[1]
P. Yashar, S. A. Barnett, J. Rechner and W. D. Sproul, Structure and mechanical properties of polycrystalline CrN/TiN superlattices, J. Vac. Sci. Technol. A16 (1998) 2913.
DOI: 10.1116/1.581439
Google Scholar
[2]
S. Veprek, M. Jilek; Super- and ultrahard nanocomposite coatings: generic concept for their preparation, properties and industrial applications; Vacuum 67 (2002) 443-49.
DOI: 10.1016/s0042-207x(02)00229-4
Google Scholar
[3]
J. Keckes, R. Daniel, C. Mitterer, I. Matko, B. Sartory, A. Köpf, R. Weissenbacher, R. Pitonak (2013), Self-organized periodic soft-hard nanolamellae in polycrystalline TiAlN thin films, Thin Solid Films 545, 29-32.
DOI: 10.1016/j.tsf.2013.08.001
Google Scholar
[4]
S. Ulrich, C. Ziebert, M. Stüber, E. Nold, H. Holleck, M. Göken, E. Schweitzer, P. Schloßmacher, Correlation between constitution, properties and machining performance of TiN/ZrN multilayers, Surf. Coat. Tech. 188-189 (2004) 331–337.
DOI: 10.1016/j.surfcoat.2004.08.056
Google Scholar
[5]
C. Ziebert, C. Bauer, M. Stüber, S. Ulrich, H. Holleck, Characterisation of the interface region in stepwise bias-graded layers of DLC films by a high-resolution depth profiling method, Thin Solid Films 482 (1-2) (2005) 63–68.
DOI: 10.1016/j.tsf.2004.11.117
Google Scholar
[6]
C. Ziebert, S. Ulrich, Hard multilayer coatings containing TiN and/or ZrN: A review and recent progress in their nanoscale characterization, Journ. Vac. Sci. Techn. A 24 (3) (2006) 554–583.
DOI: 10.1116/1.2194031
Google Scholar
[7]
W. Oliver, G. Pharr, Improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments, J. Mater. Res. 7 (6) (1992) 1564–1580.
DOI: 10.1557/jmr.1992.1564
Google Scholar
[8]
R. Daniel, J. Keckes, I. Matko, M. Burghammer, C. Mitterer, Origins of microstructure and stress gradients in nanocrystalline thin films: The role of growth parameters and self-organization, Acta Mater. 61 (16) (2013) 6255–6266.
DOI: 10.1016/j.actamat.2013.07.009
Google Scholar
[9]
J. Keckes, M. Bartosik, R. Daniel, C. Mitterer, G. Maier, W. Ecker, J. Vila-Comamala, C. David, S. Schöder, M. Burghammer, X-ray nanodiffraction reveals strain and microstructure evolution in nanocrystalline thin films, Scr. Mater. 67 (9) (2012).
DOI: 10.1016/j.scriptamat.2012.07.034
Google Scholar
[10]
J. Keckes, I. Burgert, K. Fruhmann, M. Müller, K. Kolln, M. Hamilton, M. Burghammer, S. V. Roth, S. Stanzl-Tschegg, P. Fratzl, Cell-wall recovery after irreversible deformation of wood, Nat. Mater. 2 (12) (2003) 810–813.
DOI: 10.1038/nmat1019
Google Scholar
[11]
C. Riekel, M. Burghammer, R. Davies, Progress in micro- and nano-diffraction at the ESRF ID13 beamline, IOP C. Ser. Mat. Sci. Eng. 14 (1) (2010) 012013.
DOI: 10.1088/1757-899x/14/1/012013
Google Scholar
[12]
M. Stefenelli, J. Todt, A. Riedl, W. Ecker, T. Müller, R. Daniel, M. Burghammer, J. Keckes, X-ray analysis of residual stress gradients in TiN coatings by a Laplace space approach and cross-sectional nanodiffraction: a critical comparison, J. Appl. Crystallogr. 46 (5) (2013).
DOI: 10.1107/s0021889813019535
Google Scholar
[13]
R. Pitonak, R. Weißenbacher, A. Köpf; Austrian Patent No. 510963 B1 (18. 03. 2011), Beschichteter Körper und Verfahren zu dessen Herstellung.
Google Scholar
[14]
R. Pitonak, A. Köpf, R. Weißenbacher, J. Keckes, M. Stefenelli, J. Todt, I. Endler, M. Höhn, Novel TiAlN coating by medium temperature low pressure CVD; Proc. of the 18th Plansee Seminar, Reutte (2013).
Google Scholar
[15]
D. Rafaja, T. Merkewitz, C. Polzer, V. Klemm, G. Schreiber, P. Polcik, M. Kathrein, Proceedings 17th Plansee Seminar, Reutte (2009), Vol. 2, HM38/1-12.
Google Scholar
[16]
I. Endler, M. Höhn, M. Herrmann, R. Pitonak, S. Ruppi, M. Schneider, H. van den Berg, H. Westphal, Surf. Coat. Technol. 203, 530-533, (2008).
DOI: 10.1016/j.surfcoat.2008.04.098
Google Scholar