Nonclassical models in the shell theory with applications to multilayered nanotubes

Paper


Bauer, Svetlana M., Ermakov, Andrei M., Kashtanova, Stanislava V. and Morozov, Nikita F.. 2011. "Nonclassical models in the shell theory with applications to multilayered nanotubes." Papadrakakis, Manolis, Fragiadakis, Michalis and Plevris, Vagelis (ed.) 3rd ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering (COMPDYN 2011). Corfu, Greece 25 - 28 May 2011 Dordrecht, Netherlands. https://doi.org/10.1007/978-94-007-6573-3
Paper/Presentation Title

Nonclassical models in the shell theory with applications to multilayered nanotubes

Presentation TypePaper
AuthorsBauer, Svetlana M. (Author), Ermakov, Andrei M. (Author), Kashtanova, Stanislava V. (Author) and Morozov, Nikita F. (Author)
EditorsPapadrakakis, Manolis, Fragiadakis, Michalis and Plevris, Vagelis
Journal or Proceedings TitleProceedings of the 3rd ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering (COMPDYN 2011)
ERA Conference ID50332
Number of Pages10
Year2011
Place of PublicationDordrecht, Netherlands
ISBN9789400765726
9789400765733
Digital Object Identifier (DOI)https://doi.org/10.1007/978-94-007-6573-3
Web Address (URL) of Paperhttp://congress.cimne.com/eccomas/proceedings/compdyn2011/compdyn2011_full/105.pdf
Conference/Event3rd ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering (COMPDYN 2011)
Computational Methods in Structural Dynamics & Earthquake Engineering
Event Details
3rd ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering (COMPDYN 2011)
Event Date
25 to end of 28 May 2011
Event Location
Corfu, Greece
Event Details
Computational Methods in Structural Dynamics & Earthquake Engineering
COMPDYN
Abstract

In [1] the stiffness of bridges and cantilevers made of natural chrysotile asbestos nanotubes has been studied by means of scanning probe microscopy. The stiffness is defined as a ratio the value of local load (applied to the tube) to the value of the displacement. The nanotubes with different materials for fillings are analyzed. The experiments show that the stiffness
of the tube depends on the materials for filling. The tubes with water are softer than the tubes without filling materials and the tubes filled with mercury are more rigid than tubes without filling materials. It was shown in [1] that the classical theory of beam bending can not explain
the experimental results, but the experimental results well agree with the Timoshenko-Reissner theory (at least qualitatively), when interlaminar shear modulus of elasticity changes for different filling materials. When additional factors such as lamination of structure and cylindrical anisotropy are taken into account [2] the theory of Rodionova-Titaev-Chernykh (RTC) permits
to obtain much more reliable results. In this work the authors also applied one more nonclassical
shell theory, namely the shell theory of Paliy-Spiro (PS) developed for medium - thickness shells and considered radial pressure. The comparison of nonclassical shell theories (RTC and PS) with experimental data and FEM calculations are presented in the report.

Keywordstheory of anisotropic shells, shell theory of Paliy-Spiro, shell theory of RodionovaTitaev-Chernykh
ANZSRC Field of Research 2020490410. Partial differential equations
401602. Composite and hybrid materials
401707. Solid mechanics
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Byline AffiliationsSaint Petersburg State University, Russia
Institution of OriginUniversity of Southern Queensland
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