Formation mechanism of micro/nano-structures through competitive reactions in Mg/Cu super-laminate composites during initial hydrogenation
Author:
Funder
JSPS KAKENHI
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference13 articles.
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2. Notable hydriding properties of a nanostructured composite material of the Mg2Ni–H system synthesized by reactive mechanical grinding;Orimo;Acta Mater.,1997
3. Hydrogen desorption kinetics of a mechanically milled MgH2+5at.%V nanocomposite;Liang;J. Alloys Comp.,2000
4. The reaction of hydrogen with alloys of magnesium and copper;Reilly;Inorg. Chem.,1967
5. The reaction of hydrogen with alloys of magnesium and Nickel and the formation of Mg2NiH4;Reilly;Inorg. Chem.,1968
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1. Effect of annealing on the structure, mechanical and electrical properties of Cu/Mg-composite wires;Materials Characterization;2022-01
2. Elucidation of Microstructure Formation Mechanism through Competitive Reactions during Initial Hydrogenation in Mg/Cu Super-Laminate Composites;Journal of the Japan Institute of Metals and Materials;2021-06-01
3. Magnesium-Based Materials for Hydrogen Storage: Microstructural Properties;Magnesium - The Wonder Element for Engineering/Biomedical Applications;2020-02-26
4. Interfacial microstructure and mechanical behavior of Mg/Cu bimetal composites fabricated by compound casting process;Transactions of Nonferrous Metals Society of China;2019-07
5. Elucidation of Microstructure Formation Mechanism through Competitive Reactions during Initial Hydrogenation in Mg/Cu Super-Laminate Composites;MATERIALS TRANSACTIONS;2019-05-01
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