Time and frequency domain models for multiaxial fatigue life estimation under random loading

Engineering structures and components are often subjected to random fatigue loading produced, for example, by wind turbulences, marine waves and vibrations. The methods available in the literature for fatigue assessment under random loading are formulated in time domain or, alternatively, in frequ...

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Main Authors: Andrea Carpinteri, Andrea Spagnoli, Camilla Ronchei, Sabrina Vantadori
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2015-07-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:http://www.gruppofrattura.it/pdf/rivista/numero33/numero_33_art_41.pdf
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author Andrea Carpinteri
Andrea Spagnoli
Camilla Ronchei
Sabrina Vantadori
author_facet Andrea Carpinteri
Andrea Spagnoli
Camilla Ronchei
Sabrina Vantadori
author_sort Andrea Carpinteri
collection DOAJ
description Engineering structures and components are often subjected to random fatigue loading produced, for example, by wind turbulences, marine waves and vibrations. The methods available in the literature for fatigue assessment under random loading are formulated in time domain or, alternatively, in frequency domain. The former methods require the knowledge of the loading time history, and a large number of experimental tests/numerical simulations is needed to obtain statistically reliable results. The latter methods are generally more advantageous with respect to the time domain ones, allowing a rapid fatigue damage evaluation. In the present paper, a multiaxial criterion formulated in the frequency-domain is presented to estimate the fatigue lives of smooth metallic structures subjected to combined bending and torsion random loading. A comparison in terms of fatigue life prediction by employing a time domain methods, previously proposed by the authors, is also performed.
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institution Kabale University
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publishDate 2015-07-01
publisher Gruppo Italiano Frattura
record_format Article
series Fracture and Structural Integrity
spelling doaj-art-55f7cdd0f301438aaba710fae94d87482025-02-03T10:40:13ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89931971-89932015-07-0193337638110.3221/IGF-ESIS.33.41Time and frequency domain models for multiaxial fatigue life estimation under random loadingAndrea Carpinteri0Andrea Spagnoli1Camilla Ronchei2Sabrina Vantadori3Università di Parma,ItalyUniversità di Parma,ItalyUniversità di Parma,ItalyUniversità di Parma,ItalyEngineering structures and components are often subjected to random fatigue loading produced, for example, by wind turbulences, marine waves and vibrations. The methods available in the literature for fatigue assessment under random loading are formulated in time domain or, alternatively, in frequency domain. The former methods require the knowledge of the loading time history, and a large number of experimental tests/numerical simulations is needed to obtain statistically reliable results. The latter methods are generally more advantageous with respect to the time domain ones, allowing a rapid fatigue damage evaluation. In the present paper, a multiaxial criterion formulated in the frequency-domain is presented to estimate the fatigue lives of smooth metallic structures subjected to combined bending and torsion random loading. A comparison in terms of fatigue life prediction by employing a time domain methods, previously proposed by the authors, is also performed.http://www.gruppofrattura.it/pdf/rivista/numero33/numero_33_art_41.pdfMultiaxial fatigueCritical plane approachRandom loadingFrequency-domainWinde-band spectrum
spellingShingle Andrea Carpinteri
Andrea Spagnoli
Camilla Ronchei
Sabrina Vantadori
Time and frequency domain models for multiaxial fatigue life estimation under random loading
Fracture and Structural Integrity
Multiaxial fatigue
Critical plane approach
Random loading
Frequency-domain
Winde-band spectrum
title Time and frequency domain models for multiaxial fatigue life estimation under random loading
title_full Time and frequency domain models for multiaxial fatigue life estimation under random loading
title_fullStr Time and frequency domain models for multiaxial fatigue life estimation under random loading
title_full_unstemmed Time and frequency domain models for multiaxial fatigue life estimation under random loading
title_short Time and frequency domain models for multiaxial fatigue life estimation under random loading
title_sort time and frequency domain models for multiaxial fatigue life estimation under random loading
topic Multiaxial fatigue
Critical plane approach
Random loading
Frequency-domain
Winde-band spectrum
url http://www.gruppofrattura.it/pdf/rivista/numero33/numero_33_art_41.pdf
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AT camillaronchei timeandfrequencydomainmodelsformultiaxialfatiguelifeestimationunderrandomloading
AT sabrinavantadori timeandfrequencydomainmodelsformultiaxialfatiguelifeestimationunderrandomloading