A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings

Several methods can be used to estimate elastoplastic (EP) notchtip  stresses and strains from linear elastic calculations, providing EP stress and strain concentration factors. For uniaxial load histories, Neuber’s and Glinka’s rules are perhaps the most used. For non-proportional multiaxial histo...

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Main Authors: Marco Antonio Meggiolaro, Jaime Tupiassú Pinho de Castro, Luiz Fernando Martha, Luiz Fernando Nazaré Marques
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2016-10-01
Series:Frattura ed Integrità Strutturale
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/1779
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spelling doaj-c2d7b0b69a26423ca09464dc8531fa562021-01-27T17:15:44ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932016-10-011038A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadingsMarco Antonio MeggiolaroJaime Tupiassú Pinho de CastroLuiz Fernando MarthaLuiz Fernando Nazaré Marques Several methods can be used to estimate elastoplastic (EP) notchtip  stresses and strains from linear elastic calculations, providing EP stress and strain concentration factors. For uniaxial load histories, Neuber’s and Glinka’s rules are perhaps the most used. For non-proportional multiaxial histories, such corrections require incremental plasticity calculations to correlate stresses and strains at the notch root, a quite challenging task. However, for in-phase proportional multiaxial histories, where the principal directions do not change and the load path in a stress diagram follows a straight line, approximate methods can be used without requiring an incremental approach. Most of these methods are based on Neuber’s rule, so they usually result in conservative predictions, especially in plane strain-dominated cases associated with sharp notches. In this work, a Unified Notch Rule (UNR) is proposed for uniaxial and in-phase proportional multiaxial histories. The UNR can reproduce Neuber’s or Glinka’s rules, interpolate their notch-tip behaviors, or even extrapolate them for notches with increased constraint. Moreover, the UNR also allows a non-zero normal stress perpendicular to the free-surface. The proposed method predictions are compared with elastoplastic Finite Element calculations on notched shafts. https://www.fracturae.com/index.php/fis/article/view/1779Multiaxial fatigueIn-phase proportional loadingsUnified Notch RuleFinite Element
collection DOAJ
language English
format Article
sources DOAJ
author Marco Antonio Meggiolaro
Jaime Tupiassú Pinho de Castro
Luiz Fernando Martha
Luiz Fernando Nazaré Marques
spellingShingle Marco Antonio Meggiolaro
Jaime Tupiassú Pinho de Castro
Luiz Fernando Martha
Luiz Fernando Nazaré Marques
A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
Frattura ed Integrità Strutturale
Multiaxial fatigue
In-phase proportional loadings
Unified Notch Rule
Finite Element
author_facet Marco Antonio Meggiolaro
Jaime Tupiassú Pinho de Castro
Luiz Fernando Martha
Luiz Fernando Nazaré Marques
author_sort Marco Antonio Meggiolaro
title A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
title_short A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
title_full A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
title_fullStr A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
title_full_unstemmed A unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
title_sort unified rule to estimate multiaxial elastoplastic notch stresses and strains under in-phase proportional loadings
publisher Gruppo Italiano Frattura
series Frattura ed Integrità Strutturale
issn 1971-8993
publishDate 2016-10-01
description Several methods can be used to estimate elastoplastic (EP) notchtip  stresses and strains from linear elastic calculations, providing EP stress and strain concentration factors. For uniaxial load histories, Neuber’s and Glinka’s rules are perhaps the most used. For non-proportional multiaxial histories, such corrections require incremental plasticity calculations to correlate stresses and strains at the notch root, a quite challenging task. However, for in-phase proportional multiaxial histories, where the principal directions do not change and the load path in a stress diagram follows a straight line, approximate methods can be used without requiring an incremental approach. Most of these methods are based on Neuber’s rule, so they usually result in conservative predictions, especially in plane strain-dominated cases associated with sharp notches. In this work, a Unified Notch Rule (UNR) is proposed for uniaxial and in-phase proportional multiaxial histories. The UNR can reproduce Neuber’s or Glinka’s rules, interpolate their notch-tip behaviors, or even extrapolate them for notches with increased constraint. Moreover, the UNR also allows a non-zero normal stress perpendicular to the free-surface. The proposed method predictions are compared with elastoplastic Finite Element calculations on notched shafts.
topic Multiaxial fatigue
In-phase proportional loadings
Unified Notch Rule
Finite Element
url https://www.fracturae.com/index.php/fis/article/view/1779
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