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Marcin Madej
Marcin Madej
Verified email at agh.edu.pl
Title
Cited by
Cited by
Year
Effect of sintering temperature on microstructure and selected properties of spark plasma sintered Al-SiC composites
B Leszczyńska-Madej, D Garbiec, M Madej
Vacuum 164, 250-255, 2019
512019
The properties of babbitt bushes in steam turbine sliding bearings
B Leszczyńska-Madej, M Madej
archives of Metallurgy and Materials, 2011
262011
Phase reactions during sintering of M3/2 based composites with WC additions
M Madej
Archives of Metallurgy and Materials 58, 2013
222013
Wear Resistant Chromium Coatings Modified with Diamond Nanoparticles/Odporność Na Zużycie Ścierne Powłok Chromowych Modyfikowanych Nanocząstkami Diamentu
N Gidikova, M Sułowski, A Ciaś, V Petkov, M Madej, R Valov
Archives of metallurgy and materials, 2014
192014
Silver-based infiltrated composites
M Madej
Archives of Metallurgy and Materials 57 (2), 605-612, 2012
192012
The tribological properties and the microstructure investigations of tin babbit with Pb addition after heat treatment
B Leszczyńska-Madej, M Madej
Archives of metallurgy and materials 61 (4), 1861-1868, 2016
172016
The tribological properties of high speed steel based composites
M Madej
Archives of Metallurgy and Materials 55 (1), 61-68, 2010
162010
Effect of chemical composition on the microstructure and tribological properties of Sn-based alloys
B Leszczyńska-Madej, M Madej, J Hrabia-Wiśnios
Journal of Materials Engineering and Performance 28, 4065-4073, 2019
152019
Effect of heat treatment on microstructure of Al4Cu-SiC composites consolidated by powder metallurgy technique
A Wąsik, B Leszczyńska-Madej, M Madej, M Goły
Journal of Materials Engineering and Performance 29, 1841-1848, 2020
132020
Effect of the heat treatment on the microstructure and properties of tin Babbitt
B Leszczynska-Madej, M Madej
kovove Mater 51, 101-110, 2013
132013
The γ′-Ni3 (Al, Ta) phase triggered strengthening of the Ni-Ta-Al-Cr-C coating layer, deposited on austenitic stainless steel
K Wieczerzak, M Watroba, W Bednarczyk, M Madej, M Marzec, T Tokarski, ...
Materials Characterization 129, 367-377, 2017
122017
Copper infiltrated high speed steel based composites with iron additions
M Madej
Archives of Metallurgy and Materials 54 (4), 1083-1091, 2009
122009
Copper infiltrated high speed steel based composites
M Madej, J Leżański
Archives of Metallurgy and Materials 50 (4), 871-877, 2005
112005
Microstructure characterization of SiC reinforced aluminium and Al4Cu alloy matrix composites
B Leszczyńska-Madej, A Wąsik, M Madej
Archives of Metallurgy and Materials 62 (2A), 747-755, 2017
92017
The structure and properties of copper inliltrated HSS based composite
M Madej, J Leżański
Archives of Metallurgy and Materials 53 (3), 839-845, 2008
92008
The microstructure and properties of FeAl alloy strengthened with Yttrium oxide
T Śleboda, J Krawczyk, M Madej, M Paćko
Archives of Metallurgy and Materials 54 (4), 1231-1237, 2009
82009
Effects of the processing parameters of friction stir processing on the microstructure, hardness and tribological properties of SnSbCu bearing alloy
B Leszczyńska-Madej, M Madej, J Hrabia-Wiśnios, A Węglowska
Materials 13 (24), 5826, 2020
72020
High speed steel with iron addition materials sintered by spark plasma sintering
M Madej, B Leszczyńska-Madej, D Garbiec
Metals 10 (11), 1549, 2020
72020
Tungsten carbide as an addition to high speed steel based composites
M Madej
Tungsten Carbide-Processing and Applications; IntechOpen: London, UK, 57-78, 2012
72012
Selected problems of abrasion resistance of aluminized steel tubes
K Żaba, M Madej
Archives of Metallurgy and Materials 56, 859-869, 2011
72011
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Articles 1–20