Journal of Asian Ceramic Societies · 2014 · 22 citations · 21 references
Materials ScienceMaterials EngineeringAl2o3–tib2 CompositesAl2o3–tib2 CompositeEngineeringPowder MetallurgyMetal Matrix CompositeMechanical EngineeringX-ray DiffractionAlloy DesignCeramics MaterialsNi AdditionCeramic PowdersHigh-energy Ball MillingMicrostructureMetal ProcessingStructural Materials
Al2O3–TiB2 composites were synthesized using high-energy ball milling from starting powders containing Al, TiO2, and B2O3. To explore the effect of the addition of another ductile metallic phase during milling, 15 wt.% Ni was added to a sample of the starting powders. The phase transformations and microstructure of the milled powder mixtures were investigated using X-ray diffraction and electron microscopy. The results showed that the Ni addition facilitated the mechanochemical reaction between the Al, TiO2, and B2O3. Before the appearance of the Al2O3–TiB2 composite, the intermediate product NiAl was formed by a gradual exothermic reaction. With continued milling, the final phases of Al2O3–TiB2 and Ni were obtained.
21
Mechanical alloying and milling
C. Suryanarayana · Progress in Materials Science · 2001 · 7.8K citations
Deng Jianxin, Lili Liu, Liu Jianhua et al. · International Journal of Machine Tools and Manufacture · 2005 · 90 citations