Although the crack-healing capacity of Ti2AlC ceramics has been sufficiently studied, the ability of Ti2AlC to self-heal large-scale damage, such as foreign object damage (FOD), remains unknown. This paper investigates the self-healing ability of Ti2AlC ceramics with large-scale damage (∼1000 μm in diameter). Extensive healing was observed even in the plastic damage and radial cracks. The damage and cracks caused by indentations made using a tungsten carbide sphere were filled and covered with newly formed oxides, such as titanium oxide and alumina, by the oxidation of Ti2AlC after heat treatment in air at 1000 °C. The strength, hardness, toughness, and elastic modulus of the Ti2AlC samples were measured before and after healing. The result...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
MAX phase materials are emerging as attractive engineering materials in applications where the mater...
Damage management and the development of new materials come together in selfhealing Mn+1AXn phase ce...
This work concentrates on revealing the oxidation-induced healing performance of Ti2AlC. The microst...
MAX phase materials such as Ti3AlC2, Ti2AlC and Cr2AlC are very attractive materials in their own ri...
Closure of surface cracks by self-healing of conventional and MAX phase ceramics under realistic tur...
Crack healing of Ti3AlC2 was investigated by oxidizing a partially pre-cracked sample. A crack near ...
In situ microcantilever bending tests were carried out to evaluate the healing efficiency of pre-not...
Bones of humans and animals combine two unique features, namely: they are brittle yet have a very hi...
The use of Ti2AlC MAX-phase as healing particles to heal surface cracks in alumina is studied. Pure ...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
The excellent mechanical properties in combination with the capability to autonomously repair microc...
The excellent mechanical properties in combination with the capability to autonomously repair microc...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
In this work, the oxidation-induced crack healing of Al2O3 containing 20 vol.% of Ti2AlC MAX phase i...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
MAX phase materials are emerging as attractive engineering materials in applications where the mater...
Damage management and the development of new materials come together in selfhealing Mn+1AXn phase ce...
This work concentrates on revealing the oxidation-induced healing performance of Ti2AlC. The microst...
MAX phase materials such as Ti3AlC2, Ti2AlC and Cr2AlC are very attractive materials in their own ri...
Closure of surface cracks by self-healing of conventional and MAX phase ceramics under realistic tur...
Crack healing of Ti3AlC2 was investigated by oxidizing a partially pre-cracked sample. A crack near ...
In situ microcantilever bending tests were carried out to evaluate the healing efficiency of pre-not...
Bones of humans and animals combine two unique features, namely: they are brittle yet have a very hi...
The use of Ti2AlC MAX-phase as healing particles to heal surface cracks in alumina is studied. Pure ...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
The excellent mechanical properties in combination with the capability to autonomously repair microc...
The excellent mechanical properties in combination with the capability to autonomously repair microc...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
In this work, the oxidation-induced crack healing of Al2O3 containing 20 vol.% of Ti2AlC MAX phase i...
The reduction of maintenance and replacement work costs is an important driving force in the develop...
MAX phase materials are emerging as attractive engineering materials in applications where the mater...
Damage management and the development of new materials come together in selfhealing Mn+1AXn phase ce...