2020
DOI: 10.55713/jmmm.v30i4.642
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Impact of boron carbide and graphite dual particulates addition on wear behavior of A356 alloy metal matrix composites

Abstract: The current work gives the detailed microstructural analysis and wear behaviour of aluminium alloy A356 based metal matrix composite. Here, boron carbide (B4C) and graphite (Gr) particulates were used as reinforcing phase to develop A356/ 4 wt% B4C, A356/ 4 wt% Gr composites along with A356/ 4 wt% Gr/ 12 wt% B4C hybrid composites. The composites were developed by conventional stir casting method to improve the wear properties. The developed composites were subjected to scanning electron microscope (SEM) for mi… Show more

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Cited by 10 publications
(5 citation statements)
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“…A possible matrix material can be produced to embed and inherently grip a reinforcing phase in any solid. The chemical compatibility of the matrix material, reinforcement, and any interaction between the two is of the utmost importance [32,33]. Most often, metals, ceramics, and polymers are used as matrix materials.…”
Section: Matrix Materialsmentioning
confidence: 99%
“…A possible matrix material can be produced to embed and inherently grip a reinforcing phase in any solid. The chemical compatibility of the matrix material, reinforcement, and any interaction between the two is of the utmost importance [32,33]. Most often, metals, ceramics, and polymers are used as matrix materials.…”
Section: Matrix Materialsmentioning
confidence: 99%
“…Under similar circumstances, the micrograph reveals that the fractures in the Al2021 lattice amalgamation are more profound and extensive compared to the micron composites. Figures 12(b) and 12(c) illustrate that the outer surface of the Al2021 10wt% of 90 and 45 microns B 4 C composites, which have been comprehensively employed, exhibit fractures due to the movement of molecules within the composite 37,38 . A substantial layer of composites was established to prevent the primary matrix from making contact with the sliding counterpart.…”
Section: Worn Morphologymentioning
confidence: 99%
“…Stir casting, squeeze casting, liquid metal infiltration, and spray co-deposition are just some of the cutting-edge manufacturing methods that were used in the production of MMC materials [14]. The simplest and most cost-effective method is the 'vortex technique' or 'stir casting technique,' which is appealing due to its simplicity, low processing cost, flexibility, and being the most cost-effective method for preparing large sized components and producing near net shaped components.…”
Section: Introductionmentioning
confidence: 99%