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Journal ArticleDOI

Dispersion-Strengthened Aluminum Alloys

E. A. Bloch
- 01 Jan 1961 - 
- Vol. 6, Iss: 1
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TLDR
In this paper, the manufacturing, processing, joining, finishing, and application of dispersion-strengthened aluminum alloys fro aluminum powder are discussed, and the mechanical and physical properties, structure, and relationship between mechanical properties and structure are given.
Abstract
The manufacture, processing, joining, finishing, and application of dispersion-strengthened aluminum alloys fro aluminum powder are discussed. The mechanical and physical properties, structure, and the relationship between mechanical properties and structure are given for the alloys. (N.W.R.)

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Processing techniques for particulate-reinforced metal aluminium matrix composites

TL;DR: In this paper, the primary processing categories for discontinuously reinforced powder metallurgy metal matrix composites are highlighted and salient features of the various techniques in each category are discussed; the variables involved in each processing technique are examined, and the influence of alloy chemistry highlighted.
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Al/Ni formation reactions: characterization of the metastable Al9Ni2 phase and analysis of its formation

TL;DR: In this article, the metastable phase Al9Ni2 was investigated in order to characterize the thermodynamics and kinetics of its formation, and it was observed as the first phase to form in a series of sputterdeposited Al/Ni multilayer foils, but it did not form in foils with a very small bilayer period.
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Ultrafine-grained Al-5 wt.% Fe alloy processed by ECAP with backpressure

TL;DR: In this paper, a process for increasing both strength and ductility in a brittle Al-5 wt.% Fe alloy by Equal Channel Angular Pressing (ECAP) was investigated.
Journal ArticleDOI

Temperature dependence of yield stress, deformation mode and deformation structure in single crystals of TiAl (Ti−56 at.% Al)

TL;DR: In this article, the plastic deformation behavior of single crystals of TiAl with a composition of Ti-56 at.% Al has been studied in compression as a function of crystal orientation in the temperature range from −196 to 1100°C.
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Nucleation and Precipitation Strengthening in Dilute Al-Ti and Al-Zr Alloys

TL;DR: In this article, the authors show that Al-0.2Zr alloys exhibit no hardening after aging up to 3200 hours at 375°C or 425°C due to the absence of Al3Ti precipitation, as confirmed by electron microscopy and electrical conductivity measurements.
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