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      Effect of SiC Reinforcement and Its Variation on the Mechanical Characteristics of AZ91 Composites

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          Abstract

          In this study, the processing of SiC particulate-strengthened magnesium alloy metal matrix composites via vacuum supported inert atmosphere stir casting process is presented. The effects of small variations in the SiC particulate (average size 20 µm) reinforcement in magnesium alloy AZ91 were examined. It was found that with the addition of SiC particulate reinforcement, the hardness improved considerably, while the ultimate tensile and yield strength improved slightly. The density and porosity of the magnesium alloy-based composites increased with the increase in the wt.% of SiC particulates. The tensile and compressive fracture study of the fabricated composites was also performed. The tensile fractures were shown to be mixed-mode fractures (i.e., ductile and cleavage). The fractured surface also disclosed tiny dimples, micro-crack, and cleavage fractures which increases with increasing reinforcement. For the compression fracture, the surface microstructural studies of AZ91 displayed major shear failure and demonstrated the greater shear bands when compared to AZ91/SiC composites, which instead revealed rough fracture surfaces with mixed-mode brittle and shear features.

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          Most cited references41

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          Particle reinforced aluminium and magnesium matrix composites

          D Lloyd (2013)
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            Metal matrix composites: production by the stir casting method

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              Magnesium casting technology for structural applications

              Alan A Luo (2013)
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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                31 October 2020
                November 2020
                : 13
                : 21
                : 4913
                Affiliations
                [1 ]Department of Mechanical Engineering, Kamla Nehru Institute of Technology, Sultanpur 228118, India; anilk@ 123456knit.ac.in
                [2 ]Department of Mechanical Engineering, Indian Institute of Technology (BHU), Varanasi 221005, India; santosh.kumar.mec@ 123456itbhu.ac.in
                [3 ]Department of Metallurgical Engineering, Indian Institute of Technology (BHU), Varanasi 221005, India; mukho.met@ 123456iitbhu.ac.in
                [4 ]Membrane Science and Separation Technology Division, CSIR-Central Salt and Marine Chemicals Research Institute, Bhavnagar 364002, India; anshuly@ 123456csmcri.res.in
                [5 ]Faculty of Mechanical Engineering and Computer Science, Częstochowa University of Technology, 42-201 Częstochowa, Poland
                Author notes
                Author information
                https://orcid.org/0000-0002-5848-1869
                https://orcid.org/0000-0003-1380-2662
                https://orcid.org/0000-0001-7129-0429
                Article
                materials-13-04913
                10.3390/ma13214913
                7672630
                33142936
                1aafe029-fd8f-4de9-b26f-cd5bc2f3bd62
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 25 September 2020
                : 29 October 2020
                Categories
                Article

                metal matrix composites,sic,az91,mechanical characterization,magnesium alloy

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