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Comparison of the wear behavior of WC/(FeAl-B) and WC-Co composites at high temperatures
Affiliation:1. Ukrainian State University of Railway Transport, pl. Feyerbaha 7, Kharkov 61010, Ukraine;2. National Technical University \"Kharkov Polytechnic Institute\", 21 Frunze Str., Kharkov 61002, Ukraine;3. Kazimierz Pulaski University of Technology and Humanities in Radom, 54 Krasickiego Str., 26-600 Radom, Poland;1. Department of Chemical Engineering Technology, University of Johannesburg, Johannesburg, South Africa;2. Department of Materials Science and Engineering, Obafemi Awolowo University, Ile–Ife, Nigeria;3. Department of Metallurgical and Materials Engineering, Federal University of Technology, Akure, Nigeria;4. Department of Chemical, Metallurgical and Materials Engineering, Tshwane University of Technology, Pretoria West, South Africa
Abstract:In this research, the sliding wear behavior of the hot pressed WC/40 vol%(FeAl-B) composites was investigated at temperatures ranging from the ambient one to those as high as 600 °C. The composites were then compared with hot pressed WC-40 vol%Co and commercial WC-16 vol%Co (H10F) in terms of their mechanical properties and high temperature wear behavior. It was found that the WC/(FeAl-B) composite recorded its maximum wear resistance at all the experimental temperatures, which was higher than that of WC-40 vol%Co at these same temperatures due to the higher hardness of the FeAl-B than that of the Co matrix. Also, WC/(FeAl-B) exhibited a higher wear resistance at lower temperatures and a more proper behavior at higher temperatures than did the commercial WC-16 vol%Co; this was attributed to the higher strength of the FeAl-B matrix at high temperatures. Examination of the wear surfaces revealed that abrasion was the wear mechanism in the commercial WC-16 vol%Co and WC/(FeAl-B) composites at both ambient temperature and 300 °C. At 400 °C, however, the wear mechanism was more of an adhesive one, while binder oxidation was observed at 600 °C.
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