Grain refinement and tensile strength of carbon nanotube-reinforced Cu matrix nanocomposites processed by high-pressure torsion

被引:40
|
作者
Yoon, Eun Yoo [1 ,2 ]
Lee, Dong Jun [3 ]
Park, Byungho [3 ]
Akbarpour, M. R. [4 ]
Farvizi, M. [4 ]
Kim, Hyoung Seop [1 ,3 ]
机构
[1] Pohang Univ Sci & Technol POSTECH, Ctr Adv Aerosp Mat, Pohang 790784, South Korea
[2] KIMS, Light Met Div, Mat Deformat Dept, Chang Won 641831, South Korea
[3] Pohang Univ Sci & Technol POSTECH, Dept Mat Sci & Engn, Pohang 790784, South Korea
[4] MERC, Tehran, Iran
基金
新加坡国家研究基金会;
关键词
composites; severe plastic deformation; grain refinement; electron back scattering diffraction (EBSD); scanning/transmission electron microscopy; MECHANICAL-PROPERTIES; PURE COPPER; MICROSTRUCTURES; COMPOSITES; EVOLUTION; BEHAVIOR;
D O I
10.1007/s12540-013-5004-4
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In recent years, the processing of metallic materials via severe plastic deformation has been widely applied to manufacture bulk specimens of ultrafine grained/nanocrystalline structures. In this study, bulk nanocomposites of carbon nanotube-reinforced Cu were manufactured by consolidation of mixtures of coarse grained Cu powders and CNTs of two volume fractions (5 vol% and 10 vol%) using high-pressure torsion, a typical SPD method. The effects of CNT reinforcements on the microstructural evolution of the Cu matrix were investigated using electron backscatter diffraction and scanning/transmission electron microscopy; the results showed that the Cu matrix grain size was reduced to similar to 114 nm, and the CNTs were well dispersed in the matrix. Due to the effect of the UFG Cu and CNTs, the tensile strength (350 MPa) of the nanocomposite was higher than that (190 MPa) of Cu processed by the powder HPT process without CNTs. However, the Cu-CNT 10 vol% indicated a decreased tensile strength due to an increased interface area between the matrix and CNTs at high volume fractions of CNTs.
引用
收藏
页码:927 / 932
页数:6
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