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Change in mechanical properties during crystallization of amorphous Mg83Ni9Y8

✍ Scribed by P. Perez; G. Garcés; S. Gonzaléz; H. Nitsche; F. Sommer; P. Adeva


Publisher
Elsevier Science
Year
2007
Tongue
English
Weight
548 KB
Volume
462
Category
Article
ISSN
0921-5093

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✦ Synopsis


The different phase transformations occurring in rapidly solidified amorphous ribbons of the Mg 83 Ni 9 Y 8 (at.%) alloy during heating have been determined. Such transformations involve atomic rearrangement in the amorphous material leading to a first metastable state of extremely fine nanocrystals in the amorphous matrix. Further transformations result in the formation of Mg, Mg 2 Ni, and an unidentified phase. Heating at temperatures above that of primary crystallization causes additional formation of Mg 24 Y 5 and Ni 2 Y 3 phases. Microhardness measurements were used to evaluate the mechanical properties at room temperature of the structures appearing after each phase transformation. The fine grain size of the crystallized material is the main contribution to harden significantly the totally crystallized alloy. The solid solution of nickel and yttrium in magnesium as well as Mg 24 Y 5 precipitation induce some additional strengthening.


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