Microstructural analysis of rapidly solidified and consolidated AlFeMo alloys
Conference
·
· TMS (The Metallurgical Society) Paper Selection; (USA)
OSTI ID:5451448
- Univ. of Illinois, Urbana (USA)
A hypereutectic A1Fe alloy with a Mo ternary addition was rapidly solidified by the melt spinning technique. The resulting ribbon was consolidated by extrusion at low temperature in an attempt to retain the as-solidified structure. The microstructures both before and after consolidation have been characterized by optical microscopy and analytical electron microscopy. Preliminary mechanical properties are also presented.
- OSTI ID:
- 5451448
- Report Number(s):
- CONF-840909--
- Journal Information:
- TMS (The Metallurgical Society) Paper Selection; (USA), Journal Name: TMS (The Metallurgical Society) Paper Selection; (USA) Vol. 56; ISSN 0197-1689; ISSN TMPSA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360102* -- Metals & Alloys-- Structure & Phase Studies
ALLOY SYSTEMS
ALLOYS
ALUMINIUM ALLOYS
BINARY ALLOY SYSTEMS
CRYSTAL STRUCTURE
ELECTRON MICROSCOPY
EUTECTICS
EXTRUSION
FABRICATION
IRON ALLOYS
MATERIALS WORKING
MECHANICAL PROPERTIES
MELTING
MICROSCOPY
MICROSTRUCTURE
MOLYBDENUM ADDITIONS
MOLYBDENUM ALLOYS
MOTION
OPTICAL MICROSCOPY
PHASE TRANSFORMATIONS
ROTATION
SOLIDIFICATION
360102* -- Metals & Alloys-- Structure & Phase Studies
ALLOY SYSTEMS
ALLOYS
ALUMINIUM ALLOYS
BINARY ALLOY SYSTEMS
CRYSTAL STRUCTURE
ELECTRON MICROSCOPY
EUTECTICS
EXTRUSION
FABRICATION
IRON ALLOYS
MATERIALS WORKING
MECHANICAL PROPERTIES
MELTING
MICROSCOPY
MICROSTRUCTURE
MOLYBDENUM ADDITIONS
MOLYBDENUM ALLOYS
MOTION
OPTICAL MICROSCOPY
PHASE TRANSFORMATIONS
ROTATION
SOLIDIFICATION