|
|
Publications in Math-Net.Ru |
Citations |
|
2022 |
1. |
D. D. Kuznetsov, G. A. Shandryuk, V. S. Kalashnikov, V. V. Koledov, V. G. Shavrov, V. A. Andreev, A. V. Nesolenov, M. S. Bybik, “Thermomechanical properties and the effect of heat treatment on the phase transformation of a semi-finished Ni$_{49.9}$Ti$_{50.1}$ alloy microwires with shape memory effect for elastocaloric applications”, Chelyab. Fiz.-Mat. Zh., 7:3 (2022), 384–389 |
|
2021 |
2. |
D. D. Kuznetsov, A. Peláiz-Barranco, G. A. Shandryuk, V. S. Kalashnikov, A. V. Nesolenov, V. V. Koledov, V. G. Shavrov, M. S. Bybik, “Phase transformations and related properties in multifunctional
ceramic materials (Pb,La)(Zr,Ti)O$_3$”, Chelyab. Fiz.-Mat. Zh., 6:4 (2021), 506–511 |
|
2020 |
3. |
A. P. Kamantsev, Yu. S. Koshkid’ko, E. O. Bykov, V. S. Kalashnikov, A. V. Koshelev, A. V. Mashirov, I. I. Musabirov, M. A. Paukov, V. V. Sokolovskiy, “Magnetocaloric and shape memory effects in the Mn$_{2}$NiGa Heusler alloy”, Fizika Tverdogo Tela, 62:5 (2020), 726–731 ; Phys. Solid State, 62:5 (2020), 815–820 |
8
|
4. |
V. S. Kalashnikov, I. I. Musabirov, V. V. Koledov, V. A. Andreev, D. V. Gunderov, V. G. Shavrov, “Functional fatigue of Ni–Mn–Ga and Ni–Ti alloys with the shape memory effect in thermocycling conditions under a constant stress”, Zhurnal Tekhnicheskoi Fiziki, 90:4 (2020), 603–608 ; Tech. Phys., 65:4 (2020), 578–583 |
4
|
|
|
|