A model for steady state stage III creep regime at low-high stress/temperature range

Although diffusional flow creep is often considered out of practical engineering applications, the need for a model capable to account for the resulting action of both diffusional and dislocation type creep is justified by the increasing demands of reliable creep design for very long lives (exceedin...

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Main Authors: Nicola Bonora, Luca Esposito
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2008-07-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:http://www.gruppofrattura.it/pdf/rivista/numero5/numero_5_art_2.pdf
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author Nicola Bonora
Luca Esposito
author_facet Nicola Bonora
Luca Esposito
author_sort Nicola Bonora
collection DOAJ
description Although diffusional flow creep is often considered out of practical engineering applications, the need for a model capable to account for the resulting action of both diffusional and dislocation type creep is justified by the increasing demands of reliable creep design for very long lives (exceeding 100.000h), high stress-low temperatures and high temperature-low stress regimes. In this paper, a creep model formulation, in which the change of the creep mechanism has been accounted for through an explicit dependence of the creep exponent n on stress and temperature, has been proposed. An application example of the proposed approach to high purity aluminum is given.
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institution Kabale University
issn 1971-8993
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series Fracture and Structural Integrity
spelling doaj-art-15754253415f47618340d67c9cf738042025-01-03T00:39:24ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932008-07-01252226A model for steady state stage III creep regime at low-high stress/temperature rangeNicola BonoraLuca EspositoAlthough diffusional flow creep is often considered out of practical engineering applications, the need for a model capable to account for the resulting action of both diffusional and dislocation type creep is justified by the increasing demands of reliable creep design for very long lives (exceeding 100.000h), high stress-low temperatures and high temperature-low stress regimes. In this paper, a creep model formulation, in which the change of the creep mechanism has been accounted for through an explicit dependence of the creep exponent n on stress and temperature, has been proposed. An application example of the proposed approach to high purity aluminum is given.http://www.gruppofrattura.it/pdf/rivista/numero5/numero_5_art_2.pdfcreepdislocationsdiffusionalpure aluminum
spellingShingle Nicola Bonora
Luca Esposito
A model for steady state stage III creep regime at low-high stress/temperature range
Fracture and Structural Integrity
creep
dislocations
diffusional
pure aluminum
title A model for steady state stage III creep regime at low-high stress/temperature range
title_full A model for steady state stage III creep regime at low-high stress/temperature range
title_fullStr A model for steady state stage III creep regime at low-high stress/temperature range
title_full_unstemmed A model for steady state stage III creep regime at low-high stress/temperature range
title_short A model for steady state stage III creep regime at low-high stress/temperature range
title_sort model for steady state stage iii creep regime at low high stress temperature range
topic creep
dislocations
diffusional
pure aluminum
url http://www.gruppofrattura.it/pdf/rivista/numero5/numero_5_art_2.pdf
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AT lucaesposito amodelforsteadystatestageiiicreepregimeatlowhighstresstemperaturerange
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