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Manifestations of Dynamic Strain Aging in Soft-Oriented NiAl Single CrystalsThe tensile and compressive properties of six NiAl-base single-crystal alloys have been investigated at temperatures between 77 and 1200 K. The normalized critical resolved shear stresses (CRSS/E) and work-hardening rates (Theta/E) for these alloys generally decreased with increasing temperature. However, anomalous peaks or plateaus for these properties were observed in conventional purity (CPNiAl), Si-doped (NiAl-Si), C-doped low Si (UF-NiAl1), and Mo-doped (NiAl-Mo) alloys at intermediate temperatures (600 to 1000 K). This anomalous behavior was not observed in high-purity, low interstitial material (HP-NiAl). Low or negative strain-rate sensitivities (SRS) also were observed in all six alloys in this intermediate temperature range. Coincident with the occurrence of negative strain-rate sensitivities was the observation of serrated stress-strain curves in the CPNiAl and NiAl-Si alloys. These phenomena have been attributed to dynamic strain aging (DSA). Chemical analysis of the alloys used in this study suggests that the main specie responsible for strain aging in NiAl is C but indicate that residual Si impurities can enhance the strain aging effects. The corresponding dislocation microstructures at low temperatures (300 to 600 K) were composed of well-defined cells. At intermediate temperatures (600 to 900 K), either poorly defined cells or coarse bands of localized slip, reminiscent of the vein structures observed in low-cycle fatigue specimens deformed in the DSA regime, were observed in conventional purity, Si-doped, and in Mo-doped alloys. In contrast, a well-defined cell structure persisted in the low interstitial, high-purity alloy. At elevated temperatures (greater than or equal to 1000 K), more uniformly distributed dislocations and sub-boundaries were observed in all alloys. These observations are consistent with the occurrence of DSA in NiAl single-crystal alloys at intermediate temperatures.
Document ID
19970022812
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Weaver, M. L.
(Florida Agricultural and Mechanical Univ. Tallahassee, FL United States)
Kaufman, M. J.
(Florida Univ. Gainesville, FL United States)
Noebe, R. D.
(NASA Lewis Research Center Cleveland, OH United States)
Date Acquired
September 6, 2013
Publication Date
November 1, 1996
Publication Information
Publication: Metallurgical and Material Transactions A
Volume: 27A
Subject Category
Metallic Materials
Report/Patent Number
NASA-CR-204681
NAS 1.26:204681
Report Number: NASA-CR-204681
Report Number: NAS 1.26:204681
Accession Number
97N23250
Funding Number(s)
CONTRACT_GRANT: NGT3-2958
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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