JOURNAL ARTICLE

Nanocomposite Microstructure in a melt spun Al-Cu-Zr Alloy

Dheepa SrinivasanK. Chattopadhyay

Year: 1996 Journal:   Materials science forum Vol: 243-245 Pages: 251-256   Publisher: Trans Tech Publications

Abstract

Rapid solidification of a ternary Al-Cu-Zr alloy results in a nanocomposite microstructure. In this study, melt spinning a Al82Cu15Zr3 alloy has resulted in the combined occurrence of, (a) 0.5 mu m sized grains of Al solid solution and (b) fine grains (10-20 nm) of intermetallic Al2Cu (theta) and alpha-Al, along side each other. The larger alpha-Al grains contain nanometric GP zones, with the Zr addition resulting in a grain refinement. In the other type of microstructure Zr promotes simultaneous nucleation of nanosized grains of the two equilibrium phases, Al2Cu and alpha-Al. Both these lead to a very high hardness of similar to 540 VHN for this alloy and can be used as a candidate for a high strength alloy with good ductility at a low strain rate.

Keywords:
Materials science Microstructure Nanocomposite Alloy Melt spinning Composite material Metallurgy Fiber

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Topics

Aluminum Alloys Composites Properties
Physical Sciences →  Engineering →  Mechanical Engineering
Microstructure and mechanical properties
Physical Sciences →  Materials Science →  Materials Chemistry
Aluminum Alloy Microstructure Properties
Physical Sciences →  Engineering →  Aerospace Engineering

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