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- W4312481199 abstract "In this study, In-Situ (ZrB 2 +Al 2 O 3 /Al 3 Zr) nanoparticle-reinforced 6016Al matrix composites were produced under an electromagnetic field. The combined effect of the reinforcement particles, squeezing pressure on the microstructure, and properties of 6016Al matrix composites was investigated. The results show that In-Situ incorporation of (ZrB 2 +Al 2 O 3 /Al 3 Zr) reinforcement particles (1.5 wt.% and 4 wt.%) into a 6016Al matrix coupled with increased squeezing pressure led to appreciable grain refinement of the composites. The increase of squeezing pressure decreased the grain size of the 1.5 wt.% composite from 102 μ m at 10 MPa to 58 μ m at 30 MPa, and that of the 4 wt.% composite from 83 μ m at 10 MPa to 50 μ m at 30 MPa. At low squeezing pressure (10 MPa) slight densification of the composites was observed. However, at high squeezing pressure (30 MPa) increased porosity was observed in the clustered ceramic nanoparticles and the most advantageous mechanical properties (high strength and improved ductility) were obtained at a moderate squeezing pressure (20 MPa). About 50% and 100% improvements were observed in the elongation of 1.5 wt.% and 4 wt.% particlereinforced composites, respectively. Improvement in the properties was attributed to the significant densification and grain boundary strengthening of the squeezed 6016Al matrix composites." @default.
- W4312481199 created "2023-01-05" @default.
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- W4312481199 date "2022-06-01" @default.
- W4312481199 modified "2023-09-27" @default.
- W4312481199 title "Synthesis and Properties of Squeezed <i>In-Situ</i> (ZrB<sub>2</sub>+Al<sub>2</sub>O<sub>3</sub>/Al<sub>3</sub>Zr) Nanoparticle-Reinforced 6016Al Matrix Composites" @default.
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- W4312481199 doi "https://doi.org/10.1166/sam.2022.4325" @default.
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