Structure of directionally solidified InSb-Sb eutectic alloy
                            Journal Article
                            ·
                            
                            · Metallography; (United States)
                            
                        
                    The eutectic alloy of InSb-Sb has been directionally solidified at various rates in order to investigate the structure changes due to solidification conditions. The boundary energy between the InSb and Sb phases was determined from a dislocation model of the interface.
- Research Organization:
- The First Research Center of Technical Research and Development Institute, Japan Defence Agency, 2-2-1, Nakameguro, Meguroku, Tokyo 153
- OSTI ID:
- 5556503
- Journal Information:
- Metallography; (United States), Journal Name: Metallography; (United States) Vol. 20:4; ISSN MEIJA
- 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
ANTIMONY
ANTIMONY ALLOYS
BINARY ALLOY SYSTEMS
CRYSTAL DEFECTS
CRYSTAL STRUCTURE
CRYSTAL-PHASE TRANSFORMATIONS
DISLOCATIONS
ELEMENTS
EUTECTICS
INDIUM ALLOYS
LINE DEFECTS
MATHEMATICAL MODELS
METALS
PHASE TRANSFORMATIONS
PNICTIDES
SOLIDIFICATION
STRUCTURAL CHEMICAL ANALYSIS
                                            
                                        
                                    
                                
                            
                        360102* -- Metals & Alloys-- Structure & Phase Studies
ALLOY SYSTEMS
ALLOYS
ANTIMONY
ANTIMONY ALLOYS
BINARY ALLOY SYSTEMS
CRYSTAL DEFECTS
CRYSTAL STRUCTURE
CRYSTAL-PHASE TRANSFORMATIONS
DISLOCATIONS
ELEMENTS
EUTECTICS
INDIUM ALLOYS
LINE DEFECTS
MATHEMATICAL MODELS
METALS
PHASE TRANSFORMATIONS
PNICTIDES
SOLIDIFICATION
STRUCTURAL CHEMICAL ANALYSIS