Refined Deformation Model for Metal-Composite Plates of Regular Layered Structure in Bending Under Conditions of Steady-State Creep

Author:

Yankovskii A. P.

Publisher

Springer Science and Business Media LLC

Subject

Polymers and Plastics,Mechanics of Materials,Condensed Matter Physics,General Mathematics,Biomaterials,Ceramics and Composites

Reference26 articles.

1. A. N. Andreev and Yu. V. Nemiroskii, Multilayered Anisotropic Shells and Plates. Bending, Stability, and Vibrations [in Russian], Nauka, Novosibirsk (2001).

2. V. V. Pikul’, Mechanics of Shells [in Russian], Vladivistok, Dal’nauka (2009).

3. M. A. Kanibolotskii and Yu. S. Urzhumtsev, Optimum Design of Laminated Structures [in Russian], Nauka, Novosibirsk (1989).

4. Yu. P. Trykov, E. P. Pokataev, V. G. Shmorgun, A. A. Khrapov, Residual Stresses in Laminated Composites [in Russian], Metallurgizdat, Moscow (2010).

5. S. K. Godunov, S. P. Kiselev, I. M. Kulikov, and V. I. Mali, Modeling of Shock-Wave Processes in Elastoplastic Materials on Various (Nuclear, Meso, and Thermodynamic) Structural Levels [in Russian], Institute of Computer Researche, Moscow-Izhevsk (2014).

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1. Buckling of Rectangular Plates under Nonlinear Creep;Advanced Engineering Research (Rostov-on-Don);2023-09-28

2. On the Advances of Computational Nonclassical Continuum Theories of Elasticity for Bending Analyses of Small-Sized Plate-Based Structures: A Review;Archives of Computational Methods in Engineering;2023-02-15

3. Finite-element analysis of plate stability under conditions of nonlinear creep;IOP Conference Series: Materials Science and Engineering;2020-08-01

4. Study of Deformation of Structural Elements as Result of Concrete Creep;VIII International Scientific Siberian Transport Forum;2020

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