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Tribological behaviour of copper oxide nanoparticle suspension

机译:氧化铜纳米颗粒悬浮液的摩擦学行为

摘要

This work presents and discusses the tribological behaviour of nanoparticle suspensions in a polyalphaolefin (PAO6). CuO nanoparticles were separately dispersed at 0.5, 1.0 and 2.0% wt. in PAO6 using an ultrasonic probe for 2 minutes. AW properties were obtained using a TE53SLIM tribometer with a block-on-ring configuration and EP properties were obtained using a Four-Ball machine according to ASTM D2783. Wear surfaces were analyzed by SEM and EDS after tests. The study led to the following conclusions: nanoparticle suspensions exhibited reductions in friction and wear compared to the base oil; CuO suspensions showed the highest friction coefficient and lowest wear per nanoparticle content of 2%; all concentrations of nanoparticles improved the EP properties of PAO6; CuO showed better results at 0.5% wt. of nanoparticles; and the antiwear mechanism of nanoparticulate additive was produced by tribo-sintering.
机译:这项工作提出并讨论了聚α-烯烃(PAO6)中纳米颗粒悬浮液的摩擦学行为。 CuO纳米颗粒分别以0.5、1.0和2.0重量%分散。使用超声波探头在PAO6中放置2分钟。使用TE53SLIM摩擦计具有环上阻滞配置,可得到AW性能,而根据ASTM D2783,可使用四球机获得EP性能。试验后通过SEM和EDS分析磨损表面。该研究得出以下结论:与基础油相比,纳米颗粒悬浮液的摩擦和磨损降低。 CuO悬浮液显示出最高的摩擦系数和最低的每纳米颗粒含量2%的磨损。所有浓度的纳米颗粒均改善了PAO6的EP性能; CuO在0.5%wt时显示出更好的结果。纳米粒子通过摩擦烧结制备了纳米颗粒添加剂的抗磨机理。

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