MAX phases are a promising family of materials for several demanding, high-temperature applications and severe conditions. Their combination of metallic and ceramic properties makes MAX phases great candidates to be applied in energy production processes, such as high temperature heat exchangers for catalytic devices. For their successful application, however, the effect of the processing method on properties such as wear and mechanical behavior needs to be further established. In this work, the mechanical and wear properties of self-synthesized Ti3SiC2 and Cr2AlC MAX phase powders consolidated by different powder metallurgy routes are evaluated. Uniaxial pressing and sintering, cold isostatic pressing and sintering and hot pressing ...
A bulk specimen containing Ti3SiC2, TiSi2 and TiC was prepared through an in situ spark plasma sinte...
This study aimed to investigate the effect of sintering temperature on Ti3SiC2 samples' microstructu...
The MAX phases constitute a group of ternary ceramics which has received intense attention over the ...
MAX phases are a promising family of materials for several demanding, high-temperature applications...
This article belongs to the Special Issue Ceramic Processing and Sintering.MAX phases are a promisin...
In this work, we report the synthesis, deformation and tribological behaviour of a novel Ti3AlC2 – T...
MAX phase composites Ti3SiC2–TiCx and Ti3SiC2–(TiCx + TiC) were synthesized and consolidated via a p...
MAX phases are ternary carbide and/or nitride with a great potential in various application. This st...
This study explores MAX-phase materials for self-lubricating performance in high-speed turbomachiner...
MAX phase composite Ti3SiC2–TiSi2–TiC based on the Tin+1SiCn system was synthesized by spark plasma ...
The main focus of this research work was to investigate the high-temperature mechanical performance ...
The physicochemical properties of porous Ti2AlC and Ti3SiC2 MAX phase compounds with controlled poro...
Synthesis and tribological behaviour of metallo-ceramics and a particulate ceramic composite have be...
Ternary layered compounds of transition metal carbides and nitrides, commonly known as MAX phase mat...
Wear failure is a bottleneck restricting applications and developments of Ti3SiC2 ceramic. Particles...
A bulk specimen containing Ti3SiC2, TiSi2 and TiC was prepared through an in situ spark plasma sinte...
This study aimed to investigate the effect of sintering temperature on Ti3SiC2 samples' microstructu...
The MAX phases constitute a group of ternary ceramics which has received intense attention over the ...
MAX phases are a promising family of materials for several demanding, high-temperature applications...
This article belongs to the Special Issue Ceramic Processing and Sintering.MAX phases are a promisin...
In this work, we report the synthesis, deformation and tribological behaviour of a novel Ti3AlC2 – T...
MAX phase composites Ti3SiC2–TiCx and Ti3SiC2–(TiCx + TiC) were synthesized and consolidated via a p...
MAX phases are ternary carbide and/or nitride with a great potential in various application. This st...
This study explores MAX-phase materials for self-lubricating performance in high-speed turbomachiner...
MAX phase composite Ti3SiC2–TiSi2–TiC based on the Tin+1SiCn system was synthesized by spark plasma ...
The main focus of this research work was to investigate the high-temperature mechanical performance ...
The physicochemical properties of porous Ti2AlC and Ti3SiC2 MAX phase compounds with controlled poro...
Synthesis and tribological behaviour of metallo-ceramics and a particulate ceramic composite have be...
Ternary layered compounds of transition metal carbides and nitrides, commonly known as MAX phase mat...
Wear failure is a bottleneck restricting applications and developments of Ti3SiC2 ceramic. Particles...
A bulk specimen containing Ti3SiC2, TiSi2 and TiC was prepared through an in situ spark plasma sinte...
This study aimed to investigate the effect of sintering temperature on Ti3SiC2 samples' microstructu...
The MAX phases constitute a group of ternary ceramics which has received intense attention over the ...