首页> 外文期刊>Proceedings of the institution of mechanical engineers >Investigations on dry sliding frictional and wear characteristics of SiC and red mud reinforced AI2024 matrix hybrid composites using Taguchi's approach
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Investigations on dry sliding frictional and wear characteristics of SiC and red mud reinforced AI2024 matrix hybrid composites using Taguchi's approach

机译:用Taguchi方法研究SiC和赤泥增强的AI2024基复合材料的干滑动摩擦磨损特性

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In this study, frictional and wear behavior of Al2024/SiC/red mud hybrid composites processed by stir casting route has been investigated under dry sliding conditions. Further, influence of parameters, namely red mud fraction (5-20 wt%) and particle size (37-125 mu m), applied load (10-40 N), sliding distance (3000-6000 m), sliding velocity (0.5-2.0 m/s), and their interaction terms on multiresponse characteristics has been examined by employing Taguchi's approach. The wear behavior of hybrid Al composites has been investigated using pin-on-disc apparatus at room temperature and optimization of parameters has been carried by statistical analysis. The adequacy of the developed model has been checked by conducting confirmation experiment and studying the worn surface morphology. The analysis of variance indicates that sliding distance has highest influence (with a contribution of 19.74%) on the wear loss characteristics, while applied load has a maximum contribution of 38.86% in the friction coefficient of the hybrid composites. It has also been revealed that the wear resistance of the hybrid composites is improved with an increase in red mud fraction and decrease in the magnitude of applied load and sliding distance. The morphology of worn surfaces shows that ploughing and abrasion of the wear surface is considerably increased with an increase in the magnitude of wear parameters. But, an increase in red mud fraction reduces the plastic deformation (delamination) of the wear surface since it favors formation of a protective layer between the sliding surfaces. The results of the confirmation experiment indicate that wear loss and friction coefficient of the developed composites have been reduced by 400 and 51%, respectively, in comparison to unreinforced alloy under optimized conditions. The errors in the measurements of the wear loss and friction coefficient have been found to be 4.26 and 2.63%, respectively.
机译:在这项研究中,研究了在干式滑动条件下通过搅拌铸造法加工的Al2024 / SiC /红泥杂化复合材料的摩擦磨损性能。此外,参数的影响,即赤泥含量(5-20​​ wt%)和粒径(37-125μm),施加的载荷(10-40 N),滑动距离(3000-6000 m),滑动速度(0.5) -2.0 m / s),以及它们在多响应特性上的相互作用项已经通过Taguchi的方法进行了检验。在室温下使用针盘设备研究了杂化铝复合材料的磨损行为,并通过统计分析对参数进行了优化。通过进行确认实验并研究磨损的表面形态,检查了所开发模型的适当性。方差分析表明,滑动距离对磨损损耗特性的影响最大(贡献为19.74%),而施加的载荷对杂化复合材料的摩擦系数的贡献最大为38.86%。还发现杂化复合材料的耐磨性随着赤泥分数的增加以及所施加载荷的大小和滑动距离的减小而提高。磨损表面的形态表明,随着磨损参数值的增加,磨损表面的耕作和磨损会显着增加。但是,赤泥分数的增加减少了磨损表面的塑性变形(脱层),因为它有利于在滑动表面之间形成保护层。确认实验的结果表明,与在优化条件下的非增强合金相比,开发的复合材料的磨损损失和摩擦系数分别降低了400%和51%。磨损损耗和摩擦系数的测量误差分别为4.26%和2.63%。

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