Mechanical alloying was employed to produce Al2O3/M (M=Fe, Co, Ni) nanocomposites. It was found that high-energy mechanical milling could realize not only drastic refinement but also the well dispersion of catalyst precursors in oxide matrixes. After mechanical milling, the solid-state alloying and the accelerated substitutional reactions were observed between the parent oxides. The as-obtained Al2O3/M nanocomposites possessed the fine-grained and porous structures and thus high reducibility. Large-scale formation of multiwalled and single-walled carbon nanotubes were achieved by using these mechanical alloying-derived Al2O3/M nanocomposites.Accepted versio
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...
Mechanical alloying was employed to produce Al2O3/M (M=Fe, Co, Ni) nanocomposites. It was found that...
The synthesis of nanometer-sized [MATH]-Al2O3-metal composites can be performed by room temperature ...
Mg-Al2O3 nanocomposite powders, with Al 2O3 particles of 50 nm size, were synthesized by mechanical ...
Mg-Al2O3 nanocomposite powders, with Al2O3 particles of 50 nm size, were synthesized by mechanical a...
Mg-Al2O3 nanocomposite powders, with Al 2O3 particles of 50 nm size, were synthesized by mechanical ...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
In the present study, FeAl/Al2O3 nanocomposite coating was produced on the carbon steel plate using ...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
Friction stir processing (FSP) was employed to synthesis ex-situ Al5083 nanocomposite reinforced wit...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...
Mechanical alloying was employed to produce Al2O3/M (M=Fe, Co, Ni) nanocomposites. It was found that...
The synthesis of nanometer-sized [MATH]-Al2O3-metal composites can be performed by room temperature ...
Mg-Al2O3 nanocomposite powders, with Al 2O3 particles of 50 nm size, were synthesized by mechanical ...
Mg-Al2O3 nanocomposite powders, with Al2O3 particles of 50 nm size, were synthesized by mechanical a...
Mg-Al2O3 nanocomposite powders, with Al 2O3 particles of 50 nm size, were synthesized by mechanical ...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
In the present study, FeAl/Al2O3 nanocomposite coating was produced on the carbon steel plate using ...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
Mechanical alloying (MA) is a solid-state powder processing technique that was developed in the 1960...
Friction stir processing (FSP) was employed to synthesis ex-situ Al5083 nanocomposite reinforced wit...
Mechanical milling of aluminum-based two Al-Si-Mg alloys were reinforced with multiwalled carbon nan...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...
La mécanosynthèse d'alliages Fe-Ni et Cr-Sn, du carbure Fe7C3 , de nanocomposites alumine-métal et d...