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Intrinsic fatigue crack growth rates for Al-Li-Cu-Mg alloys in vacuumThe influences of microstructure and deformation mode on inert environment intrinsic fatigue crack propagation were investigated for Al-Li-Cu-Mg alloys AA2090, AA8090, and X2095 compared to AA2024. The amount of coherent shearable delta-prime (Al3Li) precipitates and extent of localized planar slip deformation were reduced by composition (increased Cu/Li in X2095) and heat treatment (double aging of AA8090). Intrinsic growth rates, obtained at high constant K(max) to minimize crack closure and in vacuum to eliminate any environmental effect, were alloy dependent; da/dN varied up to tenfold based on applied Delta-K or Delta-K/E. When compared based on a crack tip cyclic strain or opening displacement parameter, growth rates were equivalent for all alloys except X2095-T8, which exhibited unique fatigue crack growth resistance. Tortuous fatigue crack profiles and large fracture surface facets were observed for each Al-Li alloy independent of the precipitates present, particularly delta-prime, and the localized slip deformation structure. Reduced fatigue crack propagation rates for X2095 in vacuum are not explained by either residual crack closure or slip reversibility arguments; the origin of apparent slip band facets in a homogeneous slip alloy is unclear.
Document ID
19930069975
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Slavik, D. C.
(Virginia Univ. Charlottesville, United States)
Blankenship, C. P., Jr.
(GE Corporate and Research Development Center Schenectady, NY, United States)
Starke, E. A., Jr.
(NASA Langley Research Center Hampton, VA, United States)
Gangloff, R. P.
(Virginia Univ. Charlottesville, United States)
Date Acquired
August 16, 2013
Publication Date
August 1, 1993
Publication Information
Publication: Metallurgical Transactions A - Physical Metallurgy and Materials Science
Volume: 24A
Issue: 8
ISSN: 0360-2133
Subject Category
Metallic Materials
Accession Number
93A53972
Funding Number(s)
CONTRACT_GRANT: NAG1-745
CONTRACT_GRANT: N00014-91-J-1285
Distribution Limits
Public
Copyright
Other

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