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Wear Performance Analysis of Aluminum Matrix Composites and Optimization of Process Parameters Using Statistical Techniques

机译:铝基复合材料磨损性能分析及统计技术优化工艺参数优化

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This paper presents the wear behavior of gears manufactured using Al matrix composites (AMCs) reinforced with microparticles (with sizes of 40 mu m and contents of 5 and 10 wt pct) and nanoparticles (with sizes of < 100 nm and contents of 1 and 2 wt pct) of SiC, fabricated using stir casting. Specially designed test rig was manufactured for determining the wear performance of these gears and investigated under different applied loads and experiment times. The composite prepared using 2 pct SiC nanoparticle reinforcements was superior to other compositions tested in terms of tribological applications. The effectiveness of nanoparticles compared to that of microparticles was analyzed statistically. Taguchi's method was used for optimizing the wear parameters. Furthermore, the influence of the experiment time, applied load, and SiC content on the wear was investigated and a regression equation was developed for AMCs reinforced with micro- and nanoparticles. The "smaller is better" characteristic was selected as the objective of this model to analyze the wear resistance. The experiment time and applied load had the most significant effect, followed by the SiC content, in the case of microparticles, whereas for nanoparticles, the applied load was the least significant factor when compared to experiment time and SiC content. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:本文介绍了使用微粒增强的Al基质复合材料(AMCs)制造的齿轮的磨损行为(尺寸为40μm,含量为5和10wt pct)和纳米颗粒(尺寸<100nm和1和2的含量wt pct)SiC,使用搅拌铸造制造。制造专门设计的试验台,用于确定这些齿轮的磨损性能,并在不同的施加负载和实验时间下进行研究。使用2PCT SiC纳米粒子增强剂制备的复合材料优于根据摩擦学应用测试的其他组合物。统计学地分析了纳米颗粒的有效性。 Taguchi的方法用于优化磨损参数。此外,研究了实验时间,施加的载荷和SiC含量对磨损的影响,并为用微型和纳米颗粒增强的AMCS开发了回归方程。选择“较小是更好”的特征作为该模型分析耐磨性的目的。实验时间和施加的载荷具有最显着的效果,其次是SiC含量,在微粒的情况下,与纳米颗粒相比,施加的载荷是与实验时间和SiC含量相比的最小值。 (c)2019年矿物质,金属和材料协会和ASM国际

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