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Creep fatigue life prediction for engine hot section materials (isotropic)The first two years of a two-phase program aimed at improving the high temperature crack initiation life prediction technology for gas turbine hot section components are discussed. In Phase 1 (baseline) effort, low cycle fatigue (LCF) models, using a data base generated for a cast nickel base gas turbine hot section alloy (B1900+Hf), were evaluated for their ability to predict the crack initiation life for relevant creep-fatigue loading conditions and to define data required for determination of model constants. The variables included strain range and rate, mean strain, strain hold times and temperature. None of the models predicted all of the life trends within reasonable data requirements. A Cycle Damage Accumulation (CDA) was therefore developed which follows an exhaustion of material ductility approach. Material ductility is estimated based on observed similarities of deformation structure between fatigue, tensile and creep tests. The cycle damage function is based on total strain range, maximum stress and stress amplitude and includes both time independent and time dependent components. The CDA model accurately predicts all of the trends in creep-fatigue life with loading conditions. In addition, all of the CDA model constants are determinable from rapid cycle, fully reversed fatigue tests and monotonic tensile and/or creep data.
Document ID
19870008684
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Moreno, Vito
(Pratt and Whitney Aircraft East Hartford, CT, United States)
Nissley, David
(Pratt and Whitney Aircraft East Hartford, CT, United States)
Lin, Li-Sen Jim
(Pratt and Whitney Aircraft East Hartford, CT, United States)
Date Acquired
September 5, 2013
Publication Date
March 1, 1985
Subject Category
Structural Mechanics
Report/Patent Number
NASA-CR-174844
NAS 1.26:174844
PWA-5894-34
AR-2
Accession Number
87N18117
Funding Number(s)
CONTRACT_GRANT: NAS3-23288
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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