Conferences

HIGH-TEMPERATURE OXIDATION OF HIGH-ENTROPY AlCrFeCoNiMnх ALLOYS

  
M.I. Yakubiv 1,
   
M.P. Naumenko 2
 

1 I. M. Frantsevich Institute for Problems of Materials Science of the NAS of Ukraine, Omeliana Pritsaka str.,3, Kyiv, 03142, Ukraine
2 National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, 37, Prosp. Peremohy, Kiev, 03056, Ukraine
olenka2403@ukr.net

Powder Metallurgy - Kiev: Frantsevich Institute for Problems of Materials Science NASU, 2023, #05/06
http://www.materials.kiev.ua/article/3601

Abstract

The evolution of phase composition and thermal oxidation behavior of high-entropy AlCrFeCoNiMnх alloys (х = 0.5, 1) during long-term oxidation at 900 °C was studied. A single-phase ordered (B2) bcc alloy formed in the starting as-cast state regardless of manganese content. The scale structure varied with exposure time and manganese content. After 10 h of oxidation, high-entropy spinel-type MeMn2O4 and Mn3Oand Al2O3 formed on the AlCrFeCoNiMnalloy, while only Mn3Oand Al2O3 oxides on the AlCrFeCoNiMn0.5 alloy. Increasing in the oxidation time of the equiatomic alloy up to 25 h led to spinel NiMn2O4 and bixbyite FeMnO3 in the oxide film, Mn3Oand Al2O3 were also present.The phase composition of the oxidized layer on the AlCrFeCoNiMn0.5 alloy did not change. After 50 h, the structure of the oxide scale was similar for both alloys and consisted of NiMn2O4, FeMnO3, Mn3O4, and Al2O3 in different ratios. The oxidation kinetics of the alloys naturally depended on the manganese content: the higher the manganese content, the higher the oxidation rate. A continuous layer of the fcc solid solution rich in chromium, iron, and cobalt was observed under the scale in both alloys. An internal oxidation area was also found in the subscale layer of the AlCrFeCoNiMnalloy. Long-term (more than 50 h) holding at 900 °С substantially changed the phase composition of the alloy matrices: the bcc (B2) solid solution underwent spinodal decomposition to form bcc and fcc phases and tetragonal s phase.  Microhardness studies of the alloy matrices showed a sharp increase in hardness after annealing. This can be attributed to the formation of a significant amount of the s phase.


ELECTRON DENSITY, HEAT-RESISTANCE, HIGH-ENTROPY ALLOY, MICROHARDNESS, MICROSTRUCTURE, ORDERING, OXIDE, SCALE, SOLID SOLUTION