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Tribological behaviour of nano-zirconia reinforced iron-based self-lubricating composites for bearing applications

机译:纳米氧化锆增强铁基自润滑复合材料用于轴承应用的摩擦学行为

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摘要

In this research work nano zirconia (ZrO2) as ceramic reinforcement was added to strengthen Fe-Cu-Sn based composites and MoS2 was added to control their tribological properties. The composites were fabricated by powder metallurgy technique. XRD and SEM analysis revealed the presence of phases (Cu2FeSn, Sn11Cu41, Fe5Sn3, ZrFe2, and FeMo2S4) that influenced the properties of the composites. The microhardness value of 2.12 GPa and nano hardness of similar to 22 GPa was acquired in case of nano-ZrO2 reinforced composites and detailed analysis of worn surfaces was carried out through SEM, EDS, AFM and optical microscopy. Tribological properties examined using the ball-on-disk tribometer revealed lower friction (0.128) and wear rates for the composite containing 0.5 wt% of MoS2 and 2 wt% of ZrO2 making them a potential bearing material.
机译:在本研究中,添加纳米氧化锆(ZrO2)作为陶瓷增强体来增强Fe-Cu-Sn基复合材料,并添加MoS2来控制其摩擦学性能。采用粉末冶金技术制备了复合材料。XRD和SEM分析揭示了影响复合材料性能的相(Cu2FeSn、Sn11Cu41、Fe5Sn3、ZrFe2和FeMo2S4)的存在。纳米ZrO2增强复合材料的显微硬度值为2.12GPa,纳米硬度与22GPa相似,并通过SEM、EDS、AFM和光学显微镜对磨损表面进行了详细分析。使用球-盘摩擦计检查的摩擦学性能表明,含有0.5 wt%MoS2和2 wt%ZrO2的复合材料具有较低的摩擦(0.128)和磨损率,使其成为一种潜在的轴承材料。

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