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      Fabrication and Characterization of SiC-reinforced Aluminium Matrix Composite for Brake Pad Applications

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      Metals
      MDPI AG

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          Abstract

          The wear debris from conventional brake pads is a growing source of environmental contamination that often leads to life-threatening diseases for human beings. Though the emerging organic brake pads show potential to serve as an eco-friendly alternative, their mechanical and tribological properties are not adequate to withstand the demands of high-wear resistance of a functioning braking system under regular use. Metal matrix composites have served as an optimal solution with minimal environmental pollution and appreciable physical properties. Owing to the popularity of aluminium metal matrix composites, the present study is based on the fabrication and characterization of SiC-reinforced LM6 alloy through stir casting methodologies for evaluating its worthiness in application as a brake pad material. Microstructural, compositional, and phase characterizations were executed through optical micrography, X-ray diffraction, and energy-dispersive X-ray spectroscopy analysis. Although mechanical properties were evaluated through surface hardness investigation, parallel thermal properties were estimated through thermal conductivity evaluation. Finally, the execution of tribological analysis and precise microstructural observations of wear track at ambient and elevated temperatures helped in establishing the datum that the fabricated metal matrix composite (MMC) is a reliable brake pad material alternative.

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          Metal matrix composites: production by the stir casting method

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            Aluminium matrix composites: Challenges and opportunities

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              The effect of dislocation self-interaction on the orowan stress

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                Author and article information

                Contributors
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                Journal
                MBSEC7
                Metals
                Metals
                MDPI AG
                2075-4701
                March 2023
                March 13 2023
                : 13
                : 3
                : 584
                Article
                10.3390/met13030584
                0a173c87-9926-4dd4-b002-079d0199117d
                © 2023

                https://creativecommons.org/licenses/by/4.0/

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