| Issue | Title | 
																												
								| No 6 (2024) | THE MARTENSITE STABILIZATION EFFECT IN TITANIUM NICKELIDE AFTER PRELIMINARY DEFORMATION BY COOLING UNDER STRESS IN AN INCOMPLETE TRANSFORMATION INTERVAL |  | 
							
					| Rebrov T.V.,													Volkov A.E.,													Vukolov E.A.,													Belyaev F.S.,													Volkova N.A.,													Evard M.E. | 
						
																										
								| No 2 (2015) | Simulation of stamping workpieces implants process using schemes of severe plastic deformation processes |  | 
							
					| Tarasov A.F.,													Altukhov A.V.,													Sheikin S.E.,													Baitsar V.A. | 
						
																										
								| No 3 (2015) | Researching stages of destruction of titanium alloys during highand gigacycle fatigue by analyzing morphology of fracture surfaces |  | 
							
					| Bannikov M.V.,													Oborin V.A.,													Naimark O.B. | 
						
																										
								| No 2 (2018) | Analysis of stress-strain state of dental implants by the boundary integral equations method |  | 
							
					| Perelmuter M.N. | 
						
																										
								| No 1 (2023) | STRENGTH AND DUCTILITY CHARACTERISTICS OF METAL ALLOYS AND STAINLESS STEELS CREATED BY WIRE-ARC SURFACING IN A WIDE RANGE OF STRAIN RATES |  | 
							
					| Bayandin Y.V.,													Dudin D.S.,													Ilyinykh A.V.,													Permyakov G.L.,													Chudinov V.V.,													Keller I.E.,													Trushnikov D.N. | 
						
																										
								| No 1 (2022) | Two-dimensional model of grain boundary diffusion and oxidation |  | 
							
					| Chepak-Gizbrekht M.V.,													Knyazeva A.G. | 
						
																										
								| No 2 (2021) | Modeling the Mechanical Response of Auxetic Metamaterials to Dynamic Effects |  | 
							
					| Skripnyak V.V.,													Chirkov M.O.,													Skripnyak V.A. | 
						
																										
								| No 2 (2020) | Nonlinear dynamics and stages of damage of Ti6Al4V and Ti45Nb titanium alloys in very high cycle fatigue |  | 
							
					| Bannikov M.V.,													Oborin V.A.,													Bilalov D.A.,													Naimark O.B. | 
						
							
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