Relation between negative temperature coefficient in electrical resistivity and athermal ω phase in Ti–xNb (26≤x≤29at.%) alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference24 articles.
1. The resistivity-temperature-concentration relationships in the system niobium-titanium
2. The omega phase transformation in titanium alloys as an example of displacement controlled reactions
3. A Monte Carlo simulation of the omega phase transformation
4. Anomalous Electrical Resistivity in Titanium-Molybdenum Alloys
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1. Composition- and temperature-dependence of β to ω phase transformation in Ti-Nb alloys;Journal of Materials Informatics;2023-07-06
2. Composition-dependent shuffle-shear coupling and shuffle-regulated strain glass transition in compositionally modulated Ti-Nb alloys;Acta Materialia;2023-03
3. Mechanical anisotropy of laser powder bed fusion fabricated Ti-41Nb alloy using pre-alloyed powder: Roles played by grain morphology and crystallographic orientation;Journal of Alloys and Compounds;2022-12
4. Characteristics of β-type Ti-41Nb alloy produced by laser powder bed fusion: Microstructure, mechanical properties and in vitro biocompatibility;Journal of Materials Science & Technology;2022-10
5. Athermal ω Phase and Lattice Modulation in Binary Zr-Nb Alloys;Materials;2022-03-21
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