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Meanwhile, numerical simulations of solidification in fluid-saturated metallic foams with uniform morphological properties were performed.
Solidification of distilled water saturated in open-cell metallic foams with graded morphologies was investigated experimentally.
Based on the dimensional analysis, several scaling relationships in the indentation of metallic foams with a spherical indenter are obtained.
Finally, a systematic parametric study is conducted on heat transfer in parallel-plate channels filled with metallic foams, with useful suggestions for practical designs obtained.
Metallic foams with a high fraction of porosity, low density and high energy absorption capacity, are a rapidly emerging class of novel ultralightweight materials for various engineering applications.
The analyses are performed on an elasto-plastic lattice of tetrakaidecahedral cells which provides a surrogate model for metallic foams with open cells.
Similar(52)
A method is presented that extends the replication process for the manufacture of open-celled metallic foams to include foams with spherical cells.
Based on previous lab-scale heat transfer experiments performed in a test tube filled with metallic foams, extensive simulations of conjugated heat transfer were performed to systematically investigate the role of different coupling scenarios between the foam structure and the tube wall, using a 3D scanned foam geometry to enable the comparison of simulation results with experiments.
Pool boiling heat transfer on horizontal metallic foam surface with crossing and single-directional V-shaped groove was experimentally investigated at atmospheric pressure using deionized saturated water as the working liquid.
Lastly, the normalized permeability values significantly exceed those found for stochastic, metallic foams and other periodic structures with a material volume fraction of over 30%.
Experimental results for isothermal Newtonian flow through metallic foams are analysed in comparison with a theoretical model and the results interpreted.
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