2021
DOI: 10.21776/ub.jrm.2021.012.01.18
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Characterization of Aluminum Matrix Metal Composite Hybrid Reinforced With SiCw/(Al2O3-Mg) on Thermal Conductivity and Hardness

Abstract: <p class="Abstract">Characteristics of composite materials that are light, strong, heat resistant, and high hardness are needed in their application. This study aims to obtain a hard material and good heat conductivity, with the innovation of making aluminum matrix composites (AMC) from aluminum powder as a matrix, combined with silicon-carbon whisker (SiCw) and alumina particles (Al<sub>2</sub>O<sub>3</sub>p), and adding Magnesium through the powder process metallurgy. The method… Show more

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Cited by 1 publication
(2 citation statements)
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“…In contrast, the amount of filler of more than 7.5 PHR will cause agglomeration and a reduction in the fibre-matrix interface bond, thereby reducing its tensile strength [17,28] . By comparison, increasing the number of fillers up to 25 PHR can cause an increase in the modulus of elasticity because the filler at this amount still functions to withstand composite deformation due to external loads, whereas the amount of filler that exceeds 25 PHR can result in a decrease in the modulus of elasticity [29,30] .…”
Section: Effect Of Filler and Fibre On The Tensile Strength And Modul...mentioning
confidence: 99%
See 1 more Smart Citation
“…In contrast, the amount of filler of more than 7.5 PHR will cause agglomeration and a reduction in the fibre-matrix interface bond, thereby reducing its tensile strength [17,28] . By comparison, increasing the number of fillers up to 25 PHR can cause an increase in the modulus of elasticity because the filler at this amount still functions to withstand composite deformation due to external loads, whereas the amount of filler that exceeds 25 PHR can result in a decrease in the modulus of elasticity [29,30] .…”
Section: Effect Of Filler and Fibre On The Tensile Strength And Modul...mentioning
confidence: 99%
“…The composites that do not contain filler but have a lot of fibre, namely C00F30, exhibit the highest impact strength, while the lowest is found in the one with the highest filler content with a low fibre content, namely C30F20. The results indicate that adding 15 PHR and 30 PHR CC fillers into the UPR can reduce the impact strength, which is attributed to the tendency of the fillers in the matrix to agglomerate, reducing the matrix's ability to adhere to the fibre [30] . In other words, adding more filler will make the tendency of the fillers to clump more likely.…”
Section: Effect Of Filler and Fibre On The Impact Strengthmentioning
confidence: 99%