Recent developments in magnesium alloys, processing techniques, and corrosion protection schemes are reviewed. The casting alloy WE43 is detailed, data being presented showing that it compares favorably with aluminum-based casting alloys on a strength-to-weight basis. In addition its intrinsic corrosion characteristics are shown to be similar to those of aluminum-base alloys. A countergravity casting process, specifically designed to make higher quality, thin-walled magnesium alloy components, is described, together with property data indicating the improvements obtained. Also discussed are the ongoing developments in metal matrix composites and rapid solidification technologies, showing the benefits offered by these processing routes. Finally current corrosion protection schemes are reviewed and their overall cost effectiveness discussed.
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January 1993
Research Papers
Developments in Magnesium-Based Materials and Processes
P. Lyon,
P. Lyon
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
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J. F. King,
J. F. King
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
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G. A. Fowler
G. A. Fowler
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
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P. Lyon
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
J. F. King
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
G. A. Fowler
Magnesium Elektron Limited, Swinton, Manchester M27 2LS, United Kingdom
J. Eng. Gas Turbines Power. Jan 1993, 115(1): 193-199 (7 pages)
Published Online: January 1, 1993
Article history
Received:
January 25, 1991
Online:
April 24, 2008
Citation
Lyon, P., King, J. F., and Fowler, G. A. (January 1, 1993). "Developments in Magnesium-Based Materials and Processes." ASME. J. Eng. Gas Turbines Power. January 1993; 115(1): 193–199. https://doi.org/10.1115/1.2906677
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