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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
A. M. Lokoshchenko, L. V. Fomin, P. M. Tretyakov, D. D. Makhov, “Creep and long-term strength of hydrogen-containing VT6 titanium alloy with a piecewise constant dependence of tensile stress on time”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 27:1 (2023), 179–188 |
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2022 |
2. |
A. M. Lokoshchenko, L. V. Fomin, A. F. Akhmetgaleev, D. D. Makhov, “Creep and long-term fracture of a narrow rectangular membrane inside a rigid low matrix with proportional dependence on the transverse pressure on time”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 26:4 (2022), 715–737 |
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2021 |
3. |
A. M. Lokoshchenko, L. V. Fomin, Yu. G. Basalov, “Steady-state creep of a long narrow membrane inside a high rigid matrix at variable lateral pressure”, Prikl. Mekh. Tekh. Fiz., 62:6 (2021), 108–118 ; J. Appl. Mech. Tech. Phys., 62:6 (2021), 981–990 |
4. |
A. M. Lokoshchenko, L. V. Fomin, Yu. G. Basalov, P. M. Tretyakov, “Creep and long-term fracture of a narrow rectangular membrane
inside a high rigid matrix with proportional dependence on the transverse pressure on time”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 25:4 (2021), 676–695 |
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2020 |
5. |
A. M. Lokoshchenko, W. V. Teraud, E. A. Shevarova, “The steady-state creep of long membrane in a rigid matrix at a variable transverse pressure”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 24:3 (2020), 445–468 |
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6. |
A. M. Lokoshchenko, L. V. Fomin, W. V. Teraud, Yu. G. Basalov, V. S. Agababyan, “Creep and long-term strength of metals under unsteady complex stress states (Review)”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 24:2 (2020), 275–318 |
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2019 |
7. |
A. M. Lokoshchenko, E. A. Abrosimova, “Steady-state creep of a long membrane in a rigid matrix with a piece-constant dependence of the rate of change in transverse pressure versus time”, Prikl. Mekh. Tekh. Fiz., 60:1 (2019), 103–113 ; J. Appl. Mech. Tech. Phys., 60:1 (2019), 87–96 |
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8. |
A. M. Lokoshchenko, L. V. Fomin, Yu. G. Basalov, V. S. Agababyan, “Simulation of metal creep in nonstationary complex stress state”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 23:1 (2019), 69–89 |
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2016 |
9. |
A. M. Lokoshchenko, L. V. Fomin, “Influence of the cross-sectional shape of tensile bars on their creep rupture strength in an aggressive environment”, Prikl. Mekh. Tekh. Fiz., 57:5 (2016), 35–44 ; J. Appl. Mech. Tech. Phys., 57:5 (2016), 792–800 |
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2014 |
10. |
A. M. Lokoshchenko, “Results of studying creep and long-term strength of metals at the Institute of Mechanics at the Lomonosov Moscow State University (to Yu. N. Rabotnov’s anniversary)”, Prikl. Mekh. Tekh. Fiz., 55:1 (2014), 144–165 ; J. Appl. Mech. Tech. Phys., 55:1 (2014), 118–135 |
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11. |
A. M. Lokoshchenko, D. A. Kulagin, “Diffusion locking effect on long-term strength”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2014, no. 5, 65–68 ; Moscow University Mechanics Bulletin, 69:5 (2014), 123–125 |
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2013 |
12. |
A. M. Lokoshchenko, W. V. Teraud, “Creep of a long narrow membrane up to fracture under constrained conditions”, Prikl. Mekh. Tekh. Fiz., 54:3 (2013), 126–133 ; J. Appl. Mech. Tech. Phys., 54:3 (2013), 451–457 |
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13. |
N. A. Veklich, A. M. Lokoshchenko, “Distribution of random slip-line directions under inelastic deformation”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2013, no. 4, 55–57 ; Moscow University Mechanics Bulletin, 68:4 (2013), 94–96 |
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2012 |
14. |
A. M. Lokoshchenko, “Application of kinetic theory to the analysis of high-temperature creep rupture of metals under complex stress (review)”, Prikl. Mekh. Tekh. Fiz., 53:4 (2012), 149–164 ; J. Appl. Mech. Tech. Phys., 53:4 (2012), 599–610 |
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15. |
A. M. Lokoshchenko, K. A. Agahi, L. V. Fomin, “Pure bending of beams made of multimodular behavior material under creep conditions”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 1(26) (2012), 66–73 |
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2009 |
16. |
A. M. Lokoshchenko, “The equivalent stresses at calculation of creep rupture of metals under complex stress state (review)”, Izv. Saratov Univ. Math. Mech. Inform., 9:4(2) (2009), 128–135 |
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17. |
A. M. Lokoshchenko, V. V. Nazarov, “Long-term strength of metals under an equiaxial plane stress state”, Prikl. Mekh. Tekh. Fiz., 50:4 (2009), 150–157 ; J. Appl. Mech. Tech. Phys., 50:4 (2009), 670–676 |
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2007 |
18. |
N. A. Veklich, A. M. Lokoshchenko, P. N. Veklich, “Modeling the deformability of a material”, Prikl. Mekh. Tekh. Fiz., 48:5 (2007), 183–188 ; J. Appl. Mech. Tech. Phys., 48:5 (2007), 774–778 |
19. |
A. M. Lokoshchenko, V. V. Nazarov, “Modeling the effect of diffusion of the ambient medium on the long-term strength of a hollow cylinder under uniaxial tension”, Prikl. Mekh. Tekh. Fiz., 48:4 (2007), 88–93 ; J. Appl. Mech. Tech. Phys., 48:4 (2007), 542–546 |
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1984 |
20. |
M. D. Dacheva, A. M. Lokoshchenko, S. A. Shesterikov, “Model representation of the ultimate strain during creep”, Prikl. Mekh. Tekh. Fiz., 25:4 (1984), 139–142 ; J. Appl. Mech. Tech. Phys., 25:4 (1984), 632–635 |
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1982 |
21. |
A. M. Lokoshchenko, “Investigation of material damage under creep and creep strength”, Prikl. Mekh. Tekh. Fiz., 23:6 (1982), 129–133 ; J. Appl. Mech. Tech. Phys., 23:6 (1982), 855–859 |
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22. |
A. M. Lokoshchenko, S. A. Shesterikov, “Problem of estimating the creep strength under step loading”, Prikl. Mekh. Tekh. Fiz., 23:2 (1982), 139–143 ; J. Appl. Mech. Tech. Phys., 23:2 (1982), 289–292 |
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23. |
A. M. Lokoshchenko, S. A. Shesterikov, “Creep strength model with nonmonotonic dependence of the strain during rupture on the stress”, Prikl. Mekh. Tekh. Fiz., 23:1 (1982), 160–163 ; J. Appl. Mech. Tech. Phys., 23:1 (1982), 151–153 |
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1980 |
24. |
A. M. Lokoshchenko, S. A. Shesterikov, “Method for description of creep and long-term strength with pure elongation”, Prikl. Mekh. Tekh. Fiz., 21:3 (1980), 155–159 ; J. Appl. Mech. Tech. Phys., 21:3 (1980), 414–417 |
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