Finite element modeling of thin-walled shell composite structures

An algorithm for solving the problem of elasticity theory for composite thin-walled shell composite structures with junction lines is proposed. The SMCM software was created based on the finite element method and the developed algorithm. A test problem was solved for a composite shell structural ele...

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Main Authors: Dimitrienko Y., Yurin Yu., Bogdanov I., Maremshaova A.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/13/e3sconf_ersme2023_01038.pdf
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author Dimitrienko Y.
Yurin Yu.
Bogdanov I.
Maremshaova A.
author_facet Dimitrienko Y.
Yurin Yu.
Bogdanov I.
Maremshaova A.
author_sort Dimitrienko Y.
collection DOAJ
description An algorithm for solving the problem of elasticity theory for composite thin-walled shell composite structures with junction lines is proposed. The SMCM software was created based on the finite element method and the developed algorithm. A test problem was solved for a composite shell structural element of the box-plate type docked with 4 other plates. A comparative analysis of the obtained results was carried out with the reference solution of the three-dimensional elasticity problem in the ANSYS software, as well as with the two-dimensional shell solution of the ANSYS software. SMCM PC allows obtaining results that are closer to a three-dimensional solution.
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spelling doaj.art-07b0c95569d04dbba830201dad0981632023-04-07T08:57:40ZengEDP SciencesE3S Web of Conferences2267-12422023-01-013760103810.1051/e3sconf/202337601038e3sconf_ersme2023_01038Finite element modeling of thin-walled shell composite structuresDimitrienko Y.0Yurin Yu.1Bogdanov I.2Maremshaova A.3Bauman Moscow State Technical University 5Bauman Moscow State Technical University 5Bauman Moscow State Technical University 5Bauman Moscow State Technical University 5An algorithm for solving the problem of elasticity theory for composite thin-walled shell composite structures with junction lines is proposed. The SMCM software was created based on the finite element method and the developed algorithm. A test problem was solved for a composite shell structural element of the box-plate type docked with 4 other plates. A comparative analysis of the obtained results was carried out with the reference solution of the three-dimensional elasticity problem in the ANSYS software, as well as with the two-dimensional shell solution of the ANSYS software. SMCM PC allows obtaining results that are closer to a three-dimensional solution.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/13/e3sconf_ersme2023_01038.pdfmodeling of stressescomposite materialsshellfinite element method
spellingShingle Dimitrienko Y.
Yurin Yu.
Bogdanov I.
Maremshaova A.
Finite element modeling of thin-walled shell composite structures
E3S Web of Conferences
modeling of stresses
composite materials
shell
finite element method
title Finite element modeling of thin-walled shell composite structures
title_full Finite element modeling of thin-walled shell composite structures
title_fullStr Finite element modeling of thin-walled shell composite structures
title_full_unstemmed Finite element modeling of thin-walled shell composite structures
title_short Finite element modeling of thin-walled shell composite structures
title_sort finite element modeling of thin walled shell composite structures
topic modeling of stresses
composite materials
shell
finite element method
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/13/e3sconf_ersme2023_01038.pdf
work_keys_str_mv AT dimitrienkoy finiteelementmodelingofthinwalledshellcompositestructures
AT yurinyu finiteelementmodelingofthinwalledshellcompositestructures
AT bogdanovi finiteelementmodelingofthinwalledshellcompositestructures
AT maremshaovaa finiteelementmodelingofthinwalledshellcompositestructures