Optimization of Dry-Sliding Wear Parameters on Lanthanum Hexa Aluminate Reinforced Magnesium AZ91E Composites Using Grey Relation Analysis

IF 0.4 Q4 NANOSCIENCE & NANOTECHNOLOGY Nano Hybrids and Composites Pub Date : 2022-04-05 DOI:10.4028/p-08w7lk
Sai Ram Ynv, C. Tara Sasanka, J. Prabakaran
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引用次数: 2

Abstract

This work confers to the preparation of Magnesium metal matrix composites reinforced with Lanthanum Hexa-aluminate nanoparticles by a stir casting technique and the tribological characteristics of the composites in dry condition were investigated. A Comparison is also made with AZ91E magnesium alloy and the prepared composites for the assessment of wear behavior. A design of experiments based on the Taguchi technique is used to collect data in a controlled manner. A L25 orthogonal array is used to investigate the effect of wear parameters such as Percentage of Reinforcement, Sliding Speed, Applied Load, and Sliding Distance on dry sliding wear of composites. The aim of the model was to investigate dry sliding wear with "smaller is better" characteristics. The results showed that sliding distance has the largest effect on wear, while the load is the most important factor in friction response. In GRA analysis, the combined effect of wear and frictional force is considered and the optimum combination is identified (S5 L1 D1 R4). The percent of the contribution of load, L (60.97 %) was known to be the most important factor influencing performance to wear. The % reinforcement, R (31.17%) was found to be the 2nd most influencing factor, followed by sliding distance, D (4.81%), and sliding velocity S (0.25%). The worn surfaces of fabricated composites in the best and worst conditions were examined using scanning electron microscopy for understanding the wear mechanism.
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基于灰色关联分析的六铝酸镧增强AZ91E镁复合材料干滑动磨损参数优化
采用搅拌铸造技术制备了六铝酸镧纳米颗粒增强金属镁基复合材料,并对复合材料在干燥条件下的摩擦学特性进行了研究。并与AZ91E镁合金及其制备的复合材料进行了磨损性能的比较。基于田口技术的实验设计被用于以受控的方式收集数据。采用L25正交法研究了增强率、滑动速度、外加载荷和滑动距离等磨损参数对复合材料干滑动磨损的影响。该模型的目的是研究具有“越小越好”特性的干滑动磨损。结果表明,滑动距离对磨损的影响最大,而载荷是影响摩擦响应的最主要因素。在GRA分析中,考虑了磨损和摩擦力的综合影响,确定了最佳组合(S5 L1 D1 R4)。载荷的贡献百分比L(60.97%)是影响磨损性能的最重要因素。钢筋率R(31.17%)是第二大影响因素,其次是滑动距离D(4.81%)和滑动速度S(0.25%)。利用扫描电子显微镜观察了复合材料在最佳和最差条件下的磨损表面,以了解其磨损机理。
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Nano Hybrids and Composites
Nano Hybrids and Composites NANOSCIENCE & NANOTECHNOLOGY-
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