Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation

The objective of the present study is to review the different phenomena responsible for crack growth in the IN718 nickel-base superalloy under the combination of fatigue, creep and oxidation. We review the descriptions of the micro-mechanisms found in the literature, with a special emphasis on the t...

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मुख्य लेखकों: Prakash, D, Walsh, M, Maclachlan, D, Korsunsky, A
स्वरूप: Conference item
प्रकाशित: 2009
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author Prakash, D
Walsh, M
Maclachlan, D
Korsunsky, A
author_facet Prakash, D
Walsh, M
Maclachlan, D
Korsunsky, A
author_sort Prakash, D
collection OXFORD
description The objective of the present study is to review the different phenomena responsible for crack growth in the IN718 nickel-base superalloy under the combination of fatigue, creep and oxidation. We review the descriptions of the micro-mechanisms found in the literature, with a special emphasis on the time-dependent effects. The changes in the microscopic appearance of fracture surfaces due to the variations in the temperature, frequency, dwell time, microstructure and partial pressure of oxygen are considered. Elucidation of these microscopic aspects of crack growth requires establishing a connection with macroscopic conditions and parameters of crack growth, and these topics are touched upon in the present review insofar it is necessary. The review allows the identification of important parameters that control component durability, and need to be included in fatigue crack growth modelling for the development of better predictive lifing assessments. © 2009 Elsevier Ltd. All rights reserved.
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spelling oxford-uuid:2a919e82-8d03-45dd-9fdc-6a007ab1488f2022-03-26T12:25:49ZCrack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidationConference itemhttp://purl.org/coar/resource_type/c_5794uuid:2a919e82-8d03-45dd-9fdc-6a007ab1488fSymplectic Elements at Oxford2009Prakash, DWalsh, MMaclachlan, DKorsunsky, AThe objective of the present study is to review the different phenomena responsible for crack growth in the IN718 nickel-base superalloy under the combination of fatigue, creep and oxidation. We review the descriptions of the micro-mechanisms found in the literature, with a special emphasis on the time-dependent effects. The changes in the microscopic appearance of fracture surfaces due to the variations in the temperature, frequency, dwell time, microstructure and partial pressure of oxygen are considered. Elucidation of these microscopic aspects of crack growth requires establishing a connection with macroscopic conditions and parameters of crack growth, and these topics are touched upon in the present review insofar it is necessary. The review allows the identification of important parameters that control component durability, and need to be included in fatigue crack growth modelling for the development of better predictive lifing assessments. © 2009 Elsevier Ltd. All rights reserved.
spellingShingle Prakash, D
Walsh, M
Maclachlan, D
Korsunsky, A
Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title_full Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title_fullStr Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title_full_unstemmed Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title_short Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
title_sort crack growth micro mechanisms in the in718 alloy under the combined influence of fatigue creep and oxidation
work_keys_str_mv AT prakashd crackgrowthmicromechanismsinthein718alloyunderthecombinedinfluenceoffatiguecreepandoxidation
AT walshm crackgrowthmicromechanismsinthein718alloyunderthecombinedinfluenceoffatiguecreepandoxidation
AT maclachland crackgrowthmicromechanismsinthein718alloyunderthecombinedinfluenceoffatiguecreepandoxidation
AT korsunskya crackgrowthmicromechanismsinthein718alloyunderthecombinedinfluenceoffatiguecreepandoxidation