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首页> 外文期刊>Tribology in Industry >Effect of Load, Sintering Temperature and Reinforcement Concentration on Al-Si/γ-Al2O3/GNP Self-Lubricating Hybrid Composite
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Effect of Load, Sintering Temperature and Reinforcement Concentration on Al-Si/γ-Al2O3/GNP Self-Lubricating Hybrid Composite

机译:载荷,烧结温度和增强浓度对Al-Si /γ-Al2O3 / GNP自润滑杂化复合材料的影响

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Latest advancements in nanotechnology has lately empowered improvement of Hybrid nanocomposites for basic structural applications. Carbon based materials, graphite, carbon nanotubes (CNT's), and graphene have novel mechanical, tribological and thermal properties. Owing to their lubricious nature, drew scientists to integrate lightweight self-lubricating hybrid nanocomposites with prevalent mechanical and tribological properties for various automotive, aerospace and marine applications. Hence the objective of this investigation is to determine, the frictional and wear attributes of self-lubricating novel hybrid nanocomposites. Friction and wear studies of self lubricating Eutectic Aluminium Silicon/Nano Aluminium Oxide/Graphene Nano Platelets hybrid composite with varying GNP content. In the present examination, aluminum hybrid nanocomposites were fabricated by Spark Plasma Sintering (SPS) to consolidate γ-Al2O3 and Graphene nano-platelets (GNP) particles into Eutectic Al-Si to reinforcenanocomposites. For this novel composition sample; the impacts of load, the impact of fortification, impact of sintering temperature has been evaluated. The samples were set up at three sintering temperature 450 ?C; 500 ?C; 520 ?C. To research the tribological conduct of self-lubricating hybrid nanocomposites, ball-on-disc tests were performed. The wear and friction behavior of the composites were assessed for loads (50, 100, 150, 200, 250, 300 N) with sliding distance of 120 meter; stroke2mm and frequency at 30Hz. Results of the tribo test indicate that the novel hybrid self lubricating composite exit excellent anti friction anf anti wear properties compared to Al-Si/nano Aluminium Oxide composite. Reduction in friction and wear of the hybrid composite was reported in the range 12.41–40 % and 87.76–92.97 % compared to Al-Si/Nano Aluminium Oxide composite sample. The outcomes demonstrated that sintering temperature, reinforcement concentration and operational parameters have huge impact on the properties of composite. It was discovered that this novel self-lubricating hybrid nanocomposites indicated predominant tribological properties and exhibited the capacity of self-lubricating composite amid tribological conditions. Frictional surfaces were explored utilizing portrayal instruments such as Scanning Electron Microscopy (SEM), Electron Dispersion Microscopy (EDS), X-Ray Dispersive Microscopy (XRD) and 3-D Surface Profilometer.
机译:纳米技术的最新进展最终能够改善杂种纳米复合材料的基本结构应用。碳基材料,石墨,碳纳米管(CNT)和石墨烯具有新的机械,摩擦学和热性能。由于它们的润滑性,绘制了科学家,将轻质的自润滑杂交纳米复合材料与各种汽车,航空航天和海洋应用的普遍机械和摩擦学性能集成。因此,该研究的目的是确定自润滑新型杂化纳米复合材料的摩擦和磨损属性。自润滑共晶铝硅/纳米氧化铝/石墨烯纳米血小板杂种复合材料具有不同GNP含量的摩擦磨损研究。在本检查中,通过火花等离子体烧结(SPS)制造铝杂合纳米复合材料,将γ-Al 2 O 3和石墨烯纳米血小板(GNP)颗粒固结成共晶Al-Si以加强纤维织物复合材料。对于这种新型组成样品;载荷的影响,强化,烧结温度的影响,已经评估了烧结温度。在三个烧结温度450℃下设立样品; 500?c; 520?c。为了研究自润滑杂化纳米复合材料的摩擦学传导,进行球形盘试验。评估复合材料的磨损和摩擦行为,用于载荷(50,100,150,200,350,300n),其滑动距离为120米;中风2mm和30Hz的频率。摩擦试验的结果表明,与Al-Si /纳米氧化铝复合材料相比,新型杂化自润滑复合材料出口优异的抗摩擦抗磨损性能。与Al-Si /纳米氧化铝复合样品相比,报告了杂交复合材料的摩擦和磨损的摩擦和磨损的摩擦和磨损的含量为12.41-40%和87.76-92.97%。结果表明,烧结温度,增强浓度和操作参数对复合材料的性能产生了巨大影响。发现该新型自润滑杂交纳米复合材料表明了摩擦学条件下具有自润滑复合材料的能力。利用扫描电子显微镜(SEM),电子分散显微镜(EDS),X射线分散显微镜(XRD)和3-D表面轮廓仪等描写仪器进行摩擦表面。

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