Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity

The article describes an algorithm for calculating an axisymmetrically loaded shell structure with a branching meridian, taking into account elastic-plastic deformations when loading based on the deformation theory of plasticity without assuming that the material is incompressible during plastic def...

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Main Authors: Dzhabrailov Arsen, Nikolaev Anatoly, Gureeva Natalya
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00199/bioconf_fies2020_00199.html
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author Dzhabrailov Arsen
Nikolaev Anatoly
Gureeva Natalya
author_facet Dzhabrailov Arsen
Nikolaev Anatoly
Gureeva Natalya
author_sort Dzhabrailov Arsen
collection DOAJ
description The article describes an algorithm for calculating an axisymmetrically loaded shell structure with a branching meridian, taking into account elastic-plastic deformations when loading based on the deformation theory of plasticity without assuming that the material is incompressible during plastic deformations. The correct relations which determine the static conjugation conditions of several revolution shells in the joint assembly are used. A comparative analysis of finite element solutions is presented for various options plasticity matrix development at the loading stage.
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spelling doaj.art-28ce0b4cad2545e982bb21b6904b6e382022-12-21T23:47:37ZengEDP SciencesBIO Web of Conferences2117-44582020-01-01170019910.1051/bioconf/20201700199bioconf_fies2020_00199Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearityDzhabrailov ArsenNikolaev AnatolyGureeva NatalyaThe article describes an algorithm for calculating an axisymmetrically loaded shell structure with a branching meridian, taking into account elastic-plastic deformations when loading based on the deformation theory of plasticity without assuming that the material is incompressible during plastic deformations. The correct relations which determine the static conjugation conditions of several revolution shells in the joint assembly are used. A comparative analysis of finite element solutions is presented for various options plasticity matrix development at the loading stage.https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00199/bioconf_fies2020_00199.html
spellingShingle Dzhabrailov Arsen
Nikolaev Anatoly
Gureeva Natalya
Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
BIO Web of Conferences
title Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
title_full Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
title_fullStr Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
title_full_unstemmed Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
title_short Calculation of thin-walled axisymmetrically loaded structures of the AIC taking into account FEM-based physical nonlinearity
title_sort calculation of thin walled axisymmetrically loaded structures of the aic taking into account fem based physical nonlinearity
url https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00199/bioconf_fies2020_00199.html
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AT nikolaevanatoly calculationofthinwalledaxisymmetricallyloadedstructuresoftheaictakingintoaccountfembasedphysicalnonlinearity
AT gureevanatalya calculationofthinwalledaxisymmetricallyloadedstructuresoftheaictakingintoaccountfembasedphysicalnonlinearity