Document details

Structural evolution of Ti-Al-Si-N nanocomposite coating

Author(s): Carvalho, S. cv logo 1 ; Rebouta, L. cv logo 2 ; Ribeiro, E. cv logo 3 ; Vaz, F. cv logo 4 ; Tavares, C. J. cv logo 5 ; Alves, E. cv logo 6 ; Barradas, N. P. cv logo 7 ; Rivière, J. P. cv logo 8

Date: 2009

Persistent ID: http://hdl.handle.net/1822/27575

Origin: RepositóriUM - Universidade do Minho


Description
Ti–Si–Al–N films were prepared by rf reactive magnetron sputtering, in static and rotation modes, using a wide range of different deposition conditions, which created conditions to obtain Ti–Al–Si–N coatings with different structural arrangements. Films prepared below a critical nitrogen flow, under conditions out of thermodynamic equilibrium, revealed a preferential growth of an fcc (Ti,Al,Si)Nx compound with a small N deficiency. With nitrogen flow above that critical value, the reduction of the lattice parameter was no longer detected. However, a thermal annealing showed that a complete thermodynamically driven segregation of the TiN and Si3N4 phases was not yet obtained. The segregation upon annealing induced a self-hardening and showed a multiphase system, where the crystalline TiN, (Ti,Al)N and (Ti,Al,Si)Nx phases were identified by X-ray diffraction. This behavior is due to the de-mixing of the solid solution associated to a small N deficiency.
Document Type Article
Language English
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