Affiliation:
1. Universidad Autónoma de Coahuila, México
2. Instituto Tecnológico de Tlalnepantla, México
3. Corporación Mexicana de Investigación en Materiales, México
Abstract
Abstract: Aluminum alloys are very promising for structural applications in aerospace, military and transportation industries due to their light weight, high strength-to-weight ratio and excellent resistance to corrosion. In comparison to unreinforced aluminum alloys, aluminum/aluminum alloy matrix composites reinforced with ceramic phases exhibit higher strength and hardness, improved tribological characteristics. A novel surface modifying technique, friction stir processing (FSP), has been developed for fabrication of surface composite with an improved performance. The effect of FSP parameters such as number of passes, direction of each pass, sealed or unsealed groove on microstructure was investigated. In this work, nano-particles of TiC (2% in weight) were added to aluminum alloy AA7075-T651 to produce a functional surface. Fixed parameters for this AA7075 alloy were used; rotation speed of 1000 rpm, travel speed of 300 mm/min and pin penetration of 2.8 mm. Optical microscopy (OM), scanning electron microscopy (SEM) and atomic force microscopy (AFM) were employed to study the microstructure of the fabricated surface composites. The results indicated that the selected FSP parameters influenced the area of surface composite, distribution of TiC particles and micro-hardness of the surface composites. Finally, in order to evaluate rate wear the pin on disk test was carried out.
Subject
Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference19 articles.
1. Friction stir processing: a novel technique for fabrication of surface composite;Mishra RS;Materials Science and Engineering A,2003
2. Composites part A: applied science and manufacturing;Cavaliere P,2005
3. Friction stir welding and processing;Mishra RS;Materials Science and Engineering R Reports,2005
4. Wear characteristics of surface-hybrid-MMCs layer fabricated on aluminium plate by Friction Stir Processing;Mahmoud ERI;Wear,2010
5. Aluminum composites come in for a landing;Mcguire PF;Mach Des,1992
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