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Wear Evaluation of Copper-Nickel-Aluminum Alloys under Extreme Conditions

Wear Evaluation of Copper-Nickel-Aluminum Alloys under Extreme Conditions
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摘要 Cu-Ni-Al alloys at different concentrations were obtained using a high frequency induction melting unit, keeping a balance in the nominal compositions. Light alloys are important to be used in industrial applications. Aluminum additions result in a positive hardness increment of the ternary alloys in comparison with the binary Cu-Ni alloys. Generalized wear mechanisms of the alloys with low aluminum content are basically type abrasive, while samples with 5 and 10 at.% Al present an oxidative-adhesive wear mechanism. Wear results have indicated that aluminum addition affects positively the wear resistance, mainly in samples with high aluminum content product of the creation during the test of different oxides corresponding to the elements present in the alloys. Cu-Ni-Al alloys at different concentrations were obtained using a high frequency induction melting unit, keeping a balance in the nominal compositions. Light alloys are important to be used in industrial applications. Aluminum additions result in a positive hardness increment of the ternary alloys in comparison with the binary Cu-Ni alloys. Generalized wear mechanisms of the alloys with low aluminum content are basically type abrasive, while samples with 5 and 10 at.% Al present an oxidative-adhesive wear mechanism. Wear results have indicated that aluminum addition affects positively the wear resistance, mainly in samples with high aluminum content product of the creation during the test of different oxides corresponding to the elements present in the alloys.
作者 Rene Guardian Isai Rosales-Cadena Constancio Diaz-Reyes Juan Antonio Ruiz-Ochoa Rene Guardian;Isai Rosales-Cadena;Constancio Diaz-Reyes;Juan Antonio Ruiz-Ochoa(Center for Research in Engineering and Applied Sciences, Autonomous University of State of Morelos, Cuernavaca, Mexico;Faculty of Sciences of the Enginery and Technology, UABC, Tijuana, Mexico)
出处 《Journal of Minerals and Materials Characterization and Engineering》 CAS 2023年第1期16-26,共11页 矿物质和材料特性和工程(英文)
关键词 Copper Nickel Alloys HARDNESS Mechanical Properties Heat Treatment Copper Nickel Alloys Hardness Mechanical Properties Heat Treatment
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