The ternary carbides and nitrides, known as MAX phases combine the attractive properties of both ceramics and metals; for example the Ti2AlC ceramics examined in this work have attracted attention for aerospace applications. In the current work Ti2AlC ceramics were subjected to high level thermal shock (ΔT=1100 °C) from a temperature of 1200 °C with a cooling rate of more than 90 °C/sec. After the thermal shock process the mechanical properties and the microstructure were investigated. Combined thermal shock and mechanical loading with an applied stress of 0, 50, 100 and 150 MPa was examined and in all cases the samples maintained their microstructure without any micro-cracks or phase change as observed. Compression testing of all samples t...
MAX phase materials such as Ti3AlC2, Ti2AlC and Cr2AlC are very attractive materials in their own ri...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66260/1/j.1151-2916.1976.tb09415.x.pd
High density samples of Ti2AlC, a MAX Phase material, with three different grain sizes were processe...
The ternary carbides and nitrides, known as MAX phases combine the attractive properties of both cer...
The main focus of this research work was to investigate the high-temperature mechanical performance ...
As one of the MAX phases, Ti2AlC combines attractive properties of both ceramics and metals, and has...
In this work, the rapid thermal shock behavior of Ti2AlC ceramics was studied using induction heatin...
To improve the performance, efficiency and safety of future equipment’s in commercial, aerospace, nu...
The behaviour of some commercial tool carbides and turbine ceramics has been investigated in regard ...
AbstractThe behavior of the material subjected to thermal shock is influenced by its phase stability...
Among ultrahigh temperature ceramics (UHTC), ZrB2-based ceramics have received the most attention fo...
In this article, we report on the fabrication and characterization of Ti2AlC, Ti2AlN, and Ti2AlC0.5N...
MAX phases are ternary carbide and/or nitride with a great potential in various application. This st...
Ternary layered compounds of transition metal carbides and nitrides, commonly known as MAX phase mat...
Although the crack-healing capacity of Ti2AlC ceramics has been sufficiently studied, the ability of...
MAX phase materials such as Ti3AlC2, Ti2AlC and Cr2AlC are very attractive materials in their own ri...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66260/1/j.1151-2916.1976.tb09415.x.pd
High density samples of Ti2AlC, a MAX Phase material, with three different grain sizes were processe...
The ternary carbides and nitrides, known as MAX phases combine the attractive properties of both cer...
The main focus of this research work was to investigate the high-temperature mechanical performance ...
As one of the MAX phases, Ti2AlC combines attractive properties of both ceramics and metals, and has...
In this work, the rapid thermal shock behavior of Ti2AlC ceramics was studied using induction heatin...
To improve the performance, efficiency and safety of future equipment’s in commercial, aerospace, nu...
The behaviour of some commercial tool carbides and turbine ceramics has been investigated in regard ...
AbstractThe behavior of the material subjected to thermal shock is influenced by its phase stability...
Among ultrahigh temperature ceramics (UHTC), ZrB2-based ceramics have received the most attention fo...
In this article, we report on the fabrication and characterization of Ti2AlC, Ti2AlN, and Ti2AlC0.5N...
MAX phases are ternary carbide and/or nitride with a great potential in various application. This st...
Ternary layered compounds of transition metal carbides and nitrides, commonly known as MAX phase mat...
Although the crack-healing capacity of Ti2AlC ceramics has been sufficiently studied, the ability of...
MAX phase materials such as Ti3AlC2, Ti2AlC and Cr2AlC are very attractive materials in their own ri...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/66260/1/j.1151-2916.1976.tb09415.x.pd
High density samples of Ti2AlC, a MAX Phase material, with three different grain sizes were processe...