Surface oxide softening of niobium single crystals
Journal Article
·
· Acta Metall.; (United States)
The effect of thin (<160 mn) anodic oxide films on the mechanical behavior of single crystals of niobium was investigated. At 295/sup 0/K, oxide films cause hardening. At lower temperatures, the oxide films reduce the critical resolved shear stress and cause serrated flow. When oxide-coated niobium is prestrained into stage 1 at 295/sup 0/K, the flow stress at lower temperatures is further reduced, the ductility is increased, the serrations disappear, and three-stage work hardening is observed. A model involving preferential generation and motion of edge dislocations from the oxide-metal interface is used to explain the results. Supporting evidence obtained from slip trace analysis, transmission electron microscopy of dislocation substructures, and etch pitting of near-surface dislocations is presented.
- Research Organization:
- Case Western Reserve Univ., Cleveland
- OSTI ID:
- 7295278
- Journal Information:
- Acta Metall.; (United States), Journal Name: Acta Metall.; (United States) Journal Issue: 3 Vol. 25:3; ISSN AMETA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360103* -- Metals & Alloys-- Mechanical Properties
360105 -- Metals & Alloys-- Corrosion & Erosion
CHALCOGENIDES
CRYSTAL DEFECTS
CRYSTAL STRUCTURE
CRYSTALS
DISLOCATIONS
DUCTILITY
ELEMENTS
FILMS
HARDNESS
INTERFACES
LINE DEFECTS
LOW TEMPERATURE
MECHANICAL PROPERTIES
MEDIUM TEMPERATURE
METALS
MONOCRYSTALS
NIOBIUM
OXIDES
OXYGEN COMPOUNDS
REFRACTORY METALS
TENSILE PROPERTIES
TRANSITION ELEMENTS
360103* -- Metals & Alloys-- Mechanical Properties
360105 -- Metals & Alloys-- Corrosion & Erosion
CHALCOGENIDES
CRYSTAL DEFECTS
CRYSTAL STRUCTURE
CRYSTALS
DISLOCATIONS
DUCTILITY
ELEMENTS
FILMS
HARDNESS
INTERFACES
LINE DEFECTS
LOW TEMPERATURE
MECHANICAL PROPERTIES
MEDIUM TEMPERATURE
METALS
MONOCRYSTALS
NIOBIUM
OXIDES
OXYGEN COMPOUNDS
REFRACTORY METALS
TENSILE PROPERTIES
TRANSITION ELEMENTS