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SAE transactions | 1983

The Effects of Heavy Metal Contamination on Magnesium Corrosion Performance

James E. Hillis

To aid in better assessing the corrosion performance of AZ91 die cast magnesium, standard salt spray corrosion tests have been made on both randomly selected commercial die castings and on three series of controlled purity test panels. The results reveal that the poor performance often associated with magnesium parts in salt spray are due principally to iron, nickel, and copper contamination levels. When these contaminants were limited, severe pitting corrosion was eliminated and the salt spray performance was good to excellent when compared to 380 aluminum and cold rolled steel.


SAE transactions | 1986

High Purity Magnesium AM60 Alloy: The Critical Contaminant Limits and the Salt Water Corrosion Performance

James E. Hillis; K. N. Reichek


SAE transactions | 1985

Controlling the Salt Water Corrosion Performance of Magnesium AZ91 Alloy

K. N. Reichek; K. J. Clark; James E. Hillis


SAE transactions | 1989

Composition and Performance of an Improved Magnesium AS41 Alloy

James E. Hillis; Scott O. Shook


SAE transactions | 1992

The Critical Contaminant Limits and Salt Water Corrosion Performance of Magnesium AE42 Alloy

William E. Mercer; James E. Hillis


International Congress & Exposition | 1990

Magnesium Finishing: Chemical Treatment and Coating Practices

Reece W. Murray; James E. Hillis


Archive | 1993

Methods for producing high purity magnesium alloys

William G. Green; Harvey King; Vladimir Petrovich; James E. Hillis; E. Mercer Ii William


Kirk-Othmer Encyclopedia of Chemical Technology | 2000

Magnesium and Magnesium Alloys

Clifford B. Wilson; Ken G. Claus; Matthew R. Earlam; James E. Hillis


Archive | 1990

Process for producing high purity magnesium

William G. Green; James E. Hillis


SAE transactions | 2000

Separation of Non-Metallic Contaminants in Fluxless Melting and Refining of Magnesium Alloys

James E. Hillis; William E. Mercer

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