2019
DOI: 10.24874/ti.2019.41.04.12
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Investigating the Adhesive Wear Properties of Aluminum Hybrid Metal Matrix Composites at Elevated Temperatures Using RSM Technique

Abstract: Fabrication of Aluminum LM13/MoS2/TiO2 hybrid metal matrix composite via stir casting technique was carried out to analyze the wear characteristics at an elevated temperature of 150° C using pin on disc tribometer. The parameters namely load, sliding velocity and sliding distance were varied for five levels as per the run order generated from Response Surface Methodology. From experiments, it was observed that the wear rate decreased with reduced sliding velocity initially due to mechanically mixed layer forma… Show more

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Cited by 4 publications
(2 citation statements)
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References 18 publications
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“…These can be attributed to the fact that the rate of wear increases in a non-linear fashion from standard to severe, and this growing trend was observed under different load conditions. Similar trends were observed in the adhesive wear properties of an aluminum hybrid metal matrix composites at a higher temperature, where their rate of wear increased in a non-linear fashion under high-velocity conditions [24]. The impact of sliding velocity and the composite combinations on SWR are depicted in Figure 4b.…”
Section: Influence Of the Process Parameters On The Wear Characterist...supporting
confidence: 69%
“…These can be attributed to the fact that the rate of wear increases in a non-linear fashion from standard to severe, and this growing trend was observed under different load conditions. Similar trends were observed in the adhesive wear properties of an aluminum hybrid metal matrix composites at a higher temperature, where their rate of wear increased in a non-linear fashion under high-velocity conditions [24]. The impact of sliding velocity and the composite combinations on SWR are depicted in Figure 4b.…”
Section: Influence Of the Process Parameters On The Wear Characterist...supporting
confidence: 69%
“…Polymer matrix composites are manufactured commercially for diverse applications in industries like; sporting goods, aerospace components, automobiles and chemical industries [2,13,15,16]. Several pieces of research that utilized agricultural wastes as reinforcement for polyester matrix composites have reported improvement on their mechanical and tribological properties [13,[17][18][19][20][21][22]. The use of natural or organic reinforcement materials in polymeric systems has become widespread.…”
Section: Introductionmentioning
confidence: 99%