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Mechanical properties of Al-based metal matrix composites reinforced with Zr-based glassy particles produced by powder metallurgy

✍ Scribed by S. Scudino; G. Liu; K.G. Prashanth; B. Bartusch; K.B. Surreddi; B.S. Murty; J. Eckert


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
547 KB
Volume
57
Category
Article
ISSN
1359-6454

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✦ Synopsis


Al-based metal matrix composites consisting of pure Al reinforced with different amounts of mechanically alloyed Zr 57 Ti 8 Nb 2.5 Cu 13.9- Ni 11.1 Al 7.5 glassy powder were produced by powder metallurgy, and their mechanical properties were investigated by room temperature compression tests. The samples were consolidated into highly dense bulk specimens at temperatures within the supercooled liquid region in order to take advantage of the viscous flow behavior of the glassy powder. Compression tests show that the addition of the glass reinforcement increases the strength of pure Al from 155 to 250 MPa, while retaining appreciable plastic deformation with a fracture strain ranging between 70% and 40%. The yield strength and the elastoplastic deformation of such composites containing a high volume fraction of glassy particles were accurately modeled using a shear lag model and a self-consistent effective medium approach. Finally, the fracture characteristics of the reinforcing particles were rationalized using a proposed fracture criterion.


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Powder metallurgy of Al-based metal matr
✍ S. Scudino; G. Liu; M. Sakaliyska; K.B. Surreddi; J. Eckert πŸ“‚ Article πŸ“… 2009 πŸ› Elsevier Science 🌐 English βš– 704 KB

In order to analyze the effectiveness of complex metallic alloys as reinforcing agents in metal matrix composites, Al-based composites were synthesized by hot extrusion of elemental Al blended with different amounts of b-Al 3 Mg 2 complex intermetallic particles. The work focuses on two specific asp