Effects of milling time on powder packing characteristics and compressive mechanical properties of sintered Ti-10Nb-3Mo alloy

Nazari, Keivan A., Nouri, Alireza and Hilditch, Tim 2015, Effects of milling time on powder packing characteristics and compressive mechanical properties of sintered Ti-10Nb-3Mo alloy, Materials letters, vol. 140, pp. 55-58, doi: 10.1016/j.matlet.2014.10.143.

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Title Effects of milling time on powder packing characteristics and compressive mechanical properties of sintered Ti-10Nb-3Mo alloy
Author(s) Nazari, Keivan A.
Nouri, Alireza
Hilditch, TimORCID iD for Hilditch, Tim orcid.org/0000-0003-0300-5774
Journal name Materials letters
Volume number 140
Start page 55
End page 58
Total pages 4
Publisher Elsevier
Place of publication Amsterdam, The Netherlands
Publication date 2015-02-01
ISSN 0167-577X
1873-4979
Keyword(s) Ball milling
Mechanical alloying
Packing density
Titanium
Science & Technology
Technology
Physical Sciences
Materials Science, Multidisciplinary
Physics, Applied
Materials Science
Physics
Summary The influence of milling time on the powder packing characteristics and compressive mechanical properties of a biomedical Ti-10Nb-3Mo alloy (wt.%) was investigated. Ball milling was performed on elemental metal powders at different milling times of 0 (blended), 2, 4, 6, 8, and 10 h. This article demonstrates that despite the beneficial effects of ball milling technique in the mechanical alloying of the Ti-based alloy, the ball-milled powders synthesized at longer milling times can adversely affect the packing density and significantly diminish the compressive mechanical properties of the sintered powders. Crown
Language eng
DOI 10.1016/j.matlet.2014.10.143
Field of Research 091207 Metals and Alloy Materials
Socio Economic Objective 970109 Expanding Knowledge in Engineering
HERDC Research category C1 Refereed article in a scholarly journal
ERA Research output type C Journal article
Copyright notice ©2015, Elsevier
Persistent URL http://hdl.handle.net/10536/DRO/DU:30068069

Document type: Journal Article
Collection: School of Engineering
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