Fabrication of Nonporous Layer on Surface of ALPORAS by Friction Stir Incremental Forming
Tài liệu tham khảo
Kitazono, 2009, Novel Strengthening Method of Closed-Cell Aluminum Foams through Surface Treatment by Resin, Journal of Materials Processing Technology, 209, 3550, 10.1016/j.jmatprotec.2008.08.013
Koriyama, 2012, Enhancement of the Hardness of Lotus-Type Porous Copper by Shot Peening, Steel Research International Special Edition, 1215
Lobos, 2009, Structural Change and Improvement of the Mechanical Properties of a Lotus-Type Porous Copper by Wire-Brushing, Journal of Physics: Conference Series, 165, 012070
Miyoshi, 2000, ALPORAS Aluminum Foam: Production Process Properties, and Applications, Advanced Engineering Materials, 2-4, 179, 10.1002/(SICI)1527-2648(200004)2:4<179::AID-ADEM179>3.0.CO;2-G
Nakajima, 2013, Porous Metals with Directional Pores, Springer, 7
Otsu, 2012, Friction Stir Incremental Forming of Titanium Sheets. Steel Research International, Special Edition, 419
Otsu, 2009, Development of Friction Stir Incremental Forming Process for Forming Sheet Metals, Proceding of Processing and Fabrication of Advanced Materials XVIII, 1963
Otsu, 2011, Improvement of Formability of Magnesium Alloy Sheets by Friction Stir Incremental Forming, Steel Research International, Special Edition, 537
Otsu, 2010, Friction Stir Incremental Forming of Aluminum Alloy Sheets, Steel Research International, 81-9, 942
Seeliger, 2002, Manufacture of Aluminum Foam Sandwich (AFS) Components, Advanced Engineering Materials, 4-10, 753, 10.1002/1527-2648(20021014)4:10<753::AID-ADEM753>3.0.CO;2-Y
