Recent Progress in Bulk Glassy Alloys

Последние достижения в области массивных аморфных сплавов
Akihisa Inoue, A. Takeuchi
2002-01-01

atomic configurationbulk glassy alloysglass-forming abilitymechanical propertiessupercooled liquid
This paper deals with recent progress in stabilized supercooled liquid and the resulting bulk glassy alloys and focusing on the following factors; alloy composition, forming ability, formation mechanism, computed glass-forming ability, computed glass formation range, atomic configuration, production techniques, mechanical properties, corrosion resistance, soft magnetic properties, micro-forming ability, applications, significance to science and engineering, and future trends for bulk glassy alloys including supercooled liquid.As demonstrated in this review, the high stability of metallic supercooled liquid has already opened up new fields of investigation in basic science and yielded new engineering applications.There is every reason to expect that their importance will continue to increase.
1
Bulk glassy alloys exhibit important functional and structural properties, including mechanical performance, corrosion resistance, soft magnetism, and micro-forming ability.
2
Recent progress in bulk glassy alloys is linked to stabilizing metallic supercooled liquids and producing bulk glassy materials.
3
The review anticipates that bulk glassy alloys and their supercooled liquids will become increasingly important in future science and engineering.
4
The review examines how alloy composition, glass-forming ability, formation mechanisms, atomic configuration, and production techniques govern bulk glassy alloy formation.
5
The stabilization of metallic supercooled liquids has enabled new basic-science research areas and engineering applications.

bulk glassy alloys and their stabilized supercooled liquid

Recent progress encompassing composition, glass-forming ability and range, formation mechanisms, atomic configuration, production techniques, properties, applications, and future trends

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2002-01-01
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Akihisa Inoue
A. Takeuchi
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