The effect of Mg content and milling time on the solid solubility and microstructure of Ti-Mg alloys processed by mechanical milling

被引:16
|
作者
Huang, Song Jeng [1 ]
Muneeb, Adil [1 ]
Abbas, Aqeel [1 ]
Sankar, Raman [2 ]
机构
[1] Natl Taiwan Univ Sci & Technol, Dept Mech Engn, 43,Sect 4,Keelung Rd, Taipei 10607, Taiwan
[2] Acad Sinica, Inst Phys, Taipei 11529, Taiwan
关键词
High energy ball milling; Ti-Mg alloys; Solid solubility; Crystallite size; Particle size; Green density; MATRIX COMPOSITES; TITANIUM; MAGNESIUM; NANOCOMPOSITES; BEHAVIOR; POWDERS; SYSTEM; FCC;
D O I
10.1016/j.jmrt.2021.01.097
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This research presents a high energy ball milling method for producing supersaturated solutions of the Ti100-xMgx (x = 10, 15, 20) composite powders containing a process control agent (PCA) under an argon atmosphere at an ambient temperature. The microstructure of the TieMg solid solution during milling was analyzed by scanning electron microscope, and an X-Ray diffraction. A particle size analyzer was employed to investigate the average particle size at different milling times (12 h, 20 h, 32 h). After milling for 32 h of Ti100-xMgx (x = 10, 15, 20) composite powders, the solid solubility of the Mg in Ti reached about 0.5 wt.%, 1.14 wt.%, and 1.92 wt.%, respectively. It was found that the crystallite size of the milled powder decreased by increasing the milling time and reached the value of 4e11 nm after 32 h of milling. Moreover, the addition of the process control agent after 12 h and 20 h significantly reduced the agglomeration by cold welding. As a result, the average particle size of the dispersed composite powder Ti100-xMgx (x = 10, 15, 20) was refined to about 1 mm which indicated that the Ti controlled the final size as being a major alloying element. The maximum value of the density of green compacts was found to be 2.69 g/cm(3) for Tie10Mg. (c) 2021 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:1424 / 1433
页数:10
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