1 |
B. Bronfin et al.: Mater. Sci. Eng., "Preparation and solidification features of AS21 magnesium alloy", A302 (2001) 46-50
|
2 |
G. Pettersen: Mater. Sci. Eng., "Microstructure of a pressure die cast magnesium 4wt.% aluminium alloy modified with rare earth additions", A207 (1996) 115-120
|
3 |
S. M. Liang et al.: Mater. Sci. Eng., "Thermal analysis and solidification pathways of Mg-Al-Ca system alloys", A480 (2008) 365-372
|
4 |
B. Ebel-Wolf et al.: Mater. Sci. Eng., "Influence of elevated temperatures on the cyclic deformation behaviour of the magnesium die-cast alloys AZ91D and MRI 230D", A486 (2008) 634-640
|
5 |
M. A. Gibson et al.: Magnesium Technology 2006, "AMHP2: A new magnesium alloy with improved diecastability and creep strength for powertrain applications", (2006) 327-332
|
6 |
Jing Zhang et al.: Mater. Sci. Eng., "Effect of composition on the microstructure and mechanical properties of Mg-Zn-Al alloys", A456 (2007) 43-51
|
7 |
M. O. Pekguleryuz and A. A. Kaya: Adv. Eng. Mater. 5, No.12 (2003) 866
DOI
ScienceOn
|
8 |
G. Song and D. StJohn: Journal of Light Metals, "The effect of zirconium grain refinement on the corrosion behaviour of magnesium-rare earth alloy MEZ", 2 (2002) 1-16
DOI
ScienceOn
|
9 |
C. Bettles et al.: "AMC-SC1: A New Magnesium Alloy Suitable for Powertrain Applications", SAE 2003 World Congress & Exhibition Technical Papers, 2003-01-1365
|
10 |
Lihong Han et al.: Mater. Sci. Eng., "Microstructure and nanoscale mechanical behavior of Mg-Al and Mg-Al-Ca alloys", A473 (2008) 16-27
|
11 |
Peng Zhao et al.: Mater. Sci. Eng., "Effects of strontium and titanium on the microstructure, tensile properties and creep behavior of AM50 alloys", A444 (2007) 318-326
|
12 |
C. Sanchez et al.: Mater. Sci. Eng., "Elevated temperature behaviour of rapidly solidified magnesium alloys containing rare earths", 221 (1996) 48-57
DOI
ScienceOn
|
13 |
B. L. Mordike: Mater. Sci. Eng., "Creep-resistant magnesium alloys", A324 (2002) 103-112
|
14 |
E. Aghion et al.: Journal of the Minerals, Metals and Materials Society, "Newly developed magnesium alloys for powertrain applications", 55 (2003) 30-33
|
15 |
Xinghao Du and Erlin Zhang: Materials Letters, "Microstructure and mechanical behaviour of semi-solid die-casting AZ91D magnesium alloy", 61 (2007) 2333-2337
DOI
ScienceOn
|
16 |
C. Zhang et al.: Magnesium Technology 2006, "Microsegregation and Microstructure in Directionally Solidified , and AXJ530 alloys", (2006) 45-50
|
17 |
A. Srinivasan et al.: Mater. Sci. Eng, "Effect of combined addition of Si and Sb on the microstructure and creep properties of AZ91 magnesium alloy", A485 (2008) 86-91
|
18 |
B. Jing et al.: Scripta Mater., "Effect of extrusion on microstructures and mechanical and creep properties of Mg- Al-Sr and Mg-Al-Sr-Ca alloys", 55 (2006) 1163-1166
DOI
ScienceOn
|
19 |
M. Aljarrah et al.: Sci. Tech. Adv. Mater., "Microstructural characterization of Mg-Al-Sr alloys", 8 (2007) 237-248
DOI
ScienceOn
|
20 |
D. H. Kang et al.: Mater. Sci. Eng., "Effect of nano-particles on the creep resistance of Mg-Sn based alloys", A449-451 (2007) 318-321
|
21 |
H. Friedrich and S. Schumann: J. Mater. Proc. Tech., "Research for a new age of magnesium in the automotive industry", 117 (2001) 276-281
DOI
ScienceOn
|
22 |
Huang Deming et al.: Materials Letters., "Indentation creep behavior of AE42 and Ca-containing AE41 alloys", 61 (2007) 1015-1019
DOI
ScienceOn
|
23 |
A. Kielbus: Journal of Achievements in Materials and Manufacturing Engineering, "Microstructure of AE44 magnesium alloy before and after hot-chamber die casting", 20 (2007) 459-462
|
24 |
A. Luo: Magnesium Alloys 2003, "Materials Science Forum", Vols 419-422 (2003) p. 57
|
25 |
I.J. Polmear: Light Alloys, "Metallurgy of Light Metals", 3th addition (1995)
|
26 |
E. Evangelista et al.: Mater. Sci. Eng., "High-temperature behaviour of as die-cast and heat treated Mg-Al-Si AS21X magnesium alloy", A387-389 (2004) 41-45
|
27 |
Do Hyung Kim et al.: Mater. Sci. Eng., "Effect of Al addition on the elevated temperature deformation behavior of Mg-Zn-Y alloy", A487 (2008) 481-487
|
28 |
T. Abbott et al.: Magnesium Technology 2006, "AM-lite: a new magnesium diecasting alloy for decorative applications", (2006) 481-486
|
29 |
S. M. Zhu et al.: Scripta Mater., "Microstructural analysis of the creep resistance of die-cast Mg-4Al-2RE alloy", 58 (2008) 477-480
DOI
ScienceOn
|
30 |
S. K. Kim et al.: "CaO Added Magnesium and Magnesium Alloys and Their Manufacturing Method Thereof", KR Patent 2005-0016143 (2005)
|
31 |
A. P. Druschitz et al.: Light Metals for the Automotive Industry, "Evaluation of Structural and High-Temperature Magnesium Alloys", SAE 2002 World Congress Detroit, Michigan (2002)
|
32 |
G. Ben-Hamu et al.: Journal of Alloys and Compounds, "The relation between microstructure and corrosion behavior of Mg-Y-RE-Zr alloys431", (2007) 269-276
|
33 |
V. V. Agalakov: Proceedings of the 6th International Conference Magnesium Alloys and Their Applications, "Development of the New Creep Resistant Alloy AS31", (2005) 18-24
|
34 |
H. H. Jo et al.: "SrO Added Magnesium and Magnesium Alloys and Their Manufacturing Method Thereof", KR Patent 2007-0007012 (2007)
|
35 |
S. H. Ha: Master Thesis, Sungkyunkwan University, Seoul (2005)
|
36 |
A. Luo and T. Shinoda: SAE Technical Paper, No.980089 (1998)
|
37 |
W. Ha et al.: J. All. Com., "Effects of cover gases on melt protection of Mg alloys", 422 (2006) 208-213
DOI
ScienceOn
|