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Volumn 118, Issue 2-3, 2009, Pages 354-361
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Structural evolution during mechanical milling and subsequent annealing of Cu-Ni-Al-Co-Cr-Fe-Ti alloys
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Author keywords
Amorphous structure; High entropy alloy; Mechanical alloying; Topological instability
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Indexed keywords
AMORPHOUS PHASIS;
AMORPHOUS POWDERS;
AMORPHOUS STRUCTURE;
AMORPHOUS STRUCTURES;
ANNEALED STATE;
BULK AMORPHOUS ALLOYS;
COMPLEX PHASIS;
ENTROPY EFFECTS;
EQUILIBRIUM PHASIS;
FETI ALLOYS;
GLASS TRANSITION TEMPERATURE;
HIGH ENTROPY ALLOYS;
HIGH-ENTROPY ALLOY;
HIGHER TEMPERATURES;
MECHANICAL MILLING;
MICROSTRUCTURE EXAMINATION;
PHYSICAL SIGNIFICANCE;
SOLID SOLUTION PHASIS;
STRUCTURAL EVOLUTION;
THERMAL-ANNEALING;
TOPOLOGICAL INSTABILITY;
ALLOYING ELEMENTS;
AMORPHIZATION;
ANNEALING;
CERIUM ALLOYS;
CHROMIUM;
COPPER ALLOYS;
CRYSTALLIZATION;
DISSOLUTION;
ENTROPY;
GLASS;
GLASS TRANSITION;
GRAIN GROWTH;
MECHANICAL ALLOYING;
METALLURGY;
MILLING (MACHINING);
POWDERS;
PRECIPITATION (CHEMICAL);
SOLID SOLUTIONS;
SOLIDIFICATION;
SUPERCONDUCTING TRANSITION TEMPERATURE;
TITANIUM ALLOYS;
AMORPHOUS ALLOYS;
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EID: 70350023595
PISSN: 02540584
EISSN: None
Source Type: Journal
DOI: 10.1016/j.matchemphys.2009.07.067 Document Type: Article |
Times cited : (22)
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References (41)
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