Title of article :
Interface growth morphologies in pulsed laser deposited, room temperature grown multilayer hard coatings
Author/Authors :
Lackner، نويسنده , , Jürgen M. and Waldhauser، نويسنده , , Wolfgang and Major، نويسنده , , Roman and Major، نويسنده , , Lukasz and Major، نويسنده , , Boguslaw، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
4
From page :
4090
To page :
4093
Abstract :
The mechanical behaviour – hardness, elasticity, and adhesion – of multilayer coatings is strongly influenced by the type of the formed interfaces between the different layers. In industrially applied tribological coatings the interface region is predominantly not a perfect sudden change of the chemical composition of the adjacent crystal planes, but a transition zone of a thickness, which is strongly dependent on the energetic conditions during deposition. Multilayer coatings grown by high-energetic deposition techniques always struggle with high atomic mixing of both adjacent coating materials due to high energetic ion implantation. these high-energetic deposition techniques is the Pulsed Laser Deposition (PLD), characterized by pulsed and within one pulse alternating high- and low-energetic particle fractions, hitting successively the substrate surface. Such deposition conditions were shown to be highly advantageous for low temperature deposition by the densification of the growth structures due to activated diffusion and re-sputtering, but increases the difficulty in depositing multilayer structures. rrent paper addresses these specific growth conditions based on Ti/TiN and Cr/CrN multilayer coatings. High resolution transmission electron microscopy results show that the atomic mixing at the interface is not highly critical for the deposition of multilayer coatings and that extremely dense growth structures are forming even in the interface regions.
Keywords :
Interface formation , pulsed laser deposition , Room temperature deposition
Journal title :
Surface and Coatings Technology
Serial Year :
2006
Journal title :
Surface and Coatings Technology
Record number :
1814429
Link To Document :
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