New Ternary Copper–Nickel Alloys with Refractory Elements for Epitaxial Substrates
The quality of the crystallographic texture is analyzed for thin ribbons made of ternary Cu–40% Ni– Me ( Me = Nb, Mo, or W) alloys, which are promising materials for epitaxial substrates. Optimal regimes of recrystallization annealing of ~100-μm-thick ribbons made of these alloys are determined, whi...
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Veröffentlicht in: | Technical physics letters 2020-12, Vol.46 (12), p.1170-1173 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The quality of the crystallographic texture is analyzed for thin ribbons made of ternary Cu–40% Ni–
Me
(
Me
= Nb, Mo, or W) alloys, which are promising materials for epitaxial substrates. Optimal regimes of recrystallization annealing of ~100-μm-thick ribbons made of these alloys are determined, which provide perfect cubic texture with a fraction of {001}〈100〉 grains of more than 96%. The proposed alloys are paramagnetic at operating temperatures of a high-temperature superconductor and less expensive than the nickel ones; therefore, they may be an alternative to the Ni–4.8 at % W alloy, which is most popular in the production of ribbon substrates. |
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ISSN: | 1063-7850 1090-6533 |
DOI: | 10.1134/S106378502012010X |