Page 437 - Handbook of Materials Failure Analysis
P. 437
References 435
[18] Patsalas P, Charitidis C, Logothetidis S. The effect of substrate temperature and biasing
on the mechanical properties and structure of sputtered titanium nitride thin films. Surf
Coat Technol 2000;125:335–40.
[19] Tian L, Zhu X, Tang B, Pan J, He J. Microstructure and mechanical properties of Cr–N
coatings by ion-beam-assisted magnetron sputtering. Mater Sci Eng A 2008;483–
484:751–4.
[20] Yoon SY, Yoon S-Y, Chung W-S, Kim KH. Impact-wear behaviors of TiN and Ti–Al–
N coatings on AISI D2 steel and WC–Co substrates. Surf Coat Technol 2004;177–
178:645–50.
[21] Czyzniewski A, Precht W, Pancielejko M, Myslinski P, Walkowiak W. Structure, com-
position and tribological properties of carbon nitride films. Thin Solid Films
1998;317:384–7.
[22] Pancielejko M, Precht W, Czyzniewski A. Tribological properties of PVD titanium car-
bides. Vacuum 1999;53:57–60.
[23] Cunha L, Andritschky M, Pischow K, Wang Z, Zarychta A, Miranda AS, et al. Perfor-
mance of chromium nitride based coatings under plastic processing conditions. Surf
Coat Technol 2000;133–134:61–7.
[24] Gautier C, Moussaoui H, Elstner F, Machet J. Comparative study of mechanical and
structure properties of CrN by d.c. magnetron sputtering and vacuum arc evaporation.
Surf Coat Technol 1996;86–87:254.
[25] Hurkmans T, Lewis DB, Paritong H, Brooks JS, Mu ¨nz W-D. Influence of ion bombard-
ment on structure and properties of unbalanced magnetron grown CrN coatings. Surf
Coat Technol 1999;114:52–9.
[26] Lugscheider E, Barimani C, Wolff C, Guerreiro S, Doepper G. Comparison of the struc-
ture of PVD-thin films deposited with different deposition energies. Surf Coat Technol
1996;86–87:177–83.
[27] Mounier E, Juliet P, Quesnel E, Pauleau Y. Dependence of tribological properties on
deposition parameters for non hydrogenated amorphous carbon films produced by mag-
netron sputtering. Surf Coat Technol 1995;76–77:548–52.
[28] Ode ´n M, Almer J, Ha ˚kansson G. The effect of bias voltage and annealing on the micro-
structure and residual stress of arc-evaporated Cr-N coatings. Surf Coat Technol
1999;120–121:272.
[29] Piot O, Machet J, Gautier C. Comparative study of CrN coatings deposited by ion plat-
ing andvacuumareevaporation.Influenceofthenatureandtheenergyofthelayer-forming
species on the structural and the mechanical properties. Surf Coat Technol 1997;94–
95:409–15.
[30] Rebholz C, Ziegele H, Leyland A, Matthews A. Structure, mechanical and tribological
properties of nitrogen-containing chromium coatings prepared by reactive magnetron
sputtering. Surf Coat Technol 1999;115:222–9.
[31] Batista JCA, Spain E, Letch M, Housden J, Beechey R. Improvements on the wear resis-
tance of high thermal conductivity Cu alloys using an electroless Ni–P coating prior to
PVD deposition. Surf Coat Technol 2006;201:4052–7.
[32] Jayaram V, Bhowmick S, Xie Z-H, Math S, Hoffman M, Biswas SK. Contact deforma-
tion of TiN coatings on metallic substrates. Mater Sci Eng A 2006;423:8–13.
[33] Krella A. Cavitation erosion of TiN and CrN coatings deposited on different substrates.
Wear 2013;297:992–7.
[34] Navinsek B, Krusic J, Pajan P. Hard coatings on soft metallic substrates. Surf Coat
Technol 1998;98:809–15.

