The oxidation behavior of a nanolayered MoSi2/SiC composite material was determined at the temperature range of 400–900 °C in wet oxidation conditions. The samples were produced in the form of thin films using a sputtering technique from two different sources, and a rotating substrate holder, onto silicon single crystals and low carbon steel. For comparison, the oxidations of both constituents, MoSi2 and SiC, produced with the same sputtering technique, were measured separately. The microstructure of the MoSi2/SiC samples was determined with high resolution transmission electron microscopy (HRTEM), and the composition of the sputtered samples was measured using backscattering (BS) of protons. For quantitative determination of oxidation, the...
A systematic study of the structure-mechanical properties relationship is reported for both single p...
SiC/MoSi2-SiC-Si coatings for nuclear graphite spheres with different Si-Mo ratios were prepared thr...
The oxidation of a Mo(Si,Al)2-based composite is investigated in the temperature range 900–1600 C in...
The oxidation behavior of a nanolayered MoSi2/SiC composite material was determined at the temperatu...
The structure, hardness and elastic properties, and oxidation behavior of a nanolayered MoSi2/SiC st...
The oxidation characteristics of a MoSi2-based composite within the temperature range of 400–550 \ub...
Single-crystal MoSi$\sb2$ and four polycrystalline MoSi$\sb2$ materials prepared by three different ...
Synthesis of fully dense MoSi2-SiC composites without Si02-inclusions was performed, and oxidation b...
The oxidation of a MoSi2 composite was studied in dry air, oxygen and oxygensaturated with 10% water...
The oxidation of a MoSi2 composite was studied in the temperature range 400–500\ub0C. The peak pesti...
The oxidation of a MoSi2 composite was studied in the temperature range 400–500°C. The peak pesting ...
The oxidation characteristics of a MoSi2-based composite in O2 and O2+10% H2O at 600 and 700 °C were...
The oxidation characteristics of a MoSi2-based composite in O2 and O2+10% H2O at 600 and 700 \ub0C w...
In the first part of this paper a literature survey on the oxidation behaviour of MoSi2 and MoSi2 ...
The oxidation behaviour of dense MoSi_2 and of MoSi_2 as a coating material on porous ceramics (recr...
A systematic study of the structure-mechanical properties relationship is reported for both single p...
SiC/MoSi2-SiC-Si coatings for nuclear graphite spheres with different Si-Mo ratios were prepared thr...
The oxidation of a Mo(Si,Al)2-based composite is investigated in the temperature range 900–1600 C in...
The oxidation behavior of a nanolayered MoSi2/SiC composite material was determined at the temperatu...
The structure, hardness and elastic properties, and oxidation behavior of a nanolayered MoSi2/SiC st...
The oxidation characteristics of a MoSi2-based composite within the temperature range of 400–550 \ub...
Single-crystal MoSi$\sb2$ and four polycrystalline MoSi$\sb2$ materials prepared by three different ...
Synthesis of fully dense MoSi2-SiC composites without Si02-inclusions was performed, and oxidation b...
The oxidation of a MoSi2 composite was studied in dry air, oxygen and oxygensaturated with 10% water...
The oxidation of a MoSi2 composite was studied in the temperature range 400–500\ub0C. The peak pesti...
The oxidation of a MoSi2 composite was studied in the temperature range 400–500°C. The peak pesting ...
The oxidation characteristics of a MoSi2-based composite in O2 and O2+10% H2O at 600 and 700 °C were...
The oxidation characteristics of a MoSi2-based composite in O2 and O2+10% H2O at 600 and 700 \ub0C w...
In the first part of this paper a literature survey on the oxidation behaviour of MoSi2 and MoSi2 ...
The oxidation behaviour of dense MoSi_2 and of MoSi_2 as a coating material on porous ceramics (recr...
A systematic study of the structure-mechanical properties relationship is reported for both single p...
SiC/MoSi2-SiC-Si coatings for nuclear graphite spheres with different Si-Mo ratios were prepared thr...
The oxidation of a Mo(Si,Al)2-based composite is investigated in the temperature range 900–1600 C in...