Fabrication of nanocomposites through diffusion bonding under high-pressure torsion

被引:48
作者
Kawasaki, Megumi [1 ]
Han, Jae-Kyung [1 ]
Lee, Dong-Hyun [2 ]
Jang, Jae-il [2 ]
Langdon, Terence G. [3 ]
机构
[1] Oregon State Univ, Sch Mech Ind & Mfg Engn, Corvallis, OR 97331 USA
[2] Hanyang Univ, Div Mat Sci & Engn, Seoul 04763, South Korea
[3] Univ Southampton, Fac Engn & Environm, Mat Res Grp, Southampton SO17 1BJ, Hants, England
基金
欧洲研究理事会; 新加坡国家研究基金会;
关键词
Al-Mg; diffusion bonding; high-pressure torsion; intermetallic compound; severe plastic deformation; ULTRAFINE-GRAINED MATERIALS; SEVERE PLASTIC-DEFORMATION; STRAIN-RATE SENSITIVITY; MICROSTRUCTURAL EVOLUTION; MECHANICAL-PROPERTIES; COLD-CONSOLIDATION; GRADIENT STRUCTURE; THERMAL-STABILITY; PURE ALUMINUM; ALLOY;
D O I
10.1557/jmr.2018.205
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This report summarizes a recent study demonstrating simple and rapid synthesis of a new Al-Mg alloy system and ultimately synthesizing a metal matrix nanocomposite, which was achieved by processing stacked disks of the two dissimilar metals by conventional high-pressure torsion (HPT) processing. The synthesized Al-Mg alloy system exhibits exceptionally high hardness through rapid diffusion bonding and simultaneous nucleation of intermetallic phases with increased numbers of HPT turns through 20, and improved plasticity was demonstrated by increasing strain rate sensitivity in the alloy system after post-deformation annealing. An additional experiment demonstrated that the alternate stacking of high numbers of dissimilar metal disks may produce a faster metal mixture during HPT. Metal combinations of Al-Cu, Al-Fe, and Al-Ti were processed by the same HPT procedure from separate pure metals to examine the feasibility of the processing technique. The microstructural analysis confirmed the capability of HPT for the formation of heterostructures across the disk diameters in these processed alloy systems. The HPT processing demonstrates a considerable potential for the joining and bonding of dissimilar metals at room temperature and the expeditious fabrication of a wide range of new metal systems.
引用
收藏
页码:2700 / 2710
页数:11
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