TRIBOLOGICAL PROPERTIES OF PISTON RINGS DESIGNEDFOR SLIDING AGAINST COMPOSITE MATERIALSIN LUBRICATED CONTACTS

Author:

Posmyk Andrzej1ORCID

Affiliation:

1. Silesian University of Transport and Aviation Engineering

Abstract

The paper presents basic information on the production, structure and tribological properties of a compositechromium-ceramic coating deposited electrolytically on a cast-iron piston ring for a combustion enginedesigned for sliding against a composite cylinder liner. The results of comparative tests of two contacts,i.e. cast-iron GJL-250/AlMC and GJL250+Cr-Al2O3/AlMC, are described. The deposition of the Cr-Al2O3coating on the cast-iron piston ring reduces almost trifold the wear of the piston ring and about 20% thefriction resistance in the contact due to the presence of aluminium oxide particles and fibres. The reinforcingphase removed from the chromium layer polishes the chromium and composite sliding surfaces. The placesleft by the removed particles serve as depots for oil, which reduces the friction forces and minimises oilconsumption. The Al2O3 wear debris decreases the roughness of the surfaces in contact, which additionallyreduces the friction forces according to the friction hypothesis of Ernst and Merchant.

Publisher

Index Copernicus

Subject

General Medicine

Reference16 articles.

1. Nakada M.: Trends in engine technology and tribology, Tribology Internat. 1994, Vol. 27 (1), pp. 3–8.

2. Posmyk A.: Tribologia materiałów kompozytowych w pojazdach samochodowych. Wyd. PolitechnikiŚląskiej Gliwice 2020.

3. Pędzich Z.: Zużycie abrazyjne kompozytów na osnowie tlenku glinu, Kompozyty 2007, 7(3), pp. 149––154.

4. Lubecki M., Stosiak M., Leśniewski T.: Comparative studies of tribological properties of selectedpolymer resins for use in hydraulic systems, Tribologia 2019, 6, pp. 31–37.

5. Linsmeier K-D.: Technische Keramik Werkstoff für höchste Ansprüche, Verlag Moderne IndustrieLandsberg/Lech 2010.

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