Mo(Si1-xAlx)(2) compositions (x = 0-0.1) have been prepared by a modified SHS route under uniaxial hydrostatic pressure. Oxidation studies carried out by thermal analysis and sheet resistivity indicate an improvement in the low temperature (700-900 K) oxidation resistance with increasing aluminum addition. Dilatometric results show a decrease in the a value up to x = 0.05 substitution. With the aluminum substitution, both thermal expansion coefficient and thermal conductivity show decrease in their values except in the biphasic region. The x = 0.05 composition containing both C11(b) and C40 phases is a promising material for high temperature thermal barrier coating as it shows higher oxidation resistance and a similar K/alpha value as comp...
International audienceThere are very strong interests in developing low density advanced material sy...
La protection du molybdène contre l'oxydation haute température peut être réalisée par simple silici...
The oxidation of a Mo(Si,Al)(2) composite is investigated at 1500 degrees C in dry air using exposur...
Mo(Si1-xAlx)(2) compositions (x = 0-0.1) have been prepared by a modified SHS route under uniaxial h...
Mo(Si1_xAlx)2 compositions have been prepared by a modified SHS route under pressure. The compositio...
$Mo(Si_1-_xAl_x)_2$ compositions have been prepared by a modified SHS route under pressure. The comp...
An intermetallic compound, molybdenum alumino-silicide, MoAlxSi2−x, is produced from a mixture of mo...
The oxidation of a Mo(Si,Al)2-based composite is investigated in the temperature range 900–1600 C in...
MoSi2-based composites are intermetallic materials that combine metallic and ceramic properties. Bec...
Molybdenum disilicide (MoSi₂) is a promising intermetallic material for high temperature application...
The literature on the processing, microstructure and properties of MoSi2 was briefly reviewed togeth...
Molybdenum disilicide has been predominantly used for furnace heating elements, but recently there h...
In the first part of this paper a literature survey on the oxidation behaviour of MoSi2 and MoSi2 ...
Polycrystalline samples of $(Mo_{1-x}Nb_x)(Si_{1-y}Al_y)_2$ with x = 0.0-0.03 and y = 0.0, 0.04 were...
Mo(Al,Si)2 has been prepared by hot pressing elemental powders of Mo, Al and Si, at 1200-1700xB0;C a...
International audienceThere are very strong interests in developing low density advanced material sy...
La protection du molybdène contre l'oxydation haute température peut être réalisée par simple silici...
The oxidation of a Mo(Si,Al)(2) composite is investigated at 1500 degrees C in dry air using exposur...
Mo(Si1-xAlx)(2) compositions (x = 0-0.1) have been prepared by a modified SHS route under uniaxial h...
Mo(Si1_xAlx)2 compositions have been prepared by a modified SHS route under pressure. The compositio...
$Mo(Si_1-_xAl_x)_2$ compositions have been prepared by a modified SHS route under pressure. The comp...
An intermetallic compound, molybdenum alumino-silicide, MoAlxSi2−x, is produced from a mixture of mo...
The oxidation of a Mo(Si,Al)2-based composite is investigated in the temperature range 900–1600 C in...
MoSi2-based composites are intermetallic materials that combine metallic and ceramic properties. Bec...
Molybdenum disilicide (MoSi₂) is a promising intermetallic material for high temperature application...
The literature on the processing, microstructure and properties of MoSi2 was briefly reviewed togeth...
Molybdenum disilicide has been predominantly used for furnace heating elements, but recently there h...
In the first part of this paper a literature survey on the oxidation behaviour of MoSi2 and MoSi2 ...
Polycrystalline samples of $(Mo_{1-x}Nb_x)(Si_{1-y}Al_y)_2$ with x = 0.0-0.03 and y = 0.0, 0.04 were...
Mo(Al,Si)2 has been prepared by hot pressing elemental powders of Mo, Al and Si, at 1200-1700xB0;C a...
International audienceThere are very strong interests in developing low density advanced material sy...
La protection du molybdène contre l'oxydation haute température peut être réalisée par simple silici...
The oxidation of a Mo(Si,Al)(2) composite is investigated at 1500 degrees C in dry air using exposur...