球磨机
材料科学
合金
冶金
纳米晶材料
原材料
高能
磨坊
机械工程
纳米技术
工程物理
工程类
有机化学
化学
作者
Cristina García-Garrido,R. Sepúlveda,Christopher Salvo,Lucía García-Domínguez,Luis Pérez-Pozo,P.J. Lloreda-Jurado,E. Chicardi
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2021-07-31
卷期号:11 (8): 1225-1225
被引量:5
摘要
In this work, a blend of Ti, Nb, and Mn powders, with a nominal composition of 15 wt.% of Mn, and balanced Ti and Nb wt.%, was selected to be mechanically alloyed by the following two alternative high-energy milling devices: a vibratory 8000D mixer/mill® and a PM400 Retsch® planetary ball mill. Two ball-to-powder ratio (BPR) conditions (10:1 and 20:1) were applied, to study the evolution of the synthesized phases under each of the two mechanical alloying conditions. The main findings observed include the following: (1) the sequence conversion evolved from raw elements to a transitory bcc-TiNbMn alloy, and subsequently to an fcc-TiNb15Mn alloy, independent of the milling conditions; (2) the total full conversion to the fcc-TiNb15Mn alloy was only reached by the planetary mill at a minimum of 12 h of milling time, for either of the BPR employed; (3) the planetary mill produced a non-negligible Fe contamination from the milling media, when the highest BPR and milling time were applied; and (4) the final fcc-TiNb15Mn alloy synthesized presents a nanocrystalline nature and a partial degree of amorphization.
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