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SiC particle reinforced Al matrix composites brazed on aluminum body for lightweight wear resistant brakes
Affiliation:1. Politecnico di Torino, DISAT - Department of Applied Science and Technology, corso Duca degli Abruzzi 24, I-10129, Torino, Italy;2. CRF – Centro Ricerche Fiat, Strada Torino 50, Orbassano, Italy;3. Fagor Ederlan - Edertek, Garaia Berrikuntza Gunea, Isasi Kalea, 6 – Posta K. 19, 20500, Arrasate-Mondragón Gipuzkoa, Spain;4. TEKNIKER, Parke Teknologikoa, Calle Iñaki Goenaga 5, 20600, Eibar Gipuzkoa, Spain;5. Laboratory for High Performance Ceramics, Empa - Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600, Dübendorf, Switzerland
Abstract:Aluminum alloys are well known light-weight alloys and very interesting materials to optimize the strength/weight ratio in order to reduce automotive vehicle weight, fuel consumption and CO2 emissions; unfortunately, they are also relatively soft and therefore cannot be used for high wear applications.The aim of this work was to develop an aluminum alloy brake disc with wear-resistant SiC particle reinforced aluminum matrix composites (SiC/Al) joined on to its surface.Different approaches based on brazing or shrink fitting joining technologies were used to join SiC/Al to the aluminum alloy surface.A functional graded structure was built by brazing thin layers of aluminum matrix composites reinforced with progressively higher amount of SiC particles by using a Zn–Al based alloy as joining material. Several samples were prepared by shrink fitting and brazing: 40 mm x 40 mm x 10 mm samples and a 100 mm diameter brake disc with 68% SiC particle reinforced Al matrix surface and aluminum alloy A365 body. Tribological tests demonstrated that an aluminum alloy brake disc with wear-resistant SiC particle reinforced aluminum matrix composites (SiC/Al) brazed on its surface is a promising technical opportunity.
Keywords:Joining  Brakes  Metal matrix composites  Wear
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