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On tension/compression asymmetry of an extruded nanocrystalline Al–Fe–Cr–Ti alloy

✍ Scribed by H. Luo; L. Shaw; L.C. Zhang; D. Miracle


Publisher
Elsevier Science
Year
2005
Tongue
English
Weight
742 KB
Volume
409
Category
Article
ISSN
0921-5093

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✦ Synopsis


A multi-phase nanocrystalline Al 93 Fe 3 Cr 2 Ti 2 alloy containing 30 vol.% intermetallic particles was prepared via mechanical alloying, followed by hot extrusion. Tensile and compressive tests at ambient and elevated temperatures were performed on this nanocrystalline alloy. The alloy exhibited significant difference in deformation behavior between tension and compression at 25, 200 and 300 • C. However, the strengths obtained in tension and compression were similar at 400 • C. Systematic microstructure examinations and deformation mechanism analyses indicate that the asymmetry of this nc Al 93 Fe 3 Cr 2 Ti 2 alloy is related to its dislocation mediated plastic deformation mechanism, its nanoscale grain microstructure, and premature brittle failure in tension tests.


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