Ti2AlC MAX phases have been considered as the promising protective coating materials in nuclear energy and other harsh environments due to their unique properties. However, high preparation temperatures of Ti2AlC coatings, generally >= 700 degrees C, are the main barriers to their further application on temperature-sensitive substrates. Taking the concept of surface dynamics during prolonged annealing at low-temperatures, herein we reported a quite facile strategy to fabricate high-purity Ti2AlC coatings by transforming amorphous Ti-Al-C coatings at 550 degrees C. The transformation mechanisms of Ti2AlC MAX phase were also discussed in terms of their microstructural evolutions. (C) 2019 Elsevier B.V. All rights reserved
Nanolaminated MAX-phase Ti2AlC thin films were synthesized by high-power impulse magnetron sputterin...
The main goal of this work is to contribute towards the basic understanding required to realize the ...
International audienceIn the present work we focus on the mechanisms involved in Ti2AlC MAX phase th...
In an effort to overcome the property degradation of Ti2AlC MAX phase coating used in harsh environm...
Diffusion-controlled intercalation approach to synthesize the Ti2AlC MAX phase coatings at low tempe...
MAX phase thin films have been synthesized by thermal treatment of a Ti-Al-C multilayer system. The ...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
In the field of aerospace and automotive industry the development of light materials with resistance...
Ti2AlN belongs to a family of ternary nano-laminate alloys known as the MAX phases, which exhibit a ...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
As one of the MAX phases, Ti2AlC combines attractive properties of both ceramics and metals, and has...
For the structure materials applied in the innovative nuclear energy system, the strongly environmen...
Ti3AlC2 tends to partially decompose into TiC phase during deposition by traditional thermal spray t...
Currently, the application of intermetallic γ-TiAl alloys is limited by their deterioration in stren...
MAX-phases are of increasing interest as coating material for high temperature applications due to t...
Nanolaminated MAX-phase Ti2AlC thin films were synthesized by high-power impulse magnetron sputterin...
The main goal of this work is to contribute towards the basic understanding required to realize the ...
International audienceIn the present work we focus on the mechanisms involved in Ti2AlC MAX phase th...
In an effort to overcome the property degradation of Ti2AlC MAX phase coating used in harsh environm...
Diffusion-controlled intercalation approach to synthesize the Ti2AlC MAX phase coatings at low tempe...
MAX phase thin films have been synthesized by thermal treatment of a Ti-Al-C multilayer system. The ...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
In the field of aerospace and automotive industry the development of light materials with resistance...
Ti2AlN belongs to a family of ternary nano-laminate alloys known as the MAX phases, which exhibit a ...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
As one of the MAX phases, Ti2AlC combines attractive properties of both ceramics and metals, and has...
For the structure materials applied in the innovative nuclear energy system, the strongly environmen...
Ti3AlC2 tends to partially decompose into TiC phase during deposition by traditional thermal spray t...
Currently, the application of intermetallic γ-TiAl alloys is limited by their deterioration in stren...
MAX-phases are of increasing interest as coating material for high temperature applications due to t...
Nanolaminated MAX-phase Ti2AlC thin films were synthesized by high-power impulse magnetron sputterin...
The main goal of this work is to contribute towards the basic understanding required to realize the ...
International audienceIn the present work we focus on the mechanisms involved in Ti2AlC MAX phase th...