Refinement of precipitate distributions in an age-hardenable Mg-Sn alloy through microalloying
BETTLES, C. J.
School of Physics and Materials Engineering
Division of Manufacturing Science and Technology [CSIRO]
Leer más >
School of Physics and Materials Engineering
Division of Manufacturing Science and Technology [CSIRO]
BETTLES, C. J.
School of Physics and Materials Engineering
Division of Manufacturing Science and Technology [CSIRO]
< Leer menos
School of Physics and Materials Engineering
Division of Manufacturing Science and Technology [CSIRO]
Idioma
en
Article de revue
Este ítem está publicado en
Philosophical Magazine Letters. 2006, vol. vol. 86, n° 7, p. p. 443-456
Taylor & Francis
Resumen en inglés
It has been known for some time that trace additions ( 2 Sn phase formed, although a substantial refinement of the distributions is observed. In the case of Na additions, the number density of particles is increased by two ...Leer más >
It has been known for some time that trace additions ( 2 Sn phase formed, although a substantial refinement of the distributions is observed. In the case of Na additions, the number density of particles is increased by two orders of magnitude, resulting in hardening increment increases of 270%. The In+Li additions lead to increases of approximately one order of magnitude in number density and 150% increases in the hardening increment. The generality of the observed effects and the resulting hardening responses are discussed.< Leer menos
Palabras clave en inglés
Aluminium
Microalloys
Magnesium
Tin
Atom-probe
Phase
Additions
Thermodynamic
Hardeness
Orígen
Importado de HalCentros de investigación