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Volumn 45, Issue 2, 2009, Pages 467-473
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A combined optimization of alloy composition and aging temperature in designing new UHS precipitation hardenable stainless steels
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Author keywords
Alloy design; Composition effect; Genetic algorithm; Precipitate; Stainless steel; Temperature effect; Thermodynamics
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Indexed keywords
ALLOYING;
ALLOYING ELEMENTS;
CARBIDES;
CHROMIUM;
COPPER ALLOYS;
CORROSION RESISTANT ALLOYS;
GENETIC ALGORITHMS;
HEAT TREATMENT;
MECHANICAL PROPERTIES;
MOLYBDENUM;
NIOBIUM;
OPTIMIZATION;
PRECIPITATES;
STAINLESS STEEL;
STEEL METALLURGY;
STRENGTHENING (METAL);
TEMPERATURE;
THERMAL EFFECTS;
THERMODYNAMICS;
AGING TEMPERATURES;
ALLOY COMPOSITIONS;
ALLOY DESIGN;
COMBINED EFFECTS;
COMPUTATIONAL APPROACHES;
CR CONCENTRATIONS;
HEAT TREATMENT CONDITIONS;
INTEGRATED OPTIMIZATIONS;
MATRIXES;
MECHANICAL PRINCIPLES;
OPTIMIZATION CRITERION;
PRECIPITATION TEMPERATURES;
PRECIPITATION-STRENGTHENING;
SEQUENTIAL OPTIMIZATIONS;
STAINLESS STEEL ALLOYS;
TEMPERATURE EFFECT;
ULTIMATE STRENGTHS;
PRECIPITATION (CHEMICAL);
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EID: 62149121684
PISSN: 09270256
EISSN: None
Source Type: Journal
DOI: 10.1016/j.commatsci.2008.11.006 Document Type: Article |
Times cited : (42)
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References (18)
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