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Dry wear and friction properties of an A356/SiC...
Journal article

Dry wear and friction properties of an A356/SiC foam interpenetrating phase composite

Abstract

The dry sliding wear and friction behaviors of A356 aluminum alloy and a hybrid composite of A356 aluminum alloy and silicon carbide foam in the form of an interpenetrating phase composite were evaluated using a ball-on-disk apparatus at ambient conditions. The stationary 6.35mm alumina ball produced a wear track (scar) diameter of 7mm on the rotating specimen surface. Three different loads; 5N, 10N and 20N were applied at a constant sliding speed of 33mm/s for both materials. Wear tracks were characterized with a scanning electron microscope and measured with an optical surface profilometer. In general, this novel A356/SiC foam composite reduced the friction coefficient and wear rate from that of the base alloy for all loading conditions. In addition, as the load increased, the friction coefficient and wear rate decreased for both materials. The results indicate the composite could be used in light-weight applications where moderate strength and wear properties are needed.

Authors

Cree D; Pugh M

Journal

Wear, Vol. 272, No. 1, pp. 88–96

Publisher

Elsevier

Publication Date

October 3, 2011

DOI

10.1016/j.wear.2011.07.008

ISSN

0043-1648

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