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Featured researches published by Marian Kupka.


Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology | 2018

Characteristics of the tribological properties of oxide layers obtained via thermal oxidation on titanium Grade 2

K. Aniołek; Marian Kupka; Adrian Barylski

Thermal oxidation is an effective technique for modifying the surface of titanium and its alloys in order to improve their poor tribological properties. This paper presents the results of tests concerning titanium Grade 2 subjected to thermal oxidation at 600 ℃ and 700 ℃ for 72 h. The morphology of the surface of the formed oxide scale was determined. The surface of a specimen oxidised at 600 ℃ was unevenly covered by very fine oxide particles. Raising the temperature to 700 ℃ made it possible to cover the entire examined surface with an oxide layer. The obtained scale was characterised by the presence of large irregularly shaped agglomerated oxide particles. Tribological tests showed that the presence of an oxide layer on the surface of titanium significantly improved the resistance of the interacting tribological couple to sliding wear. The obtained 3D isometric images of the trace of wear showed that the formed traces differed in terms of width, depth and shape. It was shown that the area of the cross section of the trace of wear decreased as the temperature of thermal oxidation increased. Scanning electron microscopic observations of traces of wear formed following tribological interaction with an Al2O3 ball showed, in a non-oxidised specimen and a specimen oxidised at 600 ℃, the presence of alternating morphologically varied areas formed as a result of corrugation wear. The oxide layer obtained at 700 ℃ has the highest resistance to sliding wear and completely eliminates the adverse corrugation wear phenomenon.


Intermetallics | 2006

High temperature strengthening of the FeAl intermetallic phase-based alloy

Marian Kupka


Intermetallics | 2004

Technological plasticity studies of the FeAl intermetallic phase-based alloy

Marian Kupka


Corrosion Science | 2009

Hydrogen permeation in Fe-40 at.% Al alloy at different temperatures

Marian Kupka; Karol Stępień


Applied Surface Science | 2015

Mechanical and tribological properties of oxide layers obtained on titanium in the thermal oxidation process

K. Aniołek; Marian Kupka; Adrian Barylski; Grzegorz Dercz


Wear | 2016

Sliding wear resistance of oxide layers formed on a titanium surface during thermal oxidation

K. Aniołek; Marian Kupka; Adrian Barylski


Materials Chemistry and Physics | 2011

Effect of alloying on corrosion resistance of B2 FeAl alloy in aqueous solution of sulfuric acid

K. Kowalski; B. Łosiewicz; Antoni Budniok; Marian Kupka


Scripta Materialia | 2008

Effect of hydrogen on room-temperature hardness of B2 FeAl alloys

Karol Stępień; Marian Kupka


Scripta Materialia | 2006

Diffusivity of hydrogen in B2 iron aluminides

Karol Stępień; Marian Kupka


Vacuum | 2015

Effect of thermal oxidation process on wear resistance of B2 iron aluminide

K. Nowak; Marian Kupka; Joanna Maszybrocka; Adrian Barylski

Collaboration


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Adrian Barylski

University of Silesia in Katowice

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K. Aniołek

University of Silesia in Katowice

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Karol Stępień

University of Silesia in Katowice

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Joanna Maszybrocka

University of Silesia in Katowice

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M. Dworak

University of Silesia in Katowice

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Sławomir Kaptacz

University of Silesia in Katowice

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K. Nowak

University of Silesia in Katowice

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Katarzyna Nowak

University of Silesia in Katowice

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Łukasz Mieszczak

University of Silesia in Katowice

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Antoni Budniok

University of Silesia in Katowice

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