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@inproceedings{1348274, author = {Buršík, Jiří and Kuběna, Ivo and Buršíková, Vilma and Souček, Pavel and Zábranský, Lukáš and Vašina, Petr}, address = {Switzerland}, booktitle = {Defect and Diffusion Forum}, doi = {http://dx.doi.org/10.4028/www.scientific.net/DDF.368.107}, editor = {Louda P.}, keywords = {nanolaminate; FIB; SEM; TEM; fracture toughness}, howpublished = {tištěná verze "print"}, language = {eng}, location = {Switzerland}, isbn = {978-3-03835-720-9}, pages = {107-110}, publisher = {Trans Tech Publications Ltd}, title = {Mo-B-C and Ta-B-C Nanostructured Layers with Promising Fracture Toughness}, year = {2016} }
TY - JOUR ID - 1348274 AU - Buršík, Jiří - Kuběna, Ivo - Buršíková, Vilma - Souček, Pavel - Zábranský, Lukáš - Vašina, Petr PY - 2016 TI - Mo-B-C and Ta-B-C Nanostructured Layers with Promising Fracture Toughness PB - Trans Tech Publications Ltd CY - Switzerland SN - 9783038357209 KW - nanolaminate KW - FIB KW - SEM KW - TEM KW - fracture toughness N2 - 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. ER -
BURŠÍK, Jiří, Ivo KUBĚNA, Vilma BURŠÍKOVÁ, Pavel SOUČEK, Lukáš ZÁBRANSKÝ and Petr VAŠINA. Mo-B-C and Ta-B-C Nanostructured Layers with Promising Fracture Toughness. In Louda P. \textit{Defect and Diffusion Forum}. Switzerland: Trans Tech Publications Ltd, 2016, p.~107-110. ISBN~978-3-03835-720-9. Available from: https://dx.doi.org/10.4028/www.scientific.net/DDF.368.107.
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