Experimental Investigation of Ultrasonic Cavitation Erosion: Implications for Water Turbines and Hydraulic Machinery

Avtorji

Luka Kevorkijan
Univerza v Mariboru, Fakulteta za strojništvo
https://orcid.org/0009-0005-9719-882X
Tilen Jernejc
Univerza v Mariboru, Fakulteta za strojništvo
Luka Lešnik
Univerza v Mariboru, Fakulteta za strojništvo
Ignacijo Biluš
Univerza v Mariboru, Fakulteta za strojništvo
https://orcid.org/0000-0002-7071-9331

Kratka vsebina

Cavitation erosion is a major concern in water turbines and hydraulic machinery, where bubble collapse near solid surfaces leads to material degradation and reduced efficiency. In this study, ultrasonic cavitation tests were conducted using a Sonics VCX-750 ultrasonic vibratory apparatus operating at 20 kHz to investigate erosion behaviour of aluminium and steel specimens under identical conditions. The sonotrode tip was submerged 30 mm below the water surface, with amplitude of 30 µm and fluid temperature maintained at 17 °C. High-speed imaging at 100,000 frames per second captured bubble dynamics. After 3 hours of exposure, surface photographs revealed significantly more extensive erosion on aluminium compared to steel, demonstrating higher resistance of the latter to cavitation. The results highlight the importance of material selection in hydraulic applications and provide insights into cavitation mechanisms relevant to the durability and performance of water turbines.

Biografije avtorja

Luka Kevorkijan, Univerza v Mariboru, Fakulteta za strojništvo

Maribor, Slovenija. E-pošta: luka.kevorkijan@um.si

Tilen Jernejc, Univerza v Mariboru, Fakulteta za strojništvo

Maribor, Slovenija. E-pošta: tilen.jernejc@um.si

Luka Lešnik, Univerza v Mariboru, Fakulteta za strojništvo

Maribor, Slovenija. E-pošta: luka.lesnik@um.si

Ignacijo Biluš, Univerza v Mariboru, Fakulteta za strojništvo

Maribor, Slovenija. E-pošta: ignacijo.bilus@um.si

Prenosi

Izdano

16.09.2025

Kako citirati

Kevorkijan, L., Jernejc, T., Lešnik, L., & Biluš, I. (2025). Experimental Investigation of Ultrasonic Cavitation Erosion: Implications for Water Turbines and Hydraulic Machinery. In D. Lovrec & V. Tič (Eds.), & (Ed.), International Conference Fluid Power 2025: Conference Proceedings (Vols. 2025, pp. 325-334). Univerzitetna založba Univerze v Mariboru. https://doi.org/10.18690/um.fs.7.2025.23