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Application of the Statistical Method to Analyze the High-Temperature Tribological Properties of Aluminum Composites

机译:应用统计方法分析铝复合材料高温摩擦学性能

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This study presents the statistical analysis of the high-temperature tribological properties of AA6061-SiC composites having 2.5 and 10 wt SiC addition. The composites were fabricated through the liquid metallurgy method. The experiments were performed as per the fractional factorial design scheme. The ANOVA analysis identified the statistical significance of the influence of factor A (addition of SiC particles), factor B (applied load), factor C (sliding speed), and factor D (temperature) on the wear rate. Meanwhile, factors A and D were observed to present statistical significance on the friction coefficient. The main effects plots depicted that the wear rate and friction coefficient increased with the increase in factors B, C, and D. The heat map graphically revealed that experimental run 4 (2.5 wt SiC, 10 N, 0.6 m/s, and 70 degrees C) produced the lowest wear rate. Meanwhile, experimental runs 8 (2.5 wt SiC, 60 N, 0.6 m/s, and 350 degrees C) and 5 (10 wt SiC, 60 N, 3 m/s, and 350 degrees C) produced the highest wear rate and friction coefficient, respectively. Furthermore, the interaction plots revealed the statistically insignificant interaction among the different factors.
机译:本研究对SiC添加量为2.5%和10 wt%的AA6061-SiC复合材料的高温摩擦学性能进行了统计分析。复合材料采用液态冶金法制备。实验按照分数阶因子设计方案进行。方差分析确定了因子A(添加SiC颗粒)、因子B(施加载荷)、因子C(滑动速度)和因子D(温度)对磨损速率影响的统计学意义。同时,因子A和D对摩擦系数具有统计学意义。主效应图显示,磨损速率和摩擦系数随因子B、C和D的增加而增加。热图以图形方式显示,实验运行 4(2.5 wt% SiC、10 N、0.6 m/s 和 70 °C)产生的磨损率最低。同时,实验运行8(2.5 wt% SiC,60 N,0.6 m/s和350 °C)和5(10 wt% SiC,60 N,3 m/s和350 °C)分别产生了最高的磨损率和摩擦系数。此外,交互作用图揭示了不同因素之间的交互作用在统计学上不显著。

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