, 241–252 |
| 9. |
Menshykov O.V., Menshykov M.V., Guz I.A., “Linear interface crack under plane shear wave”, CMES - Computer Modeling in Engineering & Sciences, 48:2 (2009), 107–120 |
| 10. |
Menshykov O.V., Menshykov M.V., Guz I.A., “Modelling crack closure for an interface crack under harmonic loading”, Int. J. of Fracture, 165:1 (2010), 127–134 |
| 11. |
Menshykov O.V., Menshykov M.V., Guz I.A., “An iterative BEM for the dynamic analysis of interface crack contact problems”, Engineering Analysis with Boundary Elements, 35:5 (2011), 735–749 |
| 12. |
Mikhas'kiv V.V., Butrak I.O., “Stress concentration around a spheroidal crack caused by a harmonic wave incident at an arbitrary angle”, Int. Appl. Mech., 42:1 (2006), 61–66 |
| 13. |
Rice J.R., “Elastic fracture mechanics concepts for interfacial cracks”, Trans. ASME. J. Appl. Mech., 55:1 (1988), 98–103 |
| 14. |
Zhang Ch., Gross D., On wave propagation in elastic solids with cracks, Comp. Mech. Publ., South Hampton, UK–Boston, USA, 1998 |
| 15. |
Морозов Н.Ф., Математические вопросы теории трещин, Наука, М., 1984 [Morozov N.F., Mathematical problems in the theory of cracks, Nauka Publ., M., 1984 (Russian)] |
| 16. |
Черепанов Г.П., Механика хрупкого разрушения, Наука, М., 1974 [Cherepanov G.P., Brittle fracture mechanics, Nauka Publ., M., 1974 (Russian)] |
| 17. |
Kirugulige M.S., Tippur H.V., “Mixed-mode dynamic crack growth in functionally graded glassfilled epoxy”, Exp. Mech., 2006, no. 2, 269–281 |
| 18. |
Huang Y., Gao H., “Intersonic crack propagation - Part II: Suddenly stopping crack”, J. Appl. Mech., 69:1 (2002), 76–80 |
| 19. |
Antipov Y.A., Smirnov A.V., “Subsonic propagation of a crack parallel to the boundary of a half-plane”, Math. Mech. Solids, 2013, no. 2, 153–167 |
| 20. |
Sinclair G.B., “Stress singularities in classical elasticity - I: Removal, Interpretation, and Analysis”, Appl. Mech. Rev., 57:4 (2004), 251–298 |
| 21. |
Sinclair G.B., “tress Singularities in Classical Elasticity - II: Asymptotic Identification”, Appl. Mech. Rev., 57:5 (2004), 385–439 |
| 22. |
Babeshko V.A., Evdokimova O. V., Babeshko O.M., “On the possibility of predicting some types of earthquake by a mechanical approach”, Acta Mechanica, 229:5 (2018), 2163–2175 |
| 23. |
Babeshko V.A., Evdokimova O.V., Babeshko O.M., “On a mechanical approach to the prediction of earthquakes during horizontal motion of lithospheric plates”, Acta Mechanica, 229:11 (2018), 4727–4739 |
| 24. |
Бабешко В.А., Бабешко О.М., Евдокимова О.В., “Об одном новом типе трещин, дополняющих трещины Гриффитса-Ирвина”, Доклады Академии наук, 485:2 (2019), 162–165 ; Babeshko V.A., Babeshko O.M., Evdokimova O.V., “On one new type of cracks supplementing the Griffith-Irwin cracks.”, Dokl. Phys., 2019, no. 64, 102–105 |
| 25. |
Бабешко В.А., Евдокимова О.В., Бабешко О.М., “О влиянии пространственноймо дели литосферных плит на стартовое землетрясение”, Доклады Академии наук, 480:2 (2018), 158–163 ; Babeshko V.A., Evdokimova O.V., Babeshko O.M., “On the influence of the spatial model of lithospheric plates on the starting earthquake.”, Dokl. Phys., 2018, no. 63, 203–207 |
| 26. |
Бабешко В.А., Евдокимова О.В., Бабешко О.М., “Фрактальные свойства блочных элементов и новый универсальный метод моделирования”, Доклады Академии наук, 499:1 (2021), 30–35 [Babeshko V.A., Evdokimova O.V., Babeshko O.M., “Fractal properties of block elements and a new universal modeling method.”, Doklady Akademii nauk, 499:1 (2021), 30–35 (Russian) ] |
| 27. |
Бабешко В.А., Евдокимова О.В., Бабешко О.М., “О стадиях преобразования блочных элементов”, Доклады Академии наук, 468:2 (2016), 154–158 [Babeshko V.A., Evdokimova O.V., Babeshko O.M., “On the stages of transformation of block elements.”, Dokl. Phys., 2016, no. 61, 227–231 ] |
| 28. |
Ворович И.И., Бабешко В.А., Динамические смешанные задачи теории упругости для неклассических областей, Наука, М., 1979 [Vorovich I. I., Babeshko V.A., Dynamic mixed problems of elasticity theory for non-classical domains, Nauka Publ., M., 1979 (Russian) ] |
| 29. |
Нобл Б., Метод Винера-Хопфа, ИЛ, М., 1962 [Noble B., Wiener-Hopf method, Inostrannaya literatura Publ., M., 1962] |