Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocation movement. In this study, the evolution of inhomogenously distributed trialuminide precipitates in two multi component alloys was characterised by synchrotron small angle Xray scattering (SAXS). The appropriate selection of reference sample and data treatment required to successfully characterise a low volume fraction of precipitates in multi-component alloys via SAXS was investigated. The resulting SAXS study allowed the analysis of statistically significant numbers of precipitates (billions) as compared to electron microscopy (hundreds). Two cast aluminium alloys with different volume fractions of Al3ZrxV1-x precipitates were studied. Da...
Abstract The precipitation of coherent Al 3 Sc particles in Al-Sc alloys containing 0.06, 0.12 and 0...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
Aluminium recycling is cost-effective and beneficial for the environment. It is expected that this t...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
Model 7000 series alloys with and without copper were fabricated into sheets to study precipitation ...
International audienceThe precipitate microstructure in the last-generation aluminium alloy 6056 T6 ...
One usual way to strengthen a metal is to add alloying elements and to control the size and the dens...
Obtaining reliable and statistical assessment of nanoscale precipitates to link the microstructure w...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
The aluminium based engineering alloy AW 6016 of nominal composition 98.44 Al 0.45 Mg 0.96 Si 0.11 F...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
The key microstructural feature providing strength to age-hardenable Al alloys is nanoscale precipit...
The main aim was to produce aluminium alloy that contain quasicrystalline (predominantly icosahedral...
abstract: Aluminum alloys are ubiquitously used in almost all structural applications due to their h...
Abstract The precipitation of coherent Al 3 Sc particles in Al-Sc alloys containing 0.06, 0.12 and 0...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
Aluminium recycling is cost-effective and beneficial for the environment. It is expected that this t...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
Model 7000 series alloys with and without copper were fabricated into sheets to study precipitation ...
International audienceThe precipitate microstructure in the last-generation aluminium alloy 6056 T6 ...
One usual way to strengthen a metal is to add alloying elements and to control the size and the dens...
Obtaining reliable and statistical assessment of nanoscale precipitates to link the microstructure w...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
The aluminium based engineering alloy AW 6016 of nominal composition 98.44 Al 0.45 Mg 0.96 Si 0.11 F...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
The key microstructural feature providing strength to age-hardenable Al alloys is nanoscale precipit...
The main aim was to produce aluminium alloy that contain quasicrystalline (predominantly icosahedral...
abstract: Aluminum alloys are ubiquitously used in almost all structural applications due to their h...
Abstract The precipitation of coherent Al 3 Sc particles in Al-Sc alloys containing 0.06, 0.12 and 0...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
Aluminium recycling is cost-effective and beneficial for the environment. It is expected that this t...