Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions

The techniques of modeling of continual fracture process for spatial bodies under long-term static force loading condition in non-homogenous temperature field are presented. The scalar damage parameter is used to describe the material continual fracture process. A stress-strain problem solution made...

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Main Authors: Pyskunov S.O., Maksimyk Yu.V., Valer V.V.
Format: Article
Language:English
Published: Sciendo 2016-04-01
Series:Applied Mathematics and Nonlinear Sciences
Subjects:
Online Access:https://doi.org/10.21042/AMNS.2016.1.00020
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author Pyskunov S.O.
Maksimyk Yu.V.
Valer V.V.
author_facet Pyskunov S.O.
Maksimyk Yu.V.
Valer V.V.
author_sort Pyskunov S.O.
collection DOAJ
description The techniques of modeling of continual fracture process for spatial bodies under long-term static force loading condition in non-homogenous temperature field are presented. The scalar damage parameter is used to describe the material continual fracture process. A stress-strain problem solution made with semianalytic finite element method (SFEM). Results of lifetime determination of responsible parts are presented.
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spelling doaj.art-d8e0ce944e85467bbadf27f9fd4936262022-12-22T03:13:53ZengSciendoApplied Mathematics and Nonlinear Sciences2444-86562016-04-011125326210.21042/AMNS.2016.1.00020Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep ConditionsPyskunov S.O.0Maksimyk Yu.V.1Valer V.V.2Kyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, UkraineKyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, UkraineKyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, UkraineThe techniques of modeling of continual fracture process for spatial bodies under long-term static force loading condition in non-homogenous temperature field are presented. The scalar damage parameter is used to describe the material continual fracture process. A stress-strain problem solution made with semianalytic finite element method (SFEM). Results of lifetime determination of responsible parts are presented.https://doi.org/10.21042/AMNS.2016.1.00020long-term loading conditioncreepdamagecontinual fracturelifetimespatial problemsemianalytic finite element method (sfem)74c1074r9974s0574d10
spellingShingle Pyskunov S.O.
Maksimyk Yu.V.
Valer V.V.
Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
Applied Mathematics and Nonlinear Sciences
long-term loading condition
creep
damage
continual fracture
lifetime
spatial problem
semianalytic finite element method (sfem)
74c10
74r99
74s05
74d10
title Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
title_full Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
title_fullStr Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
title_full_unstemmed Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
title_short Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions
title_sort finite element analysis of influence of non homogenous temperature field on designed lifetime of spatial structural elements under creep conditions
topic long-term loading condition
creep
damage
continual fracture
lifetime
spatial problem
semianalytic finite element method (sfem)
74c10
74r99
74s05
74d10
url https://doi.org/10.21042/AMNS.2016.1.00020
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AT valervv finiteelementanalysisofinfluenceofnonhomogenoustemperaturefieldondesignedlifetimeofspatialstructuralelementsundercreepconditions