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Effect of Plasma Quenching Parameters on Hardened Layer Properties in Railroad Wheels

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dc.contributor.author Kanayeva, Azamat
dc.contributor.author Kanayev, Amangeldy
dc.contributor.author Moldakhmetova, Aliya
dc.date.accessioned 2026-03-11T06:56:39Z
dc.date.available 2026-03-11T06:56:39Z
dc.date.issued 2025
dc.identifier.issn 0354-8996
dc.identifier.other DOI: 10.24874/ti.1741.08.24.10
dc.identifier.uri http://repository.enu.kz/handle/enu/30080
dc.description.abstract This research investigates the effect of quenching current, nozzle-tosurface distance, plasma-forming gas flow rate, and rate of cooling on both plasma torch travel speed (treatment speed) and nozzle diameter. Cooling rates were calculated for various quenching currents based on heat transfer theory. Results show that the relative significance of primary plasma selective quenching parameters remains consistent for both hardened zone depth and width. Notably, the effect of quenching current on hardened zone depth significantly exceeds that of other parameters, highlighting its critical role for optimizing railroad wheel performance. We propose a novel method for controlling the mechanical properties of the hardened surface through regulating wheelset rotational speed during quenching. This approach has the potential to significantly improve the wear resistance and lifespan of railroad wheels, leading to substantial cost savings for the railway industry. ru
dc.language.iso en ru
dc.publisher Tribology in Industry ru
dc.relation.ispartofseries Vol. 47, No. 1 (2025) 54-63;
dc.subject Surface hardening ru
dc.subject Plasma selective quenching ru
dc.subject Railroad wheels ru
dc.subject Structure ru
dc.subject Mechanical properties ru
dc.subject Wear resistance ru
dc.subject Rotation frequency ru
dc.title Effect of Plasma Quenching Parameters on Hardened Layer Properties in Railroad Wheels ru
dc.type Article ru


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