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Surface Optimizing Behavior of Nano-Cu Lubricant to Tribosurfaces by Mechanochemical Process

机译:作者:张莹莹,王莹,王莹,王莹,王莹,王莹,王莹,王莹,王莹,王莹

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摘要

A special kind of surface modified copper nanoparticles was selected as the auto-reconditioning materials to in situ generate a copperized protective film on iron-base metal surfaces under designed tribological conditions. The morphologies and element distributions of the formed film were observed and determined by scanning electron microscopy (SEM) and energy dispersive spectrometry (EDS). The micro mechanical properties and tribological behaviors were investigated by nano test system and ball-on-disc tribotester. The results show that the morphology of the protective film is smooth, the nano-hardness decreases by 46% and the friction coefficient of the copperized protective film is about 0.10. The forming mechanism of the auto-reconditioning film can be described that the copper nanoparticles deposit on the worn surfaces and form iron-copper alloy film with lower hardness and shear strength, which has better friction-reducing, antiwear and surface-optimizing behaviors.
机译:选择一种特殊的表面改性铜纳米粒子作为自动翻新材料,原位在设计的摩擦学条件下在铁基金属表面上产生铜化保护膜。通过扫描电子显微镜(SEM)和能量分散光谱(EDS)观察形成和测定所形成的膜的形态和元素分布。通过纳米测试系统和球形圆盘Tribotester研究了微型机械性能和摩擦学行为。结果表明,保护膜的形态光滑,纳米硬度降低46%,铜化保护膜的摩擦系数约为0.10。可以描述自动调节膜的形成机理,使铜纳米颗粒在磨损的表面上沉积并形成具有较低硬度和剪切强度的铁 - 铜合金膜,其具有更好的摩擦力降低,抗磨和表面优化的行为。

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