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Volumn 103, Issue 3, 2011, Pages 33-40
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Softening and hardening mechanisms due to rafting development in a SX nickel base superalloy;Meccanismi di addolcimento ed incrudimento dovuti allo sviluppo di raft in una superlega monocristallina a base di nichel
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Author keywords
Creep; Electronic microscopy; Mechanical testing; Superalloys
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Indexed keywords
APPLIED STRESS;
CREEP BEHAVIOUR;
CREEP CURVE SHAPE;
CREEP CURVES;
CREEP DAMAGES;
CREEP LIFE;
CREEP RATES;
CREEP STRAIN;
CREEP STRAIN RATE;
CREEP TESTS;
DAMAGE MECHANISM;
DISLOCATION ACTIVITY;
DISLOCATION DENSITIES;
DISLOCATION MOBILITY;
ELECTRONIC MICROSCOPY;
EXPERIMENTAL CONDITIONS;
HARDENING MECHANISM;
HIGH STRESS;
HIGH TEMPERATURE;
HIGH TEMPERATURE COMPONENTS;
HIGHER TEMPERATURES;
HIGHEST TEMPERATURE;
INTERFACE DISLOCATION;
INTERNAL STRESS;
LATE TERTIARY;
LINEAR DEPENDENCE;
LINEAR RELATIONSHIPS;
LINEAR STRAIN SOFTENING;
LOADING AXIS;
LOCAL STRESS;
LOW STRESS;
MATRIX REGIONS;
METAL MATRIX COMPOSITES;
MICROSTRUCTURE CHARACTERIZATION;
MICROSTRUCTURE EVOLUTIONS;
MICROSTRUCTURE OBSERVATION;
MINIMUM CREEP RATES;
MISFIT STRESS;
MOBILE DISLOCATIONS;
MORPHOLOGY EVOLUTION;
NICKEL BASE SUPERALLOY;
NOMINAL COMPOSITION;
PLASTIC STRAIN;
PRIMARY CREEP;
RAFT STRUCTURE;
RAFTED STRUCTURES;
RECOVERY PROCESS;
SINGLE CRYSTAL COMPONENTS;
SINGLE CRYSTAL NICKEL BASE SUPERALLOYS;
SOLUTION RESISTANCE;
STRAIN ACCELERATION;
STRAIN ACCUMULATIONS;
STRAIN SOFTENING;
STRESS REDISTRIBUTION;
TEMPERATURE RANGE;
TENSILE LOADS;
TERTIARY CREEP;
THIRD GENERATION ALLOYS;
TIME-DEPENDENT EFFECTS;
ACCELERATION;
COALESCENCE;
CREEP;
CREEP TESTING;
DISLOCATIONS (CRYSTALS);
EXTRAPOLATION;
GAS TURBINES;
HARDENING;
METALLIC MATRIX COMPOSITES;
MICROSTRUCTURE;
NICKEL;
PHASE INTERFACES;
RECOVERY;
SINGLE CRYSTALS;
SUPERALLOYS;
TURBOMACHINERY;
STRAIN RATE;
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EID: 79956159733
PISSN: 00260843
EISSN: None
Source Type: Trade Journal
DOI: None Document Type: Article |
Times cited : (2)
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References (10)
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