Mechanics of Solids (about journal) Mechanics of Solids
A Journal of Russian Academy of Sciences
 Founded
in January 1966
Issued 6 times a year
Print ISSN 0025-6544
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IssuesArchive of Issues2022-2pp.254-262

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V. P. Radchenko, V. V. Tsvetkov, and M. N. Saushkin, "Method for Calculating Relaxation of Residual Stresses in a Surface-Hardened Rotating RodUnder Creep Conditions with Constraints on Linear and Angular Displacements," Mech. Solids. 57 (2), 254-262 (2022)
Year 2022 Volume 57 Number 2 Pages 254-262
DOI 10.3103/S0025654422020200
Title Method for Calculating Relaxation of Residual Stresses in a Surface-Hardened Rotating RodUnder Creep Conditions with Constraints on Linear and Angular Displacements
Author(s) V. P. Radchenko (Samara State Technical University, Samara, 443100 Russia, radchenko.vp@samgtu.ru)
V. V. Tsvetkov (Samara State Technical University, Samara, 443100 Russia, vi.v.tsvetkoff@gmail.com)
M. N. Saushkin (Samara State Technical University, Samara, 443100 Russia, saushkin.mn@samgtu.ru)
Abstract A method for solving the boundary value problem on relaxation of residual stresses in a surface-hardened rotating cylindrical rod under creep conditions with rigidly fixed and initially given axial and angular displacements has been developed. The solution has been obtained by using a method for reconstructing the fields of residual stresses and plastic deformations after surface plastic deformation and a method for calculating the relaxation of induced residual stresses during creep with constraints on axial and angular displacements at the free end of the rod. A detailed study of the kinetics of residual stresses depending on the values of the initially given axial and angular displacements and the angular velocity of rotation has been carried out using model examples for rods made of ZhS6KP alloy at a temperature of 900°C. It is shown that there is a weak influence of the number of revolutions on the stress-strain state in the hardened layer with respect to a non-rotating rod.
Keywords residual stresses, surface plastic hardening, rotating rod, initial axial and angular displacements, rigid fixing, creep, relaxation
Received 24 October 2021Revised 26 October 2021Accepted 27 October 2021
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