Effects of cell size on compression and bending strength of aluminum-foamed material by complex stirring in induction heating

Author:

Jeon Y.P.,Kang C.G.,Lee S.M.

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Metals and Alloys,Computer Science Applications,Modeling and Simulation,Ceramics and Composites

Reference12 articles.

1. Metal Foams, a Design Guide;Ashby,2000

2. High strain rate compression of closed-cell aluminum foams;Dannemann;Mater. Sci. Eng. A,2000

3. Innovative light metals: metal matrix composites and foamed aluminum;Degischer;Mater. Des.,1997

4. Cellular Solids Structures and Properties – 2nd edition;Gibson,1997

5. Effects of viscosity control by induction heating on micro cell in forming process of foamed aluminum;Jeon;Korean Soc. Prec. Eng.,2002

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1. Comparison between in-mould and grid-as-mould aluminum foaming process by induction heating;The International Journal of Advanced Manufacturing Technology;2023-02-02

2. On the Suitability of Induction Heating for the Manufacture of Reinforced Aluminum Foam Structures;Key Engineering Materials;2022-07-22

3. A review of the compressive properties of closed-cell aluminum metal foams;Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering;2022-07-14

4. A NONLINEAR STRAIN-DEPENDENT VARIABLE-ORDER FRACTIONAL MODEL WITH APPLICATIONS TO ALUMINUM FOAMS;Fractals;2021-11-22

5. Development of AlMg35-TiH2 composite foaming agent and fabrication of small pore size aluminium foams;Journal of Materials Processing Technology;2020-09

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