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Cavitation erosion resistance of some refractory ceramics

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2025
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Аутори
Volkov-Husović, Tatjana
Martinović, Sanja
Alil, Ana
Чланак у часопису (Објављена верзија)
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Апстракт
Cavitation erosion can be observed as a hazardous phenomenon that has a significant impact on the behavior and lifetime of engineering materials under operating conditions. This phenomenon is a result of fluid flow conditions and can cause the formation of pits and defects, resulting in not only reduced mechanical properties but also a potential risk of hydraulic system components failure and break. The study presents the results of cavitation erosion resistance tests of cordierite-based and alumina-based refractories (low cement high alumina castable). The samples are tested using a standardized procedure, the ultrasonic vibratory method with stationary specimens, for 150 minutes. The samples' degradation is evaluated by measuring and determining the rate of mass and volume loss, as well as the changes in the morphological parameters of defects occurring at the surface. Image analysis is used to determine pit characteristics such are number, average diameter, area, and roundness. The ...obtained results show that the dominant mechanism for the degradation of the cordierite samples is pit formation, as the number of pits increases for all times of exposure, while for the low cement castable degradation is in the form of grains, with low roundness.

Кључне речи:
cavitation erosion / cordierite-based ceramics / alumina-based castable / volume loss / image analysis
Извор:
Journal of Innovative Materials in Extreme Conditions, 2025, 6, 1, 1-12
Финансирање / пројекти:
  • Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200135 (Универзитет у Београду, Технолошко-металуршки факултет) (RS-MESTD-inst-2020-200135)
  • Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200026 (Универзитет у Београду, Институт за хемију, технологију и металургију - ИХТМ) (RS-MESTD-inst-2020-200026)

ISSN: 2738-0882

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_vinar_16111
URI
https://vinar.vin.bg.ac.rs/handle/123456789/16111
Колекције
  • Journal of Innovative Materials in Extreme Conditions
Институција/група
Vinča
TY  - JOUR
AU  - Volkov-Husović, Tatjana
AU  - Martinović, Sanja
AU  - Alil, Ana
PY  - 2025
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/16111
AB  - Cavitation erosion can be observed as a hazardous phenomenon that has a significant impact on the behavior and lifetime of engineering materials under operating conditions. This phenomenon is a result of fluid flow conditions and can cause the formation of pits and defects, resulting in not only reduced mechanical properties but also a potential risk of hydraulic system components failure and break. The study presents the results of cavitation erosion resistance tests of cordierite-based and alumina-based refractories (low cement high alumina castable). The samples are tested using a standardized procedure, the ultrasonic vibratory method with stationary specimens, for 150 minutes. The samples' degradation is evaluated by measuring and determining the rate of mass and volume loss, as well as the changes in the morphological parameters of defects occurring at the surface. Image analysis is used to determine pit characteristics such are number, average diameter, area, and roundness. The obtained results show that the dominant mechanism for the degradation of the cordierite samples is pit formation, as the number of pits increases for all times of exposure, while for the low cement castable degradation is in the form of grains, with low roundness.
T2  - Journal of Innovative Materials in Extreme Conditions
T1  - Cavitation erosion resistance of some refractory ceramics
VL  - 6
IS  - 1
SP  - 1
EP  - 12
UR  - https://hdl.handle.net/21.15107/rcub_vinar_16111
ER  - 
@article{
author = "Volkov-Husović, Tatjana and Martinović, Sanja and Alil, Ana",
year = "2025",
abstract = "Cavitation erosion can be observed as a hazardous phenomenon that has a significant impact on the behavior and lifetime of engineering materials under operating conditions. This phenomenon is a result of fluid flow conditions and can cause the formation of pits and defects, resulting in not only reduced mechanical properties but also a potential risk of hydraulic system components failure and break. The study presents the results of cavitation erosion resistance tests of cordierite-based and alumina-based refractories (low cement high alumina castable). The samples are tested using a standardized procedure, the ultrasonic vibratory method with stationary specimens, for 150 minutes. The samples' degradation is evaluated by measuring and determining the rate of mass and volume loss, as well as the changes in the morphological parameters of defects occurring at the surface. Image analysis is used to determine pit characteristics such are number, average diameter, area, and roundness. The obtained results show that the dominant mechanism for the degradation of the cordierite samples is pit formation, as the number of pits increases for all times of exposure, while for the low cement castable degradation is in the form of grains, with low roundness.",
journal = "Journal of Innovative Materials in Extreme Conditions",
title = "Cavitation erosion resistance of some refractory ceramics",
volume = "6",
number = "1",
pages = "1-12",
url = "https://hdl.handle.net/21.15107/rcub_vinar_16111"
}
Volkov-Husović, T., Martinović, S.,& Alil, A.. (2025). Cavitation erosion resistance of some refractory ceramics. in Journal of Innovative Materials in Extreme Conditions, 6(1), 1-12.
https://hdl.handle.net/21.15107/rcub_vinar_16111
Volkov-Husović T, Martinović S, Alil A. Cavitation erosion resistance of some refractory ceramics. in Journal of Innovative Materials in Extreme Conditions. 2025;6(1):1-12.
https://hdl.handle.net/21.15107/rcub_vinar_16111 .
Volkov-Husović, Tatjana, Martinović, Sanja, Alil, Ana, "Cavitation erosion resistance of some refractory ceramics" in Journal of Innovative Materials in Extreme Conditions, 6, no. 1 (2025):1-12,
https://hdl.handle.net/21.15107/rcub_vinar_16111 .

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