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Christian Mitterer

Researcher at University of Leoben

Publications -  390
Citations -  14675

Christian Mitterer is an academic researcher from University of Leoben. The author has contributed to research in topics: Coating & Thin film. The author has an hindex of 59, co-authored 374 publications receiving 12529 citations. Previous affiliations of Christian Mitterer include Austrian Academy of Sciences & Swiss Federal Laboratories for Materials Science and Technology.

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Texture development in polycrystalline CrN coatings: the role of growth conditions and a Cr interlayer

TL;DR: In this paper, the texture of transition-metal nitride coatings by varying the energy of incident ions and the coating thickness was demonstrated on polycrystalline CrN coatings grown by reactive magnetron sputtering.
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PACVD TiN/Ti–B–N multilayers: from micro- to nano-scale

TL;DR: In this article, the potential of plasma-assisted chemical vapor deposition (PACVD) for multilayers with extension to layer thicknesses in the nanometer range was investigated, and a decrease in compressive stress has been observed for a decreasing individual layer thickness, which enhanced coating adhesion on tool steels.
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Fatigue properties of Ti-based hard coatings deposited onto tool steels

TL;DR: In this paper, the authors evaluate different hard coatings deposited by PACVD and magnetron sputtering onto tool steels with respect to adhesion and fatigue and the results obtained are correlated with residual stresses of the coatings and a simulation of elastic stresses for a Hertzian pressure distribution on a coated substrate.
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High-temperature tribological behaviour of sputtered NbNx thin films

TL;DR: In this article, the tribological behavior of NbN x thin films was investigated in ambient air at temperatures up to 500°C by using ball-on-disc tests and alumina balls as counter-faces.
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Al-rich cubic Al0.8Ti0.2N coating with self-organized nano-lamellar microstructure: Thermal and mechanical properties

TL;DR: In this article, a self-organized nano-lamellar CVD coating type is presented, namely the synthesis and physical properties of a purely cubic Al 0.8 Ti 0.2 N coating.