Anomalous electrical conductivity in rapidly crystallized Cu100−Zr (x = 50–66.6) alloys
Author:
Funder
Russian Scientific Foundation
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference32 articles.
1. Bulk metallic glass formation in binary Cu-rich alloy series – Cu100−xZrx (x=34, 36, 38.2, 40 at.%) and mechanical properties of bulk Cu64Zr36 glass
2. Bulk metallic glass formation in the binary Cu–Zr system
3. Understanding the Glass-forming Ability of Cu50Zr50 Alloys in Terms of a Metastable Eutectic
4. Multiple maxima of GFA in three adjacent eutectics in Zr–Cu–Al alloy system – A metallographic way to pinpoint the best glass forming alloys
5. Thermodynamic and kinetic modelling: creep resistant materials
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1. Electronic transport in equiatomic CuZrNiTi alloy;Journal of Alloys and Compounds;2019-01
2. Determination of Main Components of Glass-Forming Cu–Zr Alloys;Inorganic Materials;2017-12
3. Martensitic transformation to monoclinic phase in bulk B2–CuZr;Intermetallics;2017-12
4. Electrical and thermal conductivities of rapidly crystallized Cu-Zr alloys: The effect of anharmonicity;Physica B: Condensed Matter;2016-10
5. Corrosion property of copperized layer on Zr formed by double glow plasma surface alloying technique;Rare Metals;2016-07-14
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