[1]
Korea Ministry of Science and Technology: Development of Recycling Process Technology for Light Metal Alloy Scrap.
Google Scholar
[2]
J.W. Han, J.H. Lee, S.B. Kim, J.Y. Byun, J.D. Shim: J. of Korean Inst. of Resources Recycling, Vol. 7, No. 3 (1998) p.42.
Google Scholar
[3]
G.H. Lee, J.H. Chi, J.M. Lee, J.W. Han: The Development of Sacrificial Anode alloy processing for the prevention of Corrosion in Engines and Radiators for Automobiles through Mg alloy scrap recycling (2001. 3 ~ 2002. 2).
Google Scholar
[4]
Davy: Light Metal Age, Vol. 48 (1990), P. 14.
Google Scholar
[5]
T.S. Srivatsan, Li Wei and C.F. Chang: J. of Mater. Sci., 30 (1995), p.1832.
Google Scholar
[6]
Huge Baker: Advanced Materials and Processes, 9 (1989), p.35.
Google Scholar
[7]
Shotato Morozumi: J. of Japan Inst. Light Metals, Vol. 36 (1986), p.453.
Google Scholar
[8]
B.L. Mordike and F. Hehmann: Magnesium Alloys and Their Application, (1992), p.13.
Google Scholar
[9]
T. Mukai et al.: Scripta Materialia, Vol. 45 (2001) p.89.
Google Scholar
[10]
H. Takuda et. al.: J. of Mater. Process. Tech. Vol. 89-90 (1990), p.135.
Google Scholar
[11]
M.R. Barnett: Journal of Light Metals Vol. 1 (2001), p.167.
Google Scholar
[12]
J.C. Tan, M.J. Tan: Mater. Sci. Eng. A339 (2003), p.81, P. 124.
Google Scholar
[13]
ASM Handbook Volume 2: Properties and Selection: Nonferrous Alloys and Special Purpose Materials, ASM International, Metals Park Ohio (1990).
DOI: 10.31399/asm.hb.v02.9781627081627
Google Scholar