|
Volumn 113, Issue 2-3, 2009, Pages 734-745
|
Mechanical and microstructural response of aluminum-scandium (Al-Sc) alloy as a function of strain rate and temperature
|
Author keywords
Activation energy; Al Sc alloy; Dislocation; Precipitates; Shearing; Strain rate sensitivity
|
Indexed keywords
ACTIVATION ENERGY;
ALLOYS;
ALUMINA;
ALUMINUM;
BARS (METAL);
CHEMICAL ACTIVATION;
CRYSTAL GROWTH;
DEFORMATION;
DUCTILE FRACTURE;
EVAPORATIVE COOLING SYSTEMS;
EXPERIMENTS;
FRACTURE;
GRAIN BOUNDARIES;
MICROSTRUCTURAL EVOLUTION;
PLASTIC FLOW;
SCANDIUM;
SHEARING;
STRAIN HARDENING;
STRESS ANALYSIS;
STRESS-STRAIN CURVES;
STRESSES;
TRANSMISSION ELECTRON MICROSCOPY;
ACTIVATION VOLUMES;
AL-SC ALLOY;
ANALYSIS RESULTS;
DEFORMATION BEHAVIOURS;
DISLOCATION;
DISLOCATION CELL SIZES;
DISLOCATION DENSITIES;
DYNAMIC MECHANICALS;
EXPERIMENTAL VALUES;
FLOW STRESSES;
FRACTURE CHARACTERISTICS;
FRACTURE FEATURES;
FRACTURE STRAINS;
HIGHER TEMPERATURES;
HOPKINSON BARS;
LARGE STRAIN DEFORMATIONS;
LOW STRAIN RATES;
MAXIMUM ERRORS;
MECHANICAL RESPONSES;
MICROSTRUCTURAL;
MICROSTRUCTURAL CHARACTERISTICS;
ROOM TEMPERATURES;
SCANNING AND TRANSMISSION ELECTRON MICROSCOPIES;
SEM OBSERVATIONS;
STRAIN RATE SENSITIVITY;
STRESS STRAINS;
TEMPERATURE CONDITIONS;
TEMPERATURE INCREASES;
TRANSGRANULAR;
WORK HARDENING RATES;
STRAIN RATE;
|
EID: 58149149912
PISSN: 02540584
EISSN: None
Source Type: Journal
DOI: 10.1016/j.matchemphys.2008.08.016 Document Type: Article |
Times cited : (22)
|
References (34)
|