Affiliation of Author(s):材料科学与技术学院
Journal:Mater Manuf Process
Abstract:In this research, additive friction stir processing (AFSP) was successfully employed to prepare the aluminum–tungsten carbide (Al–WC) surface composite upon 5083Al substrate. The resulting microstructures were detailedly characterized by X-ray diffraction, optical microscopy (OM), scanning electron microscopy, energy dispersive spectroscopy and electron backscattered diffraction. Microhardness tests and wear tests were used to evaluate the surface properties of the AFSP surface composite. Results showed that the prepared Al–WC surface composite by AFSP had a combination of homogeneous distribution of WC particles, excellent WC/Al interfacial integrity and remarkably refined grains. The continuous dynamic recrystallization (DRX) mechanism was mainly responsible for the grain refining of 5083Al during FSP. Adding WC particles into FSP Al not only boosted the DRX kinetics but also retarded the growth of resultant grains, thereby reducing grain size. The AFSP surface composite exhibited significantly improved hardness and wear resistance compared with the as-received Al. © 2018, © 2018 Taylor & Francis.
ISSN No.:1042-6914
Translation or Not:no
Date of Publication:2019-01-25
Co-author:Huang, Guoqiang,Wu, Jie,Hou, Wentao,SHEN Yifu,Gao, Jicheng
Correspondence Author:Huang, Guoqiang,Wu Jie
Date of Publication:2019-01-25
Wu Jie
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Gender:Male
Education Level:新加坡国立大学
Alma Mater:新加坡国立大学
Paper Publications
Producing of Al?WC surface composite by additive friction stir processing
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