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Multiphase intermetallics

Philosophical Transactions of the Royal Society of London. Series A: Physical and Engineering Sciences, 1995
Ordered intermetallic compounds, notably the aluminides of nickel, titanium, iron and niobium, have been under intensive investigation for the past two decades as prospective load-bearing materials for high temperatures, with special emphasis on aerospace applications.
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Structural Intermetallics

1998
Abstract Alloys based on ordered intermetallic compounds constitute a unique class of metallic material that form long-range ordered crystal structures below a critical temperature. Aluminides, a unique class of ordered intermetallic materials, possesses many attributes like low densities, high melting points, and good high-temperature ...
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Ordered Intermetallics

2001
Abstract This article discusses the effect of alloying on the composition, structure, properties, and processing characteristics of ordered intermetallic compounds, including nickel aluminides, iron aluminides, and titanium aluminides. It includes several data tables along with a list of typical applications.
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Ordered Intermetallics

1990
AbstractOrdered intermetallic compounds based on aluminides and silicides constitute a unique class of metallic materials that have promising physical and mechanical properties for structural applications at elevated temperatures. This article provides useful information on mechanical and metallurgical properties, material processing and fabrication ...
C.T. Liu   +2 more
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Surface engineering of PdFe ordered intermetallics for efficient oxygen reduction electrocatalysis

Chemical Engineering Journal, 2021
Mingxing Gong, Xu Zhao, De-Li Wang
exaly  

Aluminum Intermetallics

2003
Frommeyer, G., Knippscheer, S.
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Intermetallic Phases

Angewandte Chemie, 1989
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Ordered Intermetallics

Annual Review of Materials Research, 1994
E P George   +3 more
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Intermetallics

1967
K. W. Andrews, D. J. Dyson, S. R. Keown
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