2019
DOI: 10.1088/2053-1591/ab3bf8
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Experimental optimization of mechanical properties of Al7010/B4C/BN hybrid metal matrix nanocomposites using Taguchi technique

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Cited by 8 publications
(5 citation statements)
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“…This could be because of the soft nature of the TiC and BN particles, which may lead to a decrease in microhardness. Overall, the results indicate that there is an optimum wt.% of TiC and BN nanoparticles that can maximize the microhardness of the AHMMNCs [6,14].…”
Section: Influence Of Tic and Bn Nanoparticles On Microhardnessmentioning
confidence: 85%
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“…This could be because of the soft nature of the TiC and BN particles, which may lead to a decrease in microhardness. Overall, the results indicate that there is an optimum wt.% of TiC and BN nanoparticles that can maximize the microhardness of the AHMMNCs [6,14].…”
Section: Influence Of Tic and Bn Nanoparticles On Microhardnessmentioning
confidence: 85%
“…This trend can be attributed to the strong interfacial bonding between the base alloy and TiC and BN nanoparticles up to 1.5 wt.%, which enhances the overall strength of the AHMMNCs. Nevertheless, beyond 1.5 wt.%, the decline in properties may be because of the agglomeration of the TiC and BN particles, which can result in the formation of voids or other defects in the composite [14]. The results indicate that the % elongation decreased with a rise in the wt.% of TiC and BN particles up to 1.5 and then grew.…”
Section: Effect Of Tic and Bn Nanoparticles On Tensile Strength And P...mentioning
confidence: 91%
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“…This approach decreases the number of experimental runs required compared to other techniques. By reducing fabrication costs and time, the method produces high-quality products [15][16]. The chosen control variables are listed in Table 2.…”
Section: Taguchi Methodsmentioning
confidence: 99%