Zobrazeno 1 - 10
of 25
pro vyhledávání: '"Yulia O. Kuzminova"'
Autor:
Timur Chepiga, Petr Zhilyaev, Alexander Ryabov, Alexey P. Simonov, Oleg N. Dubinin, Denis G. Firsov, Yulia O. Kuzminova, Stanislav A. Evlashin
Publikováno v:
Materials, Vol 16, Iss 3, p 1050 (2023)
Additive manufacturing is a modern technique to produce parts with a complex geometry. However, the choice of the printing parameters is a time-consuming and costly process. In this study, the parameter optimization for the laser powder bed fusion pr
Externí odkaz:
https://doaj.org/article/866e2ca1fbff408ba502055b55673ac1
Autor:
Aleksandr M. Filimonov, Oleg A. Rogozin, Oleg N. Dubinin, Yulia O. Kuzminova, Anastasia A. Shibalova, Ilya V. Okulov, Iskander S. Akhatov, Stanislav A. Evlashin
Publikováno v:
Materials, Vol 14, Iss 18, p 5190 (2021)
The superimposed magnetic field affects the microstructure and mechanical properties of additively manufactured metal parts. In this work, the samples were fabricated from Inconel 718 superalloy by directed energy deposition under a 0.2 T static fiel
Externí odkaz:
https://doaj.org/article/1411ed08bbdc42bba95f6fdb3126e40d
Autor:
Aleksandr M. Filimonov, Oleg A. Rogozin, Denis G. Firsov, Yulia O. Kuzminova, Semen N. Sergeev, Alexander P. Zhilyaev, Marat I. Lerner, Nikita E. Toropkov, Alexey P. Simonov, Ivan I. Binkov, Ilya V. Okulov, Iskander S. Akhatov, Stanislav A. Evlashin
Publikováno v:
Materials, Vol 14, Iss 1, p 115 (2020)
The particle size distribution significantly affects the material properties of the additively manufactured parts. In this work, the influence of bimodal powder containing nano- and micro-scale particles on microstructure and materials properties is
Externí odkaz:
https://doaj.org/article/02c6a04591764e21a8ae809837ca5737
Autor:
Marina O. Gushchina, Yulia O. Kuzminova, Oleg N. Dubinin, Stanislav A. Evlashin, Arthur M. Vildanov, Olga G. Klimova-Korsmik, Gleb A. Turichin
Publikováno v:
The International Journal of Advanced Manufacturing Technology. 124:907-918
Autor:
Stanislav A. Evlashin, Yulia O. Kuzminova, Denis G. Firsov, Oleg N. Dubinin, Oleg A. Rogozin, Mikhail V. Perevozchikov, Iskander S. Akhatov
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::fa2c644b84a8faf1794840282131b14a
https://doi.org/10.2139/ssrn.4328101
https://doi.org/10.2139/ssrn.4328101
Autor:
Konstantin Babkin, Yulia O. Kuzminova, Valentina Andreeva, Stanislav A. Evlashin, Marina Gushchina, Evgeniy Zemlyakov, Egor A. Kudryavtsev
Publikováno v:
Journal of Materials Engineering and Performance. 31:2783-2791
Direct energy deposition (DED) is an additive manufacturing method that allows repairing the broken parts and building the meter-scale samples. However, the printing of large parts is associated with huge residual stresses and martensite phase format
Autor:
Marina Gushchina, Yulia O. Kuzminova, Oleg N. Dubinin, Stanislav A. Evlashin, Arthur M. Vildanov, Olga G. Klimova-Korsmik, Gleb A. Turichin
Titanium alloys are one of the most used materials in the medicine, aviation and automotive industry. However, Ti-alloys usually possess poor impact characteristics. One of the possible ways to overcome this problem is to develop graded materials wit
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::42c94a9d47f3014a3e5c325242a9bc25
https://doi.org/10.21203/rs.3.rs-1908783/v1
https://doi.org/10.21203/rs.3.rs-1908783/v1
Autor:
Yulia O. Kuzminova, Oleg N. Dubinin, Marina O. Gushchina, Alexey P. Simonov, Stepan D. Konev, Aigul A. Sarkeeva, Alexander P. Zhilyaev, Stanislav A. Evlashin
Publikováno v:
Materialia. 27:101684
Autor:
Yulia O. Kuzminova, Denis G. Firsov, Anastasia A. Shibalova, Stanislav A. Evlashin, Igor V. Shishkovsky, Stanislav S. Dautov
Publikováno v:
Micron. 166:103399
Autor:
Alexander G. Kvashnin, Yulia O. Kuzminova, Stanislav A. Evlashin, Alexander V. Egorov, Timur Aslyamov, Sarkis A. Dagesyan, Julia Bondareva, Yuri A. Mankelevich, M.A. Tarkhov, Pavel Dyakonov, Iskander Akhatov, Ekaterina N. Voronina, Nikolay V. Suetin, R. A. Khmelnitsky
Publikováno v:
ACS Sustainable Chemistry & Engineering. 8:14006-14012
Future decades will experience tons of silicon waste from various sources, with no reliable recycling route. The transformation of bulk silicon into SiO2 nanoparticles is environmentally significant because it provides a way to recycle residual silic