Crack growth based life prediction approach under LCF-HCF interaction

Prediction of cyclic life under low cycle fatigue - high cycle fatigue (LCF-HCF) interaction is of paramount importance in the context of structural integrity of components in the primary side of fast reactors where such damage under LCF-HCF interaction occurs. The present investigation deals with t...

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Main Authors: Aritra Sarkar, M. Okazaki, A. Nagesha, R. Sandhya
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2019-07-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/2269
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author Aritra Sarkar
M. Okazaki
A. Nagesha
R. Sandhya
author_facet Aritra Sarkar
M. Okazaki
A. Nagesha
R. Sandhya
author_sort Aritra Sarkar
collection DOAJ
description Prediction of cyclic life under low cycle fatigue - high cycle fatigue (LCF-HCF) interaction is of paramount importance in the context of structural integrity of components in the primary side of fast reactors where such damage under LCF-HCF interaction occurs. The present investigation deals with the crack growth behavior of a type 316LN austenitic stainless steel subjected to simultaneous application of LCF and HCF cycles (block-loading). Tests were performed over a wide range of temperatures from ambient to 923 K. Experimental results indicate that a critical crack-length (acr) exists, beyond which the LCF-HCF interaction becomes significant. An attempt was made to predict life under block cycling by estimating the acr using fatigue crack threshold (ΔKth) since the latter is known to be affected significantly by the loading history. A universal equation, based on the concept of an equivalent critical crack length (acr.,eq) which incorporates the damage contribution from DSA and ratcheting under combined LCF-HCF loading, was proposed for life estimation.
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institution Kabale University
issn 1971-8993
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publisher Gruppo Italiano Frattura
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series Fracture and Structural Integrity
spelling doaj-art-3fee8fae3a7747a38b63b51274c6604f2025-01-03T00:40:27ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932019-07-011350Crack growth based life prediction approach under LCF-HCF interactionAritra Sarkar0M. Okazaki1A. Nagesha2R. Sandhya3IGCARNagaoka University of TechnologyIGCARIGCARPrediction of cyclic life under low cycle fatigue - high cycle fatigue (LCF-HCF) interaction is of paramount importance in the context of structural integrity of components in the primary side of fast reactors where such damage under LCF-HCF interaction occurs. The present investigation deals with the crack growth behavior of a type 316LN austenitic stainless steel subjected to simultaneous application of LCF and HCF cycles (block-loading). Tests were performed over a wide range of temperatures from ambient to 923 K. Experimental results indicate that a critical crack-length (acr) exists, beyond which the LCF-HCF interaction becomes significant. An attempt was made to predict life under block cycling by estimating the acr using fatigue crack threshold (ΔKth) since the latter is known to be affected significantly by the loading history. A universal equation, based on the concept of an equivalent critical crack length (acr.,eq) which incorporates the damage contribution from DSA and ratcheting under combined LCF-HCF loading, was proposed for life estimation.https://www.fracturae.com/index.php/fis/article/view/2269LCFHCFLCF-HCF interactionCrack growth316LN SS
spellingShingle Aritra Sarkar
M. Okazaki
A. Nagesha
R. Sandhya
Crack growth based life prediction approach under LCF-HCF interaction
Fracture and Structural Integrity
LCF
HCF
LCF-HCF interaction
Crack growth
316LN SS
title Crack growth based life prediction approach under LCF-HCF interaction
title_full Crack growth based life prediction approach under LCF-HCF interaction
title_fullStr Crack growth based life prediction approach under LCF-HCF interaction
title_full_unstemmed Crack growth based life prediction approach under LCF-HCF interaction
title_short Crack growth based life prediction approach under LCF-HCF interaction
title_sort crack growth based life prediction approach under lcf hcf interaction
topic LCF
HCF
LCF-HCF interaction
Crack growth
316LN SS
url https://www.fracturae.com/index.php/fis/article/view/2269
work_keys_str_mv AT aritrasarkar crackgrowthbasedlifepredictionapproachunderlcfhcfinteraction
AT mokazaki crackgrowthbasedlifepredictionapproachunderlcfhcfinteraction
AT anagesha crackgrowthbasedlifepredictionapproachunderlcfhcfinteraction
AT rsandhya crackgrowthbasedlifepredictionapproachunderlcfhcfinteraction