Study of energy vs misorientation for grain boundaries in gold by crystallite rotation method-II. Tilt boundaries and mixed boundaries
Journal Article
·
· Acta Metall.; (United States)
In Part I small gold crystallites were welded to thin film single crystal gold substrates at different controlled misorientations to produce pure twist boundaries in the neck regions which could be observed directly by transmission electron microscopy. In this work these experiments are extended to include pure tilt and also mixed (tilt/twist) boundaries.
- Research Organization:
- Dept. of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA (US)
- OSTI ID:
- 6911562
- Journal Information:
- Acta Metall.; (United States), Journal Name: Acta Metall.; (United States) Vol. 34:11; ISSN AMETA
- Country of Publication:
- United States
- Language:
- English
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Study of energy versus misorientation for grain boundaries in cold by crystallite rotation method. II. Tilt boundaries and mixed boundaries
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Tue Dec 31 23:00:00 EST 1985
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Study of energy vs misorientation for grain boundaries in gold by crystallite rotation method - I. (001) twist boundaries
Journal Article
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Sat Jun 01 00:00:00 EDT 1985
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·
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Related Subjects
36 MATERIALS SCIENCE
360101* -- Metals & Alloys-- Preparation & Fabrication
360102 -- Metals & Alloys-- Structure & Phase Studies
CRYSTAL STRUCTURE
CRYSTALS
ELECTRON MICROSCOPY
ELEMENTS
ENERGY SPECTRA
FABRICATION
FILMS
GOLD
GRAIN BOUNDARIES
GRAIN ORIENTATION
JOINING
METALS
MICROSCOPY
MICROSTRUCTURE
ORIENTATION
SPECTRA
STRUCTURAL CHEMICAL ANALYSIS
SUBSTRATES
THIN FILMS
TRANSITION ELEMENTS
TRANSMISSION ELECTRON MICROSCOPY
WELDING
360101* -- Metals & Alloys-- Preparation & Fabrication
360102 -- Metals & Alloys-- Structure & Phase Studies
CRYSTAL STRUCTURE
CRYSTALS
ELECTRON MICROSCOPY
ELEMENTS
ENERGY SPECTRA
FABRICATION
FILMS
GOLD
GRAIN BOUNDARIES
GRAIN ORIENTATION
JOINING
METALS
MICROSCOPY
MICROSTRUCTURE
ORIENTATION
SPECTRA
STRUCTURAL CHEMICAL ANALYSIS
SUBSTRATES
THIN FILMS
TRANSITION ELEMENTS
TRANSMISSION ELECTRON MICROSCOPY
WELDING