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http://dx.doi.org/10.4150/KPMI.2009.16.5.358

Mechanical Properties of Bulk Amorphous Ti50Cu20Ni20Al10 Fabricated by High-energy Ball Milling and Spark-plasma Sintering  

Nguyen, H.V. (Research Center for Machine Parts and Materials Processing, School of Materials Science and Engineering, University of Ulsan)
Kim, J.C. (Research Center for Machine Parts and Materials Processing, School of Materials Science and Engineering, University of Ulsan)
Kim, J.S. (Research Center for Machine Parts and Materials Processing, School of Materials Science and Engineering, University of Ulsan)
Kwon, Y.J. (Research Center for Machine Parts and Materials Processing, School of Materials Science and Engineering, University of Ulsan)
Kwon, Y.S. (Research Center for Machine Parts and Materials Processing, School of Materials Science and Engineering, University of Ulsan)
Publication Information
Journal of Powder Materials / v.16, no.5, 2009 , pp. 358-362 More about this Journal
Abstract
Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ quaternary amorphous alloy was prepared by high-energy ball milling process. A complete amorphization was confirmed for the composition of Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ after milling for 30hrs. Differential scanning calorimetry showed a large super-cooled liquid region ($\Delta$T$_x$ = T$_x$ T$_g$, T$_g$ and T$_x$: glass transition and crystallization onset temperatures, respectively) of 80 K. Prepared amorphous powders of Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ were consolidated by spark-plasma sintering. Densification behavior and microstructure changes were investigated. Samples sintered at higher temperature of 713 K had a nearly full density. With increasing the sintering temperature, the compressive strength increased to fracture strength of 756 MPa in the case of sintering at 733 K, which showed a 'transparticle' fracture. The samples sintered at above 693 K showed the elongation maximum above 2%.
Keywords
Mechanical alloying; Bulk metallic glasses; Spark-plasma sintering;
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