Ti2AlN belongs to a family of ternary nano-laminate alloys known as the MAX phases, which exhibit a unique combination of metallic and ceramic properties. In the present work, the dense and high-stability Ti2AlN coating has been successfully prepared through the combined cathodic arc/sputter deposition, followed by heat post-treatment. It was found that the as-deposited Ti-Al-N coating behaved a multilayer structure, where (Ti, N)-rich layer and Al-rich layer grew alternately, with a mixed phase constitution of TiN and TiAlx. After annealing at 800 degrees C under vacuum condition for 1.5 h, although the multilayer structure still was found, part of multilayer interfaces became indistinct and disappeared. In particular, the thickness of the...
Ti-Al-N coatings were deposited on high-speed steel substrates by filtered vacuum arc deposition (FV...
AbstractTi1-xAlxN (0.25≤x≤0.75) coatings were deposited by reactive DC/RF magnetron co-sputtering. T...
In the field of aerospace and automotive industry the development of light materials with resistance...
The objectives of this work are the synthesis of coatings and thin films of Ti2AlN (Hägg phase or 21...
MAX-phases are of increasing interest as coating material for high temperature applications due to t...
In an effort to overcome the property degradation of Ti2AlC MAX phase coating used in harsh environm...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
Nanolaminated MAX-phase Ti2AlC thin films were synthesized by high-power impulse magnetron sputterin...
Currently, the application of intermetallic γ-TiAl alloys is limited by their deterioration in stren...
MAX phase thin films have been synthesized by thermal treatment of a Ti-Al-C multilayer system. The ...
In this work, we investigate the relation between the diffusion behavior of Ti1-xAlxN at elevated te...
In this work, we investigate the relation between the diffusion behavior of Ti1-xAlxN at elevated te...
Ti-Al-N coatings were deposited on high-speed steel substrates by filtered vacuum arc deposition (FV...
Ti-Al-N films with different compositions were prepared by varying the nitrogen flow rate using puls...
Ti-Al-N coatings were deposited on high-speed steel substrates by filtered vacuum arc deposition (FV...
AbstractTi1-xAlxN (0.25≤x≤0.75) coatings were deposited by reactive DC/RF magnetron co-sputtering. T...
In the field of aerospace and automotive industry the development of light materials with resistance...
The objectives of this work are the synthesis of coatings and thin films of Ti2AlN (Hägg phase or 21...
MAX-phases are of increasing interest as coating material for high temperature applications due to t...
In an effort to overcome the property degradation of Ti2AlC MAX phase coating used in harsh environm...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
In this study the oxidation resistant and MAX-phase based material Ti2AlC was investigated as coatin...
Nanolaminated MAX-phase Ti2AlC thin films were synthesized by high-power impulse magnetron sputterin...
Currently, the application of intermetallic γ-TiAl alloys is limited by their deterioration in stren...
MAX phase thin films have been synthesized by thermal treatment of a Ti-Al-C multilayer system. The ...
In this work, we investigate the relation between the diffusion behavior of Ti1-xAlxN at elevated te...
In this work, we investigate the relation between the diffusion behavior of Ti1-xAlxN at elevated te...
Ti-Al-N coatings were deposited on high-speed steel substrates by filtered vacuum arc deposition (FV...
Ti-Al-N films with different compositions were prepared by varying the nitrogen flow rate using puls...
Ti-Al-N coatings were deposited on high-speed steel substrates by filtered vacuum arc deposition (FV...
AbstractTi1-xAlxN (0.25≤x≤0.75) coatings were deposited by reactive DC/RF magnetron co-sputtering. T...
In the field of aerospace and automotive industry the development of light materials with resistance...