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All articles by "Zarubina O.V."
Stress-strain state analysis of the thin-walled connector housings at their manufacture by the sheet metal plastic deformation
| Authors: Fonarev D.A., Baskakov V.D., Baburin M.A., Zarubina O.V., Tarasov V.A. | Published: 05.11.2023 |
| Published in issue: #11(764)/2023 | |
| Category: Aviation, Rocket and Technology | Chapter: Aircraft Development, Design and Manufacture | |
| Keywords: numerical simulation, stress-strain state, wall thickness variation, drawing in a tool die, rotational drawing |
A Mathematical Model for Calculating the Limiting Drawing Ratio of Cylindrical Parts Drawn from Sheet Blanks of Variable Thickness
| Authors: Baburin M.A., Baskakov V.D., Gerasimov N.V., Zarubina O.V., Tarasov V.A. | Published: 28.04.2018 |
| Published in issue: #4(697)/2018 | |
| Category: Calculation and Design of Machinery | |
| Keywords: sheet workpiece, drawing ratio, limiting drawing ratio, variable thickness workpiece, concave generator, flange displacement |
Determination of the thickness of a composite layer of a spherical shell taking into account the width of a winding ribbon
| Authors: Komkov M.A., Tarasov V.A., Zarubina O.V. | Published: 14.11.2013 |
| Published in issue: #10(643)/2013 | |
| Category: Calculation and Design of Machinery | |
| Keywords: composite spherical shell, multi-zone winding, width of a winding ribbon, thickness of a wound layer |
Numerical simulation of cutting process energypower parameters
| Authors: Glazunov A.V., Zarubina O.V. | Published: 04.11.2013 |
| Published in issue: #7(628)/2012 | |
| Category: Calculation and Design of Machinery | |
| Keywords: cutting tool, cutting process, mathematical simulation, ANSYS, nCode, CATIA v5, correlation, optimization |
Analysis of construction and mass improvement of pressure vessels
| Authors: Komkov M.A., Tarasov V.A., Zarubina O.V. | Published: 16.09.2013 |
| Published in issue: #3(624)/2012 | |
| Category: Calculation and Design of Machinery | |
| Keywords: pressure vessels, cylinders, metal and composite shells, shell form-factor, vessel construction improvement |