Details

Title

Usage of the Cast Iron Cylindrical Liner in an Automobile Engine Block

Journal title

Archives of Foundry Engineering

Yearbook

2024

Volume

vol. 24

Issue

No 2

Affiliation

Orłowicz, A. : Rzeszow University of Technology, Poland ; Radoń, M. : Rzeszow University of Technology, Poland ; Lenik, M. : Rzeszow University of Technology, Poland ; Wnuk, G. : Rzeszow University of Technology, Poland

Authors

Keywords

Cylinder liner ; Phosphoric eutectic ; Graphite ; Macro and micro wear

Divisions of PAS

Nauki Techniczne

Coverage

159-163

Publisher

The Katowice Branch of the Polish Academy of Sciences

Bibliography


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[4] Pietrowski, S. (2004). Construction of the alfined layer on gray cast iron. Archives of Foundry. 4(11), 95-104. (in Polish).

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[10] Kozaczewski, W. (2004). Construction of the piston-cylinder group of combustion engines. Wydawnictwa Komunikacji i Łączności WKŁ. (in Polish).

[11] Podrzucki, Cz. (1991). Cast iron: structure, properties, application. Kraków: Wydaw. ZG STOP.

[12] Çakır, M. & Akcay, İ.H. (2014). Frictional behavior between piston ring and cylinder liner in engine condition with application of reciprocating test. International Journal of Materials Engineering and Technology. 11(1), 57-71.

[13] Shirokov, V.V., Arendar, L.A., Slyn’ko, H.I. & Volchok, I.P. (2003). Influence of phosphide eutectics on the wear resistance of high-strength cast irons. Materials Science. 39(2), 295-298. DOI: 10.1023/B:MASC.0000010284.56057.72.

[14] Uetz, H. (1969). Einfluß der honbearbeitung von zylinderlaufbuchsen auf die innere grenz-schicht und den einlaufverschleiß. Forschungsvereinigung Verbrennungskraftmaschinen. MTZ, 3.

[15] Ronen, A., Etsion, I. & Kligerman, Y. (2001). Friction-reducing surface-texturing in reciprocating automotive components. Tribology Transaction. 44(3), 359-366. DOI: 10.1080/10402000108982468.

[16] Picas, J.A., Forn, A. & Matthäus, G. (2006). HVOF coatings as an alternative to hard chrome for pistons and valves. Wear. 261(5-6), 477-484. DOI: 10.1016/j.wear.2005.12.005.

[17] Skopp, A., Kelling, N., Woydt, M. & Bergrer, L.-M. (2007). Thermally sprayed titanium suboxide coatings for piston ring/cylinder liners under mixed lubrication and dry-running conditions. Wear. 262(9-10), 1061-1070. DOI: 10.1016/j.wear.2006.11.012.

[18] Grabon, W., Pawlus, P., Woś, S., Koszela, W. & Wieczorowski, M. (2016). Effects of honed cylinder liner surface texture on tribological properties of piston ring-liner assembly in short time tests. Tribology International. 113, 137-148. DOI: 10.1016/j.triboint.2016.11.025.

[19] Johansson, S., Nilsson, P.H., Ohlsson, R. & Rosén, B.-G. (2011). Experimental friction evaluation of cylinder liner/piston ring contact. Wear. 271(3-4), 625-633. DOI: 10.1016/j.wear.2010.08.028.

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[22] Orłowicz, A.W., Mróz, M., Tupaj, M., Trytek, A. (2015). Shaping the microstructure of cast iron automobile cylinder liners aimed at providing high service properties. Archives of Foundry Engineering. 15(2), 79-84. DOI : 10.1515/afe-2015-0043.

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Date

1.07.2024

Type

Article

Identifier

DOI: 10.24425/afe.2024.149284
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