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首页> 外文期刊>Particulate Science and Technology: An International Journal >Fabrication of 6061 aluminum alloy reinforced with Si3N4/n-Gr and its wear performance optimization using integrated RSM-GA
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Fabrication of 6061 aluminum alloy reinforced with Si3N4/n-Gr and its wear performance optimization using integrated RSM-GA

机译:用Si3N4 / N-GR加固6061铝合金及其使用集成RSM-GA的磨损性能优化

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摘要

In this research work the dry sliding wear behavior of a hybrid aluminum metal matrix composite is evaluated. Al 6061 is used as a matrix material while Si3N4 and nanographite powder (3-15 wt%) are used as reinforcements. These two reinforcements (50 wt% of each) were blended in a high-energy ball mill for homogeneous mixing to derive the sound aluminum matrix composite (AMC). The hybrid composite is made by the stir casting route and its wear rate was investigated against an EN32 steel disc surface, using a pin-on-disc tribometer. Integrated response surface methodology (RSM) and genetic algorithm (GA) are used to optimize the pin-on-disc process parameters. Analysis of variance (ANOVA) shows that sliding distance plays a major role on the dry sliding wear rate followed by load, sliding speed and reinforcements. Two-factor interactions and quadratic terms have also significant contributions. GA suggested a minimum wear rate value of 0.827 mg at optimized setting. Microstructural analysis by scanning electron microscopy (SEM) reveals that very fine grooves are obtained at optimized settings while at other settings severe ploughing is observed. Transition of wear mechanism takes place with the increase of speed (i.e., temperature between the two rubbing surfaces) from abrasive to adhesive.
机译:在该研究中,研究了杂种铝金属基质复合材料的干滑动磨损行为。 Al 6061用作基质材料,而Si3N4和纳米粉末(3-15wt%)用作增强剂。将这两种增强件(各自的50wt%)混合在高能球磨机中,用于均匀混合以导出声音铝基质复合物(AMC)。通过搅拌铸造途径制造杂化复合材料,并使用销盘摩擦计对EN32钢盘表面研究其磨损率。集成响应面方法(RSM)和遗传算法(GA)用于优化引脚盘过程参数。方差分析(ANOVA)表明,滑动距离在干燥滑动磨损率下起主要作用,然后是负载,滑动速度和增强件。双因素互动和二次术语也有重大贡献。 GA在优化设置下建议最小磨损率值为0.827 mg。通过扫描电子显微镜(SEM)的微观结构分析显示,在优化的设置中获得非常细的凹槽,而在其他设置处被观察到严重耕作。磨损机构的转变随着速度的速度增加而来,从磨料到粘合剂的速度的增加(即,两个摩擦表面之间的温度)。

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