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Self-lubricating Al-WS2 composites for efficient and greener tribological parts

机译:自润滑al-Ws2复合材料,用于高效和绿色的摩擦学部件

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摘要

Due to their mechanical and physical properties, aluminium alloys possess wide potential in the automotive industry, particularly in hot reciprocating applications such as pistons for diesel and petrol engines. WS2 particle-reinforced composites could bring further improvements by reducing friction and wear between moving parts. Reducing friction improves efficiency by lowering energy/fuel use, ultimately leading to lower greenhouse gas emissions, while antiwear properties can prolong component life. This study compares for the first time the tribological performance of powder metallurgy-consolidated Al composites reinforced with either IF- or 2H-WS2 particles, so as to elucidate their mechanism of action in test conditions similar to those encountered in engine applications. The composites were tested in lubricated reciprocating contacts against AISI52100 steel balls and the impact of WS2 could be seen at both 25 and 100ºC. The reduced friction and wear at ambient temperature is due to the predominantly physical mechanism of action of WS2, while the best antiwear performance is measured at elevated (standard operating engine) temperatures that promote the chemical reaction of WS2 with the aluminium matrix. The investigation focused on studying the wear tracks/scars and the tribofilms generated on the composite and ball with optical profilometry, SEM, XPS and Auger spectroscopy.
机译:由于其机械和物理性能,铝合金在汽车工业中具有广阔的潜力,特别是在热往复运动的应用中,例如柴油和汽油发动机的活塞。 WS2颗粒增强复合材料可通过减少运动部件之间的摩擦和磨损来带来进一步的改进。减少摩擦通过降低能源/燃料使用量来提高效率,最终导致温室气体排放量减少,而抗磨性能可以延长组件寿命。这项研究首次比较了用IF-或2H-WS2颗粒增强的粉末冶金固结Al复合材料的摩擦学性能,以便阐明其在类似于发动机应用的测试条件下的作用机理。在AISI52100钢球的润滑往复接触中对复合材料进行了测试,并且在25ºC和100ºC下都可以看到WS2的影响。在环境温度下减少的摩擦和磨损归因于WS2的主要物理作用机理,而最佳的抗磨性能是在促进WS2与铝基体化学反应的升高的温度(标准运行发动机)下测得的。该调查的重点是通过光学轮廓仪,SEM,XPS和俄歇光谱仪研究复合材料和球上的磨损痕迹/疤痕和摩擦膜。

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