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Please use this identifier to cite or link to this item: http://dspace.bsu.edu.ru/handle/123456789/48142
Title: Refractory TaTiNb, TaTiNbZr, and TaTiNbZrX (X = Mo, W) high entropy alloys by combined use of high energy ball milling and spark plasma sintering: Structural characterization, mechanical properties, electrical resistivity, and thermal conductivity
Authors: Shkodich, N. F.
Kuskov, K. V.
Sedegov, A. S.
Panina, E.
Stepanov, N.
Keywords: technique
metal science
refractory high entropy alloys
high energy ball milling
spark plasma sintering
bcc solid solutions
electrical resistivity
thermal conductivity
mechanical properties
Issue Date: 2022
Citation: Refractory TaTiNb, TaTiNbZr, and TaTiNbZrX (X = Mo, W) high entropy alloys by combined use of high energy ball milling and spark plasma sintering: Structural characterization, mechanical properties, electrical resistivity, and thermal conductivity / N.F. Shkodich [et al.] // Journal of Alloys and Compounds. - 2022. - Vol.893.-Art. 162030. - Doi: 10.1016/j.jallcom.2021.162030. - URL: https://www.sciencedirect.com/science/article/pii/S0925838821034393
Abstract: Refractory TaTiNb, TaTiNbZr, and TaTiNbZrX (X = Mo, W) high entropy alloys were synthesized by combined use of high energy ball milling (HEBM) and spark plasma sintering (SPS). Powders of predominantly bcc TaTiNbZrX (X = Mo, W) refractory high entropy alloys (RHEAs) were successfully prepared by short-term HEBM (60 min) and then SPS-consolidated at 1373 K for 10 min
URI: http://dspace.bsu.edu.ru/handle/123456789/48142
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