The stability of anisotropic cylindrical shells under torsion in spatial position

In the present paper, an infinite system of homogeneous differential equations in the Cauchy normal form was obtained to solve the problem of the stability of cylindrical anisotropic layered shells under the action of external torque, based on the spatial relationship of elasticity theory. The com...

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Main Author: Andrei Podvornyi
Format: Article
Language:English
Published: Warsaw University of Life Sciences 2020-05-01
Series:Acta Scientiarum Polonorum. Architectura
Subjects:
Online Access:http://www.architectura.actapol.net/tom19/zeszyt1/19_1_103.pdf
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spelling doaj-b2e9af76b1a044318ae9ec8fed9c25572020-11-25T03:02:13ZengWarsaw University of Life SciencesActa Scientiarum Polonorum. Architectura1644-06332544-17602020-05-0119110310910.22630/ASPA.2020.19.1.11The stability of anisotropic cylindrical shells under torsion in spatial positionAndrei Podvornyi0https://orcid.org/0000-0001-8518-4395Institute of Building and Architecture, National University of Water and Environmental Engineering, RivneIn the present paper, an infinite system of homogeneous differential equations in the Cauchy normal form was obtained to solve the problem of the stability of cylindrical anisotropic layered shells under the action of external torque, based on the spatial relationship of elasticity theory. The components of the stress state that are necessary to solve the equation system were derived analytically by using the generalised Hooke’s law. The results are obtained for a single-layer cylinder, and compared with the values of critical loads calculated using the well-known method proposed by Lechnitsky. The suggested approach could be implemented, for instance, to solve the problem of cylindrical two-layer shell stability under the action of torque, which is projected by calculating the shear stress.http://www.architectura.actapol.net/tom19/zeszyt1/19_1_103.pdfcylinderstabilityanisotropytorsionspatial formulation
collection DOAJ
language English
format Article
sources DOAJ
author Andrei Podvornyi
spellingShingle Andrei Podvornyi
The stability of anisotropic cylindrical shells under torsion in spatial position
Acta Scientiarum Polonorum. Architectura
cylinder
stability
anisotropy
torsion
spatial formulation
author_facet Andrei Podvornyi
author_sort Andrei Podvornyi
title The stability of anisotropic cylindrical shells under torsion in spatial position
title_short The stability of anisotropic cylindrical shells under torsion in spatial position
title_full The stability of anisotropic cylindrical shells under torsion in spatial position
title_fullStr The stability of anisotropic cylindrical shells under torsion in spatial position
title_full_unstemmed The stability of anisotropic cylindrical shells under torsion in spatial position
title_sort stability of anisotropic cylindrical shells under torsion in spatial position
publisher Warsaw University of Life Sciences
series Acta Scientiarum Polonorum. Architectura
issn 1644-0633
2544-1760
publishDate 2020-05-01
description In the present paper, an infinite system of homogeneous differential equations in the Cauchy normal form was obtained to solve the problem of the stability of cylindrical anisotropic layered shells under the action of external torque, based on the spatial relationship of elasticity theory. The components of the stress state that are necessary to solve the equation system were derived analytically by using the generalised Hooke’s law. The results are obtained for a single-layer cylinder, and compared with the values of critical loads calculated using the well-known method proposed by Lechnitsky. The suggested approach could be implemented, for instance, to solve the problem of cylindrical two-layer shell stability under the action of torque, which is projected by calculating the shear stress.
topic cylinder
stability
anisotropy
torsion
spatial formulation
url http://www.architectura.actapol.net/tom19/zeszyt1/19_1_103.pdf
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