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- W4318305476 abstract "Metal foams are lightweight and have a higher impact energy absorption ability, making them suitable for various dynamic load applications. However, thin cell walls having higher porosity and lower compressive strength limit the foam's application. Density‐graded foams have superior compressive properties to uniform foam, making them a suitable lightweight candidate for dynamic loading applications. The tri‐layer functionally graded foam material (FGFM) is fabricated using the hot pressure‐assisted sintering and dissolution route by varying the porosity and B 4 C reinforcement. The density gradation enhances the load‐bearing capacity compared to uniform foam, and the maximum compressive strength achieved is 142 MPa. Also, the densification strain is 26% higher compared to uniform foam. B 4 C (9 vol%)‐reinforced FGFM shows the highest energy absorption efficiency of ≈67% due to their stabilized plateau region." @default.
- W4318305476 created "2023-01-28" @default.
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- W4318305476 date "2023-02-03" @default.
- W4318305476 modified "2023-10-02" @default.
- W4318305476 title "Fabrication and Mechanical Properties of Tri‐Layer B<sub>4</sub>C‐Reinforced Al–Zn Functionally Graded Foam Having Higher Energy Absorption Efficiency" @default.
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- W4318305476 doi "https://doi.org/10.1002/adem.202201734" @default.
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