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Volumn 516, Issue 21, 2008, Pages 7475-7481
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Surface oxidation of low carbon steel during laser treatment, its dependence on the initial microstructure and influence on the laser energy absorption
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Author keywords
Computer simulation; Low carbon steel; Oxidation; Surface laser treatment; X ray diffraction
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Indexed keywords
ABSORPTION;
CARBON FILMS;
CARBON STEEL;
ENERGY ABSORPTION;
FILM GROWTH;
FINITE ELEMENT METHOD;
GROWTH KINETICS;
LASER BEAMS;
LASERS;
MICROSTRUCTURE;
MOLECULAR BEAM EPITAXY;
NEODYMIUM;
PULSED LASER APPLICATIONS;
PULSED LASER DEPOSITION;
SPECIFIC HEAT;
STEEL;
STEEL SHEET;
SUPERCONDUCTING WIRE;
SURFACE TREATMENT;
SURFACES;
THERMOELECTRICITY;
AB SORPTION COEFFICIENTS;
COMPUTER CODING;
COMPUTER SIMULATION;
FINITE ELEMENTS METHOD;
INITIAL STAGES;
LASER TREATMENTS;
LASER-ENERGY ABSORPTION;
LASER-PULSE DURATIONS;
LOW CARBON STEEL;
LOW-CARBON STEELS;
OXIDATION;
OXIDE FILM GROWTH;
OXIDE LAYERS;
PULSED LASERS;
SPECIFIC HEAT CAPACITY;
SURFACE LASER TREATMENT;
SURFACE OXIDATIONS;
TEMPERATURE DEPENDENCIES;
TEMPERATURE FIELDS;
X-RAY DIFFRACTION;
X-RAY POWDER DIFFRACTION;
OXIDE FILMS;
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EID: 49349084208
PISSN: 00406090
EISSN: None
Source Type: Journal
DOI: 10.1016/j.tsf.2008.03.031 Document Type: Article |
Times cited : (17)
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References (31)
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