Fabrication of a new Al-Al2O3-CNTs composite using friction stir processing (FSP)

A new Al-Al2O3-CNTs Composite has been successfully fabricated using friction stir processing. Uniform dispersion of nano-particles in the metal matrix was observed. Significant improvement in the micro-hardness and tensile strengths were obtained through the addition of nano particles. In particula...

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Published inMaterials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 667; pp. 125 - 131
Main Authors Du, Zhenglin, Tan, Ming Jen, Guo, Jun Feng, Bi, Guijun, Wei, Jun
Format Journal Article
LanguageEnglish
Published Elsevier B.V 14.06.2016
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Abstract A new Al-Al2O3-CNTs Composite has been successfully fabricated using friction stir processing. Uniform dispersion of nano-particles in the metal matrix was observed. Significant improvement in the micro-hardness and tensile strengths were obtained through the addition of nano particles. In particular the yield strength of the composites increased 70% compared with that of friction stir processed Al when both Al2O3 and CNTs were added in the matrix. The improvement in the mechanical properties is mainly attributed to grain refinement and Zener pinning effect caused by the addition of nano-sized particles. Al2O3 particles were observed at the bottom of the dimples at the fracture site, suggesting voids initiation at the Al/Al2O3 interfaces regions. The reinforcing mechanism with multiple nano-particles addition was discussed therein.
AbstractList A new Al-Al2O3-CNTs Composite has been successfully fabricated using friction stir processing. Uniform dispersion of nano-particles in the metal matrix was observed. Significant improvement in the micro-hardness and tensile strengths were obtained through the addition of nano particles. In particular the yield strength of the composites increased 70% compared with that of friction stir processed Al when both Al2O3 and CNTs were added in the matrix. The improvement in the mechanical properties is mainly attributed to grain refinement and Zener pinning effect caused by the addition of nano-sized particles. Al2O3 particles were observed at the bottom of the dimples at the fracture site, suggesting voids initiation at the Al/Al2O3 interfaces regions. The reinforcing mechanism with multiple nano-particles addition was discussed therein.
Author Wei, Jun
Du, Zhenglin
Tan, Ming Jen
Guo, Jun Feng
Bi, Guijun
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Snippet A new Al-Al2O3-CNTs Composite has been successfully fabricated using friction stir processing. Uniform dispersion of nano-particles in the metal matrix was...
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StartPage 125
SubjectTerms Aluminum
Aluminum oxide
Composites
Crack initiation
EBSD
Fractography
Friction stir processing
Materials science
Mechanical characterization
Nanostructure
Particulate composites
Recrystallization
Voids
Title Fabrication of a new Al-Al2O3-CNTs composite using friction stir processing (FSP)
URI https://dx.doi.org/10.1016/j.msea.2016.04.094
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