In situ synchrotron time-resolved X-ray diffraction experiments coupled with an infrared imaging camera have been used to reveal the combustion wave structure during the production of MoSi2 by Mechanically Activated Self-propagating High-temperature Synthesis (MASHS). The fast combustion front exhibits a form described as an ‘equilibrium structure' where the chemical reaction is the sole major driving force. In the MASHS process, oxide-free interfaces between Mo and Si nanocrystallites enhance the reaction MoC2Si/MoSi2. Exhaustive time-resolved investigations show a possible solid-state process in the first second of the reaction within the combustion front. If preheating is added, the reaction rate is increased, whereas, the presence of a-...
Microalloying of MoSi2 to form Mo(1-x)MexSi2 (Me = Nb or V) was investigated by the self-propagating...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...
In situ synchrotron time-resolved X-ray diffraction experiments coupled with an infrared imaging cam...
We present evidence indicating that rapid, self-sustained, high-temperature reactions play an import...
International audienceIn this work, we present a multilayer modeling for the formation of molybdenum...
Le procédé MASHS (Mechanically activated self-propagating high-temperature synthesis) apparaît être ...
La formation au cours d'une réaction de combustion autoentretenue et mécaniquement activée (MASHS) d...
The effect of mechanical activation of reactants on the self-propagating high-temperature synthesis ...
This study is dedicated to investigation of the combustion mechanisms during the SHS of ceramic mate...
Formation of MoSi2–Al2O3 composites with a broad range of the MoSi2/Al2O3 ratio was conducted by the...
The nanocomposite of MoSi2-Mo5Si3 powder was synthesized by mechanical alloying from Mo and Si powde...
Phase evolution during the mechanical alloying of Mo and Si elemental powders with a ternary additio...
The desire to improve the efficiency of power generation gas-turbines has led to a relentless quest ...
The desire to improve the efficiency of power generation gas-turbines has led to a relentless quest ...
Microalloying of MoSi2 to form Mo(1-x)MexSi2 (Me = Nb or V) was investigated by the self-propagating...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...
In situ synchrotron time-resolved X-ray diffraction experiments coupled with an infrared imaging cam...
We present evidence indicating that rapid, self-sustained, high-temperature reactions play an import...
International audienceIn this work, we present a multilayer modeling for the formation of molybdenum...
Le procédé MASHS (Mechanically activated self-propagating high-temperature synthesis) apparaît être ...
La formation au cours d'une réaction de combustion autoentretenue et mécaniquement activée (MASHS) d...
The effect of mechanical activation of reactants on the self-propagating high-temperature synthesis ...
This study is dedicated to investigation of the combustion mechanisms during the SHS of ceramic mate...
Formation of MoSi2–Al2O3 composites with a broad range of the MoSi2/Al2O3 ratio was conducted by the...
The nanocomposite of MoSi2-Mo5Si3 powder was synthesized by mechanical alloying from Mo and Si powde...
Phase evolution during the mechanical alloying of Mo and Si elemental powders with a ternary additio...
The desire to improve the efficiency of power generation gas-turbines has led to a relentless quest ...
The desire to improve the efficiency of power generation gas-turbines has led to a relentless quest ...
Microalloying of MoSi2 to form Mo(1-x)MexSi2 (Me = Nb or V) was investigated by the self-propagating...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...
Molybdenum silicides and borosilicides are promising structural materials for gas-turbine power plan...