| |  |  | Mechanics of Solids A Journal of Russian Academy of Sciences
 |  | Founded in January 1966
 Issued 6 times a year
 Print ISSN 0025-6544
 Online ISSN 1934-7936
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| Archive of Issues| Total articles in the database: |  | 13288 |  | In Russian (Èçâ. ÐÀÍ. ÌÒÒ): |  | 8164 
 |  | In English (Mech. Solids): |  | 5124 |  | 
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| << Previous article | Volume 60, Issue 1 / 2025 | Next article >> |  | G.M. Sevastyanov, O.N. Komarov, and A.V. Popov,  "Torsion and Circular Shear Coupling in a Nonlinear Elastic Hollow Cylinder," Mech. Solids. 60 (1), 136-145 (2025) |  | Year | 2025 | Volume | 60 | Number | 1 | Pages | 136-145 |  | DOI | 10.1134/S0025654424605366 |  | Title | Torsion and Circular Shear Coupling in a Nonlinear Elastic Hollow Cylinder |  | Author(s) | G.M. Sevastyanov (Institute of Machinery and Metallurgy FEB RAS, Komsomolsk-on-Amur, 681005 Russia, akela.86@mail.ru) O.N. Komarov (Institute of Machinery and Metallurgy FEB RAS, Komsomolsk-on-Amur, 681005 Russia, olegnikolaevitsch@rambler.ru)
 A.V. Popov (Institute of Machinery and Metallurgy FEB RAS, Komsomolsk-on-Amur, 681005 Russia, popov.av@live.com)
 |  | Abstract | Combined torsional and circular shear of an incompressible nonlinear-elastic right-circular hollow cylinder is studied. A solution of the problem is obtained for an arbitrary elastic potential depending on the first invariant of the left Cauchy–Green deformation tensor solely (generalized neo-Hookean solid). For the Gent material, closed-form analytical solution is obtained. A rotary damper design based on the obtained solution is proposed. Formulas for the dissipation of kinetic energy caused by friction on the cylindrical surfaces of the pipe are derived. For a strain softening material, a numerical solution, which is compared with experimental results, is obtained. |  | Keywords | nonlinear elasticity, torsion, circular shear, Gent material, rotary damper |  | Received | 16 September 2024 | Revised | 20 September 2024 | Accepted | 30 September 2024 |  | Link to Fulltext |  |  | << Previous article | Volume 60, Issue 1 / 2025 | Next article >> |  |  | 
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