Evolution of Microstructure and Wear Properties of Heat Treated Copper-graphene Composite Fabricated by Accumulative Roll Bonding
محل انتشار: ماهنامه بین المللی مهندسی، دوره: 38، شماره: 3
سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 225
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شناسه ملی سند علمی:
JR_IJE-38-3_011
تاریخ نمایه سازی: 27 آبان 1403
چکیده مقاله:
This research aims to investigate and develop the wear properties of the copper-graphene composite, which is utilized in electrical contacts, the railway, and electronics industries. In this research effects of annealing temperature on wear resistance and microstructure in copper-graphene composite fabricated by the accumulative roll bonding (ARB) method was studied. The samples were annealed at ۲۰۰ (S۲۰۰), ۳۰۰ (S۳۰۰), and ۵۰۰ °C (S۵۰۰) for ۱.۵ hours. The wear test was performed using a steel (Chromium steel) pin and the pin-on-disk method with a normal force of ۱۰ N. In addition, wear tracks were analyzed using scanning electron microscopy and energy-dispersive spectroscopy. An adhesive wear mechanism was observed in all samples. With the increase of annealing temperature, the mechanism of oxidation and adhesive wear changed to scratch, groove, and dullness along with severe plastic deformation. Regarding the wear properties, the results showed that the wear rate increases with the increase in the annealing temperature. This way, the wear rate reached from ۱.۱۶ × ۱۰-۶ g/m in the R sample to ۳.۱۵ × ۱۰-۶, ۳.۹۳ × ۱۰-۶, and ۶.۳۴ × ۱۰-۶ g/m in the S۲۰۰, S۳۰۰, and S۵۰۰ samples. By examining the microstructure of the annealed samples and comparing them with R (as-fabricated sample), It was observed that with increasing annealing temperature, the grain size in S۲۰۰, S۳۰۰, and S۵۰۰ samples increased from ۶.۶۳ to ۹.۶۷, ۱۴.۳ and ۱۶.۷۹ µm, respectively. The microhardness of the S۵۰۰ sample decreased by ۴۵.۱۱% (From ۱۲۱.۱۲ to ۵۸.۴۷ Hv) compared to R, which was ascribed to grain growth.
کلیدواژه ها:
نویسندگان
M. Farbakhti
School of Metallurgy and Materials Engineering, Iran University of Science and Technology, Tehran, Iran
A. R. Eivani
School of Metallurgy and Materials Engineering, Iran University of Science and Technology, Tehran, Iran
M. Nozad Gashti
Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Milan, Italy
H. R. Jafarian
School of Metallurgy and Materials Engineering, Iran University of Science and Technology, Tehran, Iran
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