Lukáš Zábranský
Masaryk University
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Publication
Featured researches published by Lukáš Zábranský.
Journal of Nanomaterials | 2017
Josef Daniel; Pavel Souček; Katarína Bernátová; Lukáš Zábranský; Monika Stupavská; Vilma Buršíková; Petr Vašina
Nanocomposite nc-TiC/a-C:H thin films exhibit unique combination of mechanical properties, high hardness, low friction, and wear. Selective doping by weak-carbide forming element can be used in order to specifically design the physical and chemical properties of nc-TiC/a-C:H coatings. In this paper we report on an effect of nickel addition on structure and hardness of the nc-TiC/a-C:H coatings. The effect of Ni alloying on the coating structure under conditions of DCMS and HiPIMS depositions was studied. The coating structure was correlated with the coating hardness. The grain size, the grain carbon vacancy concentration, and the mean grain separation were found to be the key parameters determining the coating hardness. Ni doping proved to have a significant effect on the coating microstructure which resulted in changes of the hardness of the deposited coatings.
IOP Conference Series: Materials Science and Engineering | 2017
Jiří Buršík; Vilma Buršíková; Pavel Souček; Lukáš Zábranský; Petr Vašina
Microstructure and mechanical properties of Ta-B-C nanocrystalline layers prepared by magnetron sputtering were studied. DC magnetron sputtering was used to prepare thin layers on rotated substrates. Various deposition parameters were tested. Microstructure of layers was studied by means of scanning and transmission electron microscopy on thin lamellar cross sections prepared using a focussed ion beam. Both undisturbed layers and the volume under relatively large indentation prints (load of 1 N) were observed. The microstructure observations were correlated with mechanical properties characterized by means of nanoindentation experiments in both the static and the dynamic loading regime. Elastic modulus, indentation hardness and fracture resistance of prepared nanostructured coatings were evaluated and discussed.
Solid State Phenomena | 2016
Vilma Buršíková; Jaroslav Sobota; Jan Grossman; Tomáš Fořt; Libor Dupák; Lukáš Zábranský; Pavel Souček; Petr Vašina; Jiří Buršík
The aim of the present work was to study the mechanical properties of thin nanocomposite Mo-B-C coatings consisting of nanocrystalline Mo2BC embedded in amorphous Mo-B-C matrix. Magnetron sputtering of three targets, B4C, C and Mo, was used for coatings preparation. The Mo-B-C coatings were deposited on high speed steel substrates. The fracture resistance of Mo-B-C coatings was studied by both indentation and dynamic impact tests. The impact tests enabled us to predict the load limit causing the coating destruction.
Solid State Phenomena | 2016
Jiří Buršík; Ivo Kuběna; Vilma Buršíková; Pavel Souček; Lukáš Zábranský; Saeed Mirzaei; Petr Vašina
Several W-B-C layers were prepared by magnetron sputtering. The microstructure of thin layers was observed by means of scanning and transmission electron microscopy on cross sections prepared using a focused ion beam. Both undisturbed layers and the volume under indentation prints were inspected. The W-B-C layers are fine nanostructured materials about 2 μm thick and indents with loads up to 1 N do not cause any visible defects (cracks, delamination etc). The results were correlated with mechanical properties characterized by means of nanoindentation experiments in both the static and the dynamic loading regime using a Berkovich indenter. Elastic modulus, indentation hardness and fracture resistance of prepared nanostructured coatings were evaluated and discussed.
Defect and Diffusion Forum | 2016
Jiří Buršík; Ivo Kuběna; Vilma Buršíková; Pavel Souček; Lukáš Zábranský; Petr Vašina
X-B-C (X=Mo, Ta) layers prepared by magnetron sputtering were tested. Mechanical properties were characterized by means of nanoindentation experiments in both the static and the dynamic loading regime. The results were correlated with observations of the microstructure under indentation prints by means of scanning and transmission electron microscopy on cross sections prepared using a focussed ion beam. An excellent fracture resistance of prepared nanostructured coatings was found.
Defect and Diffusion Forum | 2016
Vilma Buršíková; Jiří Buršík; Lukáš Zábranský; Pavel Souček; Petr Vašina
Nanostructure coatings based on boroncarbide were prepared using magnetron sputtering technique. The mechanical properties of the coatings were tested using quasi-static and dynamic nanoindentation tests with Berkovich and cube-corner indenters. The fracture resistance of the coatings and the coating/substrate interface was studied. Moreover, the dynamic wear and scratch resistance of the coatings was evaluated by means of impact and scratch tests.
Key Engineering Materials | 2014
Vilma Buršíková; Jiří Buršík; Lukáš Zábranský; Petr Vašina; Pavel Souček; Vratislav Peřina
The aim of the present work is to study the nanoindentation induced defects in as-deposited and annealed nanocomposite n-TiC/a-C:H coatings. Furthermore, the resistance of the coatings against indentation induced defect creation was studied using TEM analysis of lamellas prepared using a focused ion beam for both as-deposited and annealed samples.
Surface & Coatings Technology | 2012
Pavel Souček; Tereza Schmidtová; Lukáš Zábranský; Vilma Buršíková; Petr Vašina; Ondřej Caha; Mojmír Jílek; Abdelazziz El Mel; Pierre-Yves Tessier; Jan Schäfer; Jiří Buršík; Vratislav Peřina; Romana Mikšová
Surface & Coatings Technology | 2017
Pavel Souček; Josef Daniel; Jaroslav Hnilica; Katarína Bernátová; Lukáš Zábranský; Vilma Buršíková; Monika Stupavská; Petr Vašina
Surface & Coatings Technology | 2014
Pavel Souček; Tereza Schmidtová; Lukáš Zábranský; Vilma Buršíková; Petr Vašina; Ondřej Caha; Jiří Buršík; Vratislav Peřina; Romana Mikšová; Y.T. Pei; J. Th. M. De Hosson