Two different in situ experiments using high energy X-ray diffraction from synchrotron source were performed in order to understand carefully the phase transformation in nanostructured Al–15%BN mechanically alloyed powder. After milling at room temperature for 10 h, a solid solution of Al, B and N was achieved. During the heating, the formation and the evolution of the metastable trigonal Al2B3 and a very fine precipitation of hexagonal AlN (d < 8 nm) within Al grains were detected quantitatively. We found a stabilization of Al2B3 between 225 ◦C and 550 ◦C and, only around 600 ◦C the hexagonal AlB2 starts to form. A detectable decreasing of the Al crystallite size between 420 ◦C and 470 ◦C was attributed to the precipitation of AlN nanopart...
Producing bulk AlN with grain sizes in the nano regime and measuring its thermal conductivity is an ...
In this work, we studied the transformations involving the coherent (θ”/S”), semicoherent (θ’/S’), a...
This paper reports the development of novel Sintered Aluminium Powder (SAP)-like Al-AlN nanocomposit...
© 2018 Dr. Prathap ChandranHigh energy mechanical alloying, a non-equilibrium processing method was ...
The experimental in situ synchrotron study presented here examines the micro structural features of ...
Mechanically alloyed Al with immiscible elements such as Nb can lead to a uniform distribution of na...
International audienceThe structure evolution during heating of mechanically milled single-phase bet...
The grain refinement of Al by the addition of a small amount of peritectic-forming solute, Nb, has b...
The production of high hardness and thermally stable nanocrystalline aluminium composites is describ...
The use of nanocrystalline particles can greatly increase the sinterability and properties of many c...
Light (density <2.7 g×cm−3) yet strong (tensile strength >350 MPa) metal matrix composites (MMCs) ar...
It is well known that ultrafine grained and nanocrystalline materials show enhanced strength, while ...
Thermal stability of nanograined metals can be difficult to attain due to the large driving force fo...
Producing bulk AlN with grain sizes in the nano regime and measuring its thermal conductivity is an ...
Elemental powders of stoichiometric Al3Ti were mechanically alloyed (MA) in order to investigate the...
Producing bulk AlN with grain sizes in the nano regime and measuring its thermal conductivity is an ...
In this work, we studied the transformations involving the coherent (θ”/S”), semicoherent (θ’/S’), a...
This paper reports the development of novel Sintered Aluminium Powder (SAP)-like Al-AlN nanocomposit...
© 2018 Dr. Prathap ChandranHigh energy mechanical alloying, a non-equilibrium processing method was ...
The experimental in situ synchrotron study presented here examines the micro structural features of ...
Mechanically alloyed Al with immiscible elements such as Nb can lead to a uniform distribution of na...
International audienceThe structure evolution during heating of mechanically milled single-phase bet...
The grain refinement of Al by the addition of a small amount of peritectic-forming solute, Nb, has b...
The production of high hardness and thermally stable nanocrystalline aluminium composites is describ...
The use of nanocrystalline particles can greatly increase the sinterability and properties of many c...
Light (density <2.7 g×cm−3) yet strong (tensile strength >350 MPa) metal matrix composites (MMCs) ar...
It is well known that ultrafine grained and nanocrystalline materials show enhanced strength, while ...
Thermal stability of nanograined metals can be difficult to attain due to the large driving force fo...
Producing bulk AlN with grain sizes in the nano regime and measuring its thermal conductivity is an ...
Elemental powders of stoichiometric Al3Ti were mechanically alloyed (MA) in order to investigate the...
Producing bulk AlN with grain sizes in the nano regime and measuring its thermal conductivity is an ...
In this work, we studied the transformations involving the coherent (θ”/S”), semicoherent (θ’/S’), a...
This paper reports the development of novel Sintered Aluminium Powder (SAP)-like Al-AlN nanocomposit...