Page 439 - Handbook of Materials Failure Analysis
P. 439
References 437
[53] Korunsky AM, McGurk MR, Bull SJ, Page TF. On the hardness of coated systems. Surf
Coat Technol 1998;99:171–83.
[54] Krella A, Czyz ˙niewski A. Influence of the substrate hardness on the cavitation erosion
resistance of TiN coating. Wear 2007;263:395–401.
[55] Chou W-J, Yu G-P, Huang J-H. Mechanical properties of TiN thin film coatings on 304
stainless steel substrates. Surf Coat Technol 2002;149:7–13.
[56] Immarigeon J-P, Chow D, Parameswaran VR, Au P, Saari H, Koul AK. Erosion testing
of coatings for aero engine compressor components. Adv Perform Mater
1997;4:371–88.
[57] Jeon S, Choi Y, Shin H-G, Park H, Lee H, Seo N. Degradation behavior of TiN coatings
with different thicknesses after a pulsed laser thermal shock test. Korean J Metall Mater
2013;51:729–34.
[58] Kim KR, Suh CM, Murakami RI, Chung CW. Effect of intrinsic properties of ceramic
coatings on fatigue behavior of Cr–Mo–V steels. Surf Coat Technol 2003;171:15–23.
[59] Ma LW, Cairney JM, Hoffman MJ, Munroe PR. Effect of coating thickness on the
deformation mechanisms in PVD TiN-coated steel. Surf Coat Technol
2010;204:1764–73.
[60] Scheerer H, Hoche H, Broszeit E, Schramm B, Abele E, Berger C. Effects of the chro-
mium to aluminum content on the tribology in dry machining using (Cr, Al)N coated
tools. Surf Coat Technol 2005;200:203–7.
[61] Ma KJ, Bloyce A, Andrievski RA, Kalinnikov GV. Microstructural response of mono-
and multilayer hard coatings during indentation microhardness testing. Surf Coat Tech-
nol 1997;94–95:322–7.
[62] Casas B, Wiklund U, Hogmark S, Llanes L. Adhesion and abrasive wear resistance of
TiN deposited on electrical discharge machined WC–Co cemented carbides. Wear
2008;265:490–6.
[63] Souza RM, Sinatora A, Mustoe GGW, Moore JJ. Numerical and experimental study of
the circular cracks observed at the contact edges of the indentations of coated systems
with soft substrates. Wear 2001;251:1337–46.
[64] Chang Y-Y, Wang D-Y, Hung C-Y. Structural and mechanical properties of nano-
layered TiAlN/CrN coatings synthesized by a cathodic arc deposition process. Surf
Coat Technol 2005;200:1702–8.
[65] Bemporad E, Sebastiani M, Pecchio C, De Rossi S. High thickness Ti/TiN multilayer
thin coatings for wear resistant applications. Surf Coat Technol 2006;201:2155–65.
[66] Castanho JM, Vieira MT. Effect of ductile layers in mechanical behaviour of TiAlN thin
coatings. J Mater Process Technol 2003;143–144:352–7.
[67] Cheng YH, Browne T, Heckerman B, Bowman C, Gorokhovsky V, Meletis EI.
Mechanical and tribological properties of TiN/Ti multilayer coating. Surf Coat Technol
2010;205:146–51.
[68] Duck A, Gamer N, Gesatzke W, Griepentrog M, Osterle W, Sahre M, et al. Ti/TiN mul-
tilayer coatings: deposition technique, characterization and mechanical properties. Surf
Coat Technol 2001;142–144:579–84.
[69] Kim GS, Lee SY, Hahn JH, Lee BY, Han JG, Lee JH, et al. Effects of the thickness of Ti
buffer layer on the mechanical properties of TiN coatings. Surf Coat Technol
2003;171:83–90.
[70] Wiecinski P, Smolik J, Garbacz H, Kurzydlowski KJ. Microstructure and mechanical
properties of nanostructure multilayer CrN/Cr coatings on titanium alloy. Thin Solid
Films 2011;519:4069–73.

