Mechanical properties, wear behavior and crystallographic texture of Al-multiwalled carbon nanotube composites developed by powder metallurgy route

被引:23
作者
Kumar, Lailesh [1 ]
Alam, Syed Nasimul [1 ]
Sahoo, Santosh Kumar [1 ]
机构
[1] Natl Inst Technol Rourkela, Met & Mat Engn Dept, Rourkela 769008, Orissa, India
关键词
Al-based metal matrix composites; multiwalled carbon nanotubes; sliding wear behavior; crystallographic texture; ALUMINUM-MATRIX COMPOSITES; CHEMICAL-VAPOR-DEPOSITION; RAMAN-SPECTROSCOPY; TENSILE PROPERTIES; CNT; REINFORCEMENT; DISPERSION; FRICTION; HARDNESS;
D O I
10.1177/0021998316658946
中图分类号
TB33 [复合材料];
学科分类号
摘要
Aluminum (Al)-based metal matrix composites reinforced with multiwalled carbon nanotubes were developed by powder metallurgy route. The Al and multiwalled carbon nanotubes powder mixtures were consolidated under a load of 565 MPa followed by sintering at 550 degrees C for 2 h in inert atmosphere. Al-1, 2, and 3 wt.% multiwalled carbon nanotube composites were developed. In the present study, the microstructure, mechanical properties, sliding wear behavior, and crystallographic texture of various Al-multiwalled carbon nanotube composites were investigated. The multiwalled carbon nanotubes produced by low-pressure chemical vapor deposition technique and the various sintered composites were characterized using scanning electron microscope, high-resolution transmission electron microscope, X-ray diffraction, differential scanning calorimetry and thermogravimetric analysis, Raman spectroscopy, and Fourier transform infrared spectroscopy. A significant improvement in relative density, Vickers microhardness, and wear resistance of the composites up to addition of 2 wt.% of multiwalled carbon nanotubes was observed. The deterioration in these properties beyond 2 wt.% of multiwalled carbon nanotubes was possibly due to the agglomeration of multiwalled carbon nanotubes in the Al matrix. The tensile strength of Al-multiwalled carbon nanotube composites continuously decreases with the addition of multiwalled carbon nanotubes. The decrease in tensile strength can be attributed to the detrimental effect of Al4C3 formed at the interface of the Al matrix and the multiwalled carbon nanotubes which will cause premature failure of the composite. The addition of multiwalled carbon nanotubes altered the crystallographic texture of the composites. The residual stresses in the various composites were found to be compressive in nature and also show improvement up to addition of 2 wt.% multiwalled carbon nanotubes in the Al matrix.
引用
收藏
页码:1099 / 1117
页数:19
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