 | | 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 |
Archive of Issues
Total articles in the database: | | 13025 |
In Russian (Èçâ. ÐÀÍ. ÌÒÒ): | | 8110
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In English (Mech. Solids): | | 4915 |
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<< Previous article | Volume 59, Issue 7 / 2024 | Next article >> |
L.V. Fomin, "On the Application of a Fractional-Power Rheological Model in the Study of Creep and Long-Term Failure of a Composite Rod Taking into Account the Non-Classical Diffusion Effect of the Active Medium," Mech. Solids. 59 (7), 3747-3755 (2024) |
Year |
2024 |
Volume |
59 |
Number |
7 |
Pages |
3747-3755 |
DOI |
10.1134/S0025654424606414 |
Title |
On the Application of a Fractional-Power Rheological Model in the Study of Creep and Long-Term Failure of a Composite Rod Taking into Account the Non-Classical Diffusion Effect of the Active Medium |
Author(s) |
L.V. Fomin (Research Institute of Mechanics, Lomonosov Moscow State University, Moscow, 119192 Russia, fleonid1975@mail.ru) |
Abstract |
The article considers the application of a singular fractional-power rheological model in modeling creep and long-term failure of a composite tensile rod in an active medium. The singular fractional-power model contains a natural mechanical characteristic – the short-term strength limit at the corresponding temperature. A rod of rectangular cross-section consists of three parts symmetrically located along the width and connected to each other with ideal adhesion without slipping. An additional factor affecting the studied rod system is the influence of the active medium, and a non-classical diffusion process is considered, taking into account the presence of the medium in the material in both free and bound states. Based on the kinetic theory of Yu.N. Rabotnov with two structural parameters, the resulting system of equations for determining the dependences of stresses and damage on time during creep is obtained. A criterial assessment is proposed for determining the time to failure of both individual parts and the entire considered rod system as a whole. |
Keywords |
fractional-power rheological model, Yu.N. Rabotnov’s kinetic theory, composite stretchable rod, active medium, non-classical diffusion, creep, damage, long-term destruction, destruction criterion |
Received |
13 November 2024 | Revised |
21 November 2024 | Accepted |
22 November 2024 |
Link to Fulltext |
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