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STUDY ON THE STRUCTURE AND TRIBOLOGICAL PROPERTIES OF SURFACE-MODIFIED Cu NANOPARTICLES

机译:表面改性Cu纳米粒子的结构和摩擦学性能研究

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Dialkyldithiophosphate-modified copper nanoparticles (DDP-nano Cu) were prepared by means of a redox surface modification technique. The structure of DDP-nano Cu was investigated with an ultraviolet-visible light spectrometer and a transmission electron microscope. The elemental composition of DDP- nano Cu was determined with an elemental analyzer. The dispersing behavior of DDP-nano Cu in various organic solvents was compared with nonmodified copper nanoparticles. The antiwear ability of DDP-nano Cu as additive in liquid paraffin was examined with a four-ball machine. It was found that DDP-nano Cu could well disperse in some organic solvents and had good antioxidation stability in air. The modified copper nanoparticles used as additives in liquid paraffin showed different antiwear ability depending on their particle size. The difference in the antiwear behaviors of nonmodified and DDP-modified copper nanoparticles is explained by their different inter- actions with the surface of the friction pairs during the friction process.
机译:借助氧化还原表面改性技术制备了二烷基二硫代磷酸酯改性的铜纳米颗粒(DDP-纳米铜)。用紫外可见光谱仪和透射电子显微镜研究了DDP-纳米铜的结构。用元素分析仪测定DDP-纳米铜的元素组成。将DDP-纳米铜在各种有机溶剂中的分散行为与未改性的铜纳米粒子进行了比较。用四球机检查DDP-纳米铜作为添加剂在液体石蜡中的抗磨能力。发现DDP-纳米铜可以很好地分散在某些有机溶剂中,并且在空气中具有良好的抗氧化稳定性。在液体石蜡中用作添加剂的改性铜纳米粒子显示出不同的抗磨能力,具体取决于它们的粒径。未改性的和DDP改性的铜纳米粒子在抗磨性能上的差异可以通过它们在摩擦过程中与摩擦副表面的不同相互作用来解释。

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