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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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Development of structure and porosity in cast Al5CuZr2 and Al66Mn9Zr25 intermetallic compounds

TL;DR: In this paper, Arc melting and three various modifications of induction melting were used to fabricate Al5CuZr2 and Al66Mn9Zr25 (at. pct) intermetallic alloys.
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An investigation of cyclic plastic strain response and fracture behavior of steel-based metal-matrix composites

TL;DR: In this article, the role of composite microstructure and test temperature on cyclic stress response characteristics, cyclic strain resistance, low-cycle fatigue life and mechanisms governing the cyclic fracture behavior of tool-steel metal matrix discontinuously-reinforced with titanium carbide (TiC) particulates are considered.
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Mechanical behavior of the in situ composite alloys in the al-ni-ti system near the l1 2 phase field

TL;DR: In this paper, the Vickers microhardness test at room temperature and compressive tests at temperatures up to 1000 °C were carried out on the three-phase composite alloy, consisting of the Ll2, facecentered cubic (fcc) Al2TiNi, and Al 2Ti intermetallic phases, in the Al-Ti-Ni system.
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The bauschinger effect in fine-grained AlTi alloys prepared by mechanical alloying

TL;DR: Based on the analysis of Bauschinger effects in MA Al-Ti alloys, it was shown that the matrix mean stress developed rapidly at small plastic strains, which might account for the rather high initial strain-hardening rate usually observed in MA alloys as mentioned in this paper.
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Creep deformation behavior of mechanically alloyed Al-10Ti-2Si Alloy

TL;DR: In this paper, the authors investigated the creep property of Al-10Ti-2Si (in wt%) alloy in a wide range of stress (60-310 MPa) and temperature (300-450 C) at the absence of the information on its creep property.
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