New PDF release: Affordable Metal-Matrix Composites for High Performance

By Awadh B. Pandey, Kevin L. Kendig, Thomas J. Watson

ISBN-10: 0873395573

ISBN-13: 9780873395571

ISBN-10: 1118787129

ISBN-13: 9781118787120

This e-book will comprise papers on fresh learn conducted within the box of metal-matrix composites (MMCs). Processing, microstructure, and mechanical homes of MMCs and unreinforced matrix alloys may be lined with a spotlight on aluminum, titanium, nickel, and copper MMCs. these excited by the study of MMCs and unreinforced alloys, rather in aerospace, house, and car fabrics learn, will locate this quantity indispensible.

From Materials technological know-how & know-how 2003 to be held in Chicago, Illinois, November 9-12, 2003.Content:

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Powder was sieved to minus 200 mesh fraction using standard sieving procedure. % SiC particulate were blended together to provide a uniform distribution of SiC in the matrix. The unreinforced Al-alloy powder and blended DRA were processed separately for consolidation to achieve full density. The powder was hot vacuum degassed to remove residual gas and water vapor. Consolidation of powder was carried out using vacuum hot pressing. The density of the consolidated billet was equal to the theoretical density.

Louis, MO 63166 2 Keweenaw Research Center Michigan Technological University Houghton, MI 49931 3 Eck Industries, Inc. P. O. Box 967 Manitowok, WI 54221 Abstract The application of Al/SiC composites for the road wheel wear ring of the Advanced Amphibious Assault Vehicle (AAAV) has been investigated. A variety of commerciallyavailable Al/SiC composite materials have been screened for abrasive wear behavior. 30S, containing 30 volume percent SiC particulates, was selected for fabrication of full-scale prototype components.

The alloy was remelted and atomized using a helium gas atomization to produce fine powder. Oxidation of powder was minimized by using helium gas for atomization. Powder was sieved to minus 200 mesh fraction using standard sieving procedure. % SiC particulate were blended together to provide a uniform distribution of SiC in the matrix. The unreinforced Al-alloy powder and blended DRA were processed separately for consolidation to achieve full density. The powder was hot vacuum degassed to remove residual gas and water vapor.

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Affordable Metal-Matrix Composites for High Performance Applications II by Awadh B. Pandey, Kevin L. Kendig, Thomas J. Watson


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