Investigation of very high cycle fatigue by thermographyc method

Nowadays, many components and structures are subjected to fatigue loading with a number of cycles higher than 107. In this scientific work, the behaviour of two kinds of tool steel was investigated in very high cycle fatigue regime. The fatigue tests were carried out at the frequency of 20 kHz and...

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發表在:Fracture and Structural Integrity
Main Authors: V. Crupi, G. Epasto, E. Guglielmino, G. Risitano
格式: Article
語言:英语
出版: Gruppo Italiano Frattura 2014-10-01
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在線閱讀:http://www.gruppofrattura.it/pdf/rivista/numero30/numero_30_art_68.pdf
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author V. Crupi
G. Epasto
E. Guglielmino
G. Risitano
author_facet V. Crupi
G. Epasto
E. Guglielmino
G. Risitano
author_sort V. Crupi
collection DOAJ
container_title Fracture and Structural Integrity
description Nowadays, many components and structures are subjected to fatigue loading with a number of cycles higher than 107. In this scientific work, the behaviour of two kinds of tool steel was investigated in very high cycle fatigue regime. The fatigue tests were carried out at the frequency of 20 kHz and in fully reversed tensioncompression mode (R = -1) by means of an ultrasonic fatigue testing equipment. The radiometric surface temperature was detected during all the test by means of an IR camera in order to extend the Thermographic Method and the Energetic Approach in very high cycle fatigue regime. The failure mechanism of the investigated steels was evaluated by means of several experimental techniques (scanning electron microscopy, Energy Dispersive X-ray spectroscopy and Optical Microscopy).
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1971-8993
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spelling doaj-art-e6f201bcd7194202a52e9e4d338518942025-08-20T01:26:21ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89931971-89932014-10-0183056957710.3221/IGF-ESIS.30.68Investigation of very high cycle fatigue by thermographyc methodV. Crupi0G. Epasto1E. Guglielmino2G. Risitano3University of Messina, Department of Electronic Engineering, Chemistry and Industrial Engineering (DIECII)University of Messina, Department of Electronic Engineering, Chemistry and Industrial Engineering (DIECII)University of Messina, Department of Electronic Engineering, Chemistry and Industrial Engineering (DIECII)University of Messina, Department of Electronic Engineering, Chemistry and Industrial Engineering (DIECII)Nowadays, many components and structures are subjected to fatigue loading with a number of cycles higher than 107. In this scientific work, the behaviour of two kinds of tool steel was investigated in very high cycle fatigue regime. The fatigue tests were carried out at the frequency of 20 kHz and in fully reversed tensioncompression mode (R = -1) by means of an ultrasonic fatigue testing equipment. The radiometric surface temperature was detected during all the test by means of an IR camera in order to extend the Thermographic Method and the Energetic Approach in very high cycle fatigue regime. The failure mechanism of the investigated steels was evaluated by means of several experimental techniques (scanning electron microscopy, Energy Dispersive X-ray spectroscopy and Optical Microscopy).http://www.gruppofrattura.it/pdf/rivista/numero30/numero_30_art_68.pdfVery High Cycle FatigueThermographic methodEnergetic approach
spellingShingle V. Crupi
G. Epasto
E. Guglielmino
G. Risitano
Investigation of very high cycle fatigue by thermographyc method
Very High Cycle Fatigue
Thermographic method
Energetic approach
title Investigation of very high cycle fatigue by thermographyc method
title_full Investigation of very high cycle fatigue by thermographyc method
title_fullStr Investigation of very high cycle fatigue by thermographyc method
title_full_unstemmed Investigation of very high cycle fatigue by thermographyc method
title_short Investigation of very high cycle fatigue by thermographyc method
title_sort investigation of very high cycle fatigue by thermographyc method
topic Very High Cycle Fatigue
Thermographic method
Energetic approach
url http://www.gruppofrattura.it/pdf/rivista/numero30/numero_30_art_68.pdf
work_keys_str_mv AT vcrupi investigationofveryhighcyclefatiguebythermographycmethod
AT gepasto investigationofveryhighcyclefatiguebythermographycmethod
AT eguglielmino investigationofveryhighcyclefatiguebythermographycmethod
AT grisitano investigationofveryhighcyclefatiguebythermographycmethod