|
Volumn 26, Issue 11, 2010, Pages 1345-1352
|
Integrated modelling of precipitation during friction stir welding of 2024-T3 aluminium alloy
|
Author keywords
AA 2024 alloy; FSW; Hardening; Precipitation; Simulation
|
Indexed keywords
2024-T3 ALUMINIUM;
AA 2024;
CLASSICAL NUCLEATION;
COARSENING MECHANISMS;
COMPLEX MATERIALS;
EQUIVALENT CONDITION;
FRICTION STIR WELDED JOINTS;
FSW;
HARDNESS PREDICTION;
HARDNESS PROFILES;
HARDNESS VALUES;
HARDNESS VARIATION;
INTEGRATED MODELLING;
MICROSTRUCTURE MODEL;
PHYSICALLY BASED MODELS;
PRECIPITATION;
PRECIPITATION HARDENING;
PRECIPITATION MODEL;
SEMI-ANALYTICAL MODEL;
SIMULATED MICROSTRUCTURES;
SIMULATION;
TEM OBSERVATIONS;
THERMAL MODELLING;
VELOCITY FIELD;
ALUMINUM;
ALUMINUM ALLOYS;
CERIUM ALLOYS;
COMPUTER SIMULATION;
FRICTION;
GAS WELDING;
HARDENING;
HARDNESS;
MATHEMATICAL MODELS;
MICROSTRUCTURE;
PERSONAL COMPUTERS;
PRECIPITATION (CHEMICAL);
TRIBOLOGY;
WELDED STEEL STRUCTURES;
FRICTION STIR WELDING;
|
EID: 78649279814
PISSN: 02670836
EISSN: 17432847
Source Type: Journal
DOI: 10.1179/026708310X12798718274511 Document Type: Article |
Times cited : (12)
|
References (26)
|