Лазерный синтез функциональных мезоструктур и объемных изделий ИВ Шишковский Издательство ФИЗМАТЛИТ, Москва; ISBN 978-5-9221-1122-5, 2009 | 297* | 2009 |
Manufacturing of fine-structured 3D porous filter elements by selective laser melting I Yadroitsev, I Shishkovsky, P Bertrand, I Smurov Applied Surface Science 255 (10), 5523-5527, 2009 | 291 | 2009 |
Alumina–zirconium ceramics synthesis by selective laser sintering/melting I Shishkovsky, I Yadroitsev, P Bertrand, I Smurov Applied Surface Science 254 (4), 966-970, 2007 | 237 | 2007 |
Direct selective laser melting of nitinol powder I Shishkovsky, I Yadroitsev, I Smurov Physics Procedia 39, 447-454, 2012 | 165 | 2012 |
Porous biocompatible implants and tissue scaffolds synthesized by selective laser sintering from Ti and NiTi IV Shishkovsky, LT Volova, MV Kuznetsov, YG Morozov, IP Parkin Journal of Materials Chemistry 18 (12), 1309-1317, 2008 | 163 | 2008 |
Основы аддитивных технологий высокого разрешения ИВ Шишковский Издательство Питер, СПб, ISBN 978-5-496-02049-7, 2016 | 159* | 2016 |
Regolith-based additive manufacturing for sustainable development of lunar infrastructure–An overview M Isachenkov, S Chugunov, I Akhatov, I Shishkovsky Acta Astronautica 180, 650-678, 2021 | 150 | 2021 |
Direct metal deposition of functional graded structures in Ti-Al system I Shishkovsky, F Missemer, I Smurov Physics Procedia 39, 382-391, 2012 | 117 | 2012 |
Conditions for SHS of intermetallic compounds with selective laser sintering of powdered compositions IV Shishkovskii, AG Makarenko, AL Petrov Combustion, Explosion and Shock Waves 35 (2), 166-170, 1999 | 78* | 1999 |
Characterization of novel lunar highland and mare simulants for ISRU research applications M Isachenkov, S Chugunov, Z Landsman, I Akhatov, A Metke, A Tikhonov, ... Icarus 376, 114873, 2022 | 70 | 2022 |
Selective laser sintering of PZT ceramic powders DM Gureev, RV Ruzhechko, IV Shishkovskii Technical Physics Letters 26, 262-264, 2000 | 68* | 2000 |
Graded layered titanium composite structures with TiB2 inclusions fabricated by selective laser melting I Shishkovsky, N Kakovkina, V Sherbakov Composite Structures 169, 90-96, 2017 | 64 | 2017 |
The synthesis of a biocomposite based on nickel titanium and hydroxyapatite under selective laser sintering conditions IV Shishkovsky, EY Tarasova, LV Zhuravel’, AL Petrov Technical Physics Letters 27, 211-213, 2001 | 63* | 2001 |
Selective laser sintering/melting of nitinol–hydroxyapatite composite for medical applications IV Shishkovskii, IA Yadroitsev, IY Smurov Powder Metallurgy and Metal Ceramics 50, 275-283, 2011 | 57 | 2011 |
Nanofractal surface structure under laser sintering of titanium and nitinol for bone tissue engineering I Shishkovsky, Y Morozov, I Smurov Applied Surface Science 254 (4), 1145-1149, 2007 | 57 | 2007 |
Synthesis of functional gradient parts via RP methods I Shishkovsky Rapid Prototyping Journal 7 (4), 207-211, 2001 | 54 | 2001 |
Nanostructural self-organization under selective laser sintering of exothermic powder mixtures I Shishkovsky, Y Morozov, I Smurov Applied Surface Science 255 (10), 5565-5568, 2009 | 53 | 2009 |
Manufacturing three-dimensional nickel titanium articles using layer-by-layer laser-melting technology IV Shishkovsky, IA Yadroitsev, IY Smurov Technical physics letters 39, 1081-1084, 2013 | 51* | 2013 |
Shape memory effect in porous volume NiTi articles fabricated by selective laser sintering IV Shishkovsky Technical physics letters 31, 186-188, 2005 | 50* | 2005 |
Hybrid anisotropic pentamode mechanical metamaterial produced by additive manufacturing technique K Mohammadi, MR Movahhedy, I Shishkovsky, R Hedayati Applied Physics Letters 117 (6), 2020 | 49 | 2020 |