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  4. Mechanical reinforcement of copper films with ceramic nanoparticles
 
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2015
Conference Paper
Titel

Mechanical reinforcement of copper films with ceramic nanoparticles

Abstract
Metal matrix nanocomposites are promising materials for applications in aerospace, automotive and electronic industries due to their excellent mechanical and physical properties. Here, a new synthesis route is developed for the preparation of ceramic particulate reinforced metal films. The homogeneous distribution of different ceramic nanoparticles (TiO2, TiC and SiC) in the range of 5-10 wt.% into copper films by a wet chemical approach results in metal matrix composites with metallic electrical conductivity and enhanced hardness and wear resistance. Reinforcing material and concentration thereof can be easily varied owing to the polymer precursor memod that is established. Electrical conductivity is marginally impaired compared to pure copper films, but still in the range of metallic conductivity. Hardness is analyzed by nanoindentation of the films. Highest hardness is found for 10 wt.% TiO2 in copper (Hit = 1-39 GPa). Improved wear and scratch resistance are shown by a pencil hardness scratch test (Wolff-Wilborn, ISO 15 184).
Author(s)
Leifert, Annika
RWTH Aachen, Institu für Organische Chemie
Mohamed-Noriega, Nasser
TU Dresden, Department of Inorganic Chemistry
Meier, Andreas
TU Dresden, Department of Inorganic Chemistry
Mondin, Giovanni
TU Dresden, Department of Inorganic Chemistry
Dörfler, Susanne
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS
Grothe, Julia
TU Dresden, Department of Inorganic Chemistry
Kaskel, Stefan
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS
Schumm, Benjamin
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS
Nowka, Christian
Leibniz-Institut fur Festkörper- und Werkstoffforschung Dresden
Hampel, Silke
Leibniz-Institut fur Festkörper- und Werkstoffforschung Dresden
Cuéllar, Enrique López
Universidad Autonoma de Nuevo Leon
Hauptwerk
Developments in Strategic Materials and Computational Design V
Konferenz
International Conference and Exposition on Advanced Ceramics and Composites (ICACC) 2014
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DOI
10.1002/9781119040293.ch31
Language
English
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Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS
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