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- W4293491483 abstract "This study presents the ballistic limit and cellular dispersion analysis for open cell aluminum foam sandwich panel. Systematic simulation of cell-based open-cell aluminum foam sandwich models is completed and a numerical method for determining ballistic limit is developed. The validity of the simulation technique can be verified by comparing the simulated ballistic limits with the experimental results and this approach can be used to get the ballistic limit of foam materials with arbitrary cellular parameters. It is found that the ballistic limit of foam core sandwich exhibits dispersion characteristics. A comparative analysis of protection performance of aluminum foams with different cellular parameter was carried out, and aluminum foam with smaller cell size has better protection performance under the same relative density condition; in addition, the topology of the foam also had a significant influence on the shielding performance. • Cell-based modeling and numerical simulation of open-cell aluminum foam sandwich panels under hypervelocity impact is completed. • A numerical method for determining ballistic limit of the aluminum foam sandwich panel is developed with number of penetrating particles used as the critical penetration criteria. • Ballistic limit curve by numerical simulation is established and verified by comparation with the experiment result. • The ballistic limits of foam materials are scattered, and the range of ballistic limits for different cellular parameters can be determined using the simulation approach in this paper. • Cell size and topology of the foam have significant influence on its shielding performance, which can be further studied by the method of this paper." @default.
- W4293491483 created "2022-08-29" @default.
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- W4293491483 date "2022-12-01" @default.
- W4293491483 modified "2023-10-01" @default.
- W4293491483 title "Numerical studies on ballistic limit and cellular dispersion of aluminium foam sandwich panel under hypervelocity impact" @default.
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- W4293491483 doi "https://doi.org/10.1016/j.mtcomm.2022.104330" @default.
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