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Dry Sliding Wear behaviour of cast Al/Al2O3/Gr hybrid nano-composite using response surface methodology

机译:使用响应表面方法的铸造Al / Al2O3 / GR杂交纳米复合材料的干式滑动磨损行为

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The newly engineered metal matrix nanocomposite (MMNC) of Al 6061 reinforced with 1.2 wt % A1203 and 0.5 wt % Gr (Al-l.2A1203-0.5Gr) hybrid nanocomposite was prepared by ultrasonic assisted stir casting method. A three-level central composite design test was developed using response surface methodology; parameters such as load, velocity and sliding distance were varied in the range of 10-30 N, 0.4-1.1 m/s and 500-1500 m, respectively. Dry sliding wear tests were performed as per the experimental design using a pin-on disc setup at room temperature. Analysis of variance (Anova) was applied to investigate the influence of process parameters and their interactions viz., Load, velocity, sliding distance on wear, and coefficient of friction (COF). The aim of the study was to identify the process parameters that significantiy affect the output features. Further, a mathematical model has been formulated by applying response surface method in order to estimate the tribology characteristics such as wear and COF of the hybrid nanocomposites.
机译:通过超声辅助搅拌铸造方法制备了用1.2wt%A1203和0.5wt%GR(Al-L.2A1203-0.5GR)杂化纳米复合材料加固的新工程化金属基质纳米复合材料(MMNC)。三级中央复合设计试验是使用响应表面方法产生的;诸如负载,速度和滑动距离的参数分别在10-30 n,0.4-1.1m / s和500-1500米的范围内变化。在室温下使用销钉盘设置,根据实验设计进行干式滑动磨损试验。应用方差分析(ANOVA)研究了过程参数及其相互作用viz的影响。,载荷,速度,滑动距离,磨损系数(COF)。该研究的目的是识别显着影响输出功能的过程参数。此外,通过施加响应表面方法制定了数学模型,以估计摩擦纳米复合材料的磨损和COF的摩擦学特性。

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