Applied Mathematics and Nonlinear Sciences
Journal license

Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 1, Issue 1


Published
on

April 22, 2016


Pages

253-262


DOI

Article

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

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Authors

S.O. Pyskunov Affiliation:
Kyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, Ukraine
, Yu.V. Maksimyk Affiliation:
Kyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, Ukraine
and V.V. Valer Affiliation:
Kyiv National University of Construction and Architecture, 31, Povitroflotskiy Avenue, Kyiv, Ukraine


Abstract

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.


Keywords

long-term loading condition, creep, damage, continual fracture, lifetime, spatial problem, semianalytic finite element method (SFEM), 74C10, 74R99, 74S05, 74D10


Citation

Pyskunov, S., Maksimyk, Y., & Valer, V. (2016). 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, 1(1), 253–262. https://doi.org/10.21042/AMNS.2016.1.00020

Published by: Engineering Journals

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