Fatigue assessment by energy approach during tensile tests on AISI 304 steel

Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic of great interest to researchers today. In recent years, the method adopted has implemented infrared sensors to detect the surface temperature and correlate it with the fatigue limit. In previous pa...

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Main Authors: A. Risitano, D. Corallo, E. Guglielmino, G. Risitano, L. Scappaticci
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2016-12-01
Series:Frattura ed Integrità Strutturale
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/1833
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spelling doaj-499d5f57bf0b40e6882a039e367253972021-01-27T17:15:28ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932016-12-011139Fatigue assessment by energy approach during tensile tests on AISI 304 steelA. RisitanoD. CoralloE. GuglielminoG. RisitanoL. Scappaticci Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic of great interest to researchers today. In recent years, the method adopted has implemented infrared sensors to detect the surface temperature and correlate it with the fatigue limit. In previous paper, a new energy approach was proposed to investigate the fatigue limit during tensile test. The numerical procedure proposed by Chrysochoos is adopted to clean infrared images and applied to analyse the surface heat sources during tensile test. AISI 304 specimens with rectangular cross-sections are tested. Moreover fatigue tests at increasing loads were carried out on steel by a stepwise succession, applied to the same specimen, for applying the thermographic method. The predictions of the fatigue limit, obtained by the analysis of the energy evolution during the static tests, were compared with the predictions obtained applying the thermographic method during fatigue tests. https://www.fracturae.com/index.php/fis/article/view/1833Fatigue LimitMono Axial Static TestThermographic Method
collection DOAJ
language English
format Article
sources DOAJ
author A. Risitano
D. Corallo
E. Guglielmino
G. Risitano
L. Scappaticci
spellingShingle A. Risitano
D. Corallo
E. Guglielmino
G. Risitano
L. Scappaticci
Fatigue assessment by energy approach during tensile tests on AISI 304 steel
Frattura ed Integrità Strutturale
Fatigue Limit
Mono Axial Static Test
Thermographic Method
author_facet A. Risitano
D. Corallo
E. Guglielmino
G. Risitano
L. Scappaticci
author_sort A. Risitano
title Fatigue assessment by energy approach during tensile tests on AISI 304 steel
title_short Fatigue assessment by energy approach during tensile tests on AISI 304 steel
title_full Fatigue assessment by energy approach during tensile tests on AISI 304 steel
title_fullStr Fatigue assessment by energy approach during tensile tests on AISI 304 steel
title_full_unstemmed Fatigue assessment by energy approach during tensile tests on AISI 304 steel
title_sort fatigue assessment by energy approach during tensile tests on aisi 304 steel
publisher Gruppo Italiano Frattura
series Frattura ed Integrità Strutturale
issn 1971-8993
publishDate 2016-12-01
description Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic of great interest to researchers today. In recent years, the method adopted has implemented infrared sensors to detect the surface temperature and correlate it with the fatigue limit. In previous paper, a new energy approach was proposed to investigate the fatigue limit during tensile test. The numerical procedure proposed by Chrysochoos is adopted to clean infrared images and applied to analyse the surface heat sources during tensile test. AISI 304 specimens with rectangular cross-sections are tested. Moreover fatigue tests at increasing loads were carried out on steel by a stepwise succession, applied to the same specimen, for applying the thermographic method. The predictions of the fatigue limit, obtained by the analysis of the energy evolution during the static tests, were compared with the predictions obtained applying the thermographic method during fatigue tests.
topic Fatigue Limit
Mono Axial Static Test
Thermographic Method
url https://www.fracturae.com/index.php/fis/article/view/1833
work_keys_str_mv AT arisitano fatigueassessmentbyenergyapproachduringtensiletestsonaisi304steel
AT dcorallo fatigueassessmentbyenergyapproachduringtensiletestsonaisi304steel
AT eguglielmino fatigueassessmentbyenergyapproachduringtensiletestsonaisi304steel
AT grisitano fatigueassessmentbyenergyapproachduringtensiletestsonaisi304steel
AT lscappaticci fatigueassessmentbyenergyapproachduringtensiletestsonaisi304steel
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