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- W3126054172 abstract "As heat-resistant and wear-resistant materials, the aluminum matrix composites based on in-situ SiO2-Al reaction need to be systematically studied at high temperature. In this research, the SiO2 precursor particles with the average diameters of ‘D = 30 μm and ‘D = 250 μm were used to study the microstructures and creep behavior of the aluminum matrix composites. Unlike the AMCS particle-reinforced structure of D = 30 μm precursor, the sandwich structure reinforced by SiO2 core and Al2O3 layer was found in AMCS of D = 250 μm n precursor. The formation mechanism of these two microstructures could be rationalized by concerning the reaction kinetics. The creep resistance of the composite sample with d = 30 μm precursor was more excellent than that of the sample with d = 250 μm precursor. According to the threshold analysis for these composites, the correlation between creep strains rate and the effective stress could be rationalized by a true stress exponent of 3, suggesting the creeping mode of these composites was viscous to glide of dislocation." @default.
- W3126054172 created "2021-02-01" @default.
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- W3126054172 date "2021-01-24" @default.
- W3126054172 modified "2023-10-16" @default.
- W3126054172 title "Microstructure and creep behavior of in situ SiO<sub>2</sub>/Al composites produced with different size precursors" @default.
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- W3126054172 doi "https://doi.org/10.1080/09276440.2021.1874743" @default.
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