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首页> 外文期刊>Tribology International >A comparison of tribological properties of evenly distributed and agglomerated diamond nanoparticles in lubricated high-load steel-steel contact
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A comparison of tribological properties of evenly distributed and agglomerated diamond nanoparticles in lubricated high-load steel-steel contact

机译:润滑高负荷钢-钢接触中均匀分布和团聚的金刚石纳米颗粒的摩擦学性能比较

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摘要

The tribological properties of evenly distributed and agglomerated nanodiamonds on steel contact surfaces were compared in ethylene glycol lubricated tests using a pin-on-disc tribometer with a steel counter ball. The nanodiamond distributions were studied on silicon and steel surfaces using scanning electron microscopy. Friction and wear decreasing effects were observed with both sprayed and agglomerated nanodiamonds. The average friction coefficient with pure ethylene glycol lubricated contacts decreased from 0.16 to 0.12 with agglomerated nanodiamonds when 100 N load was applied. A minimum for both disc wear rate (0.40 × 10~(-6) mm~3/Nm) and ball wear rate (0.29 × 10~(-6) mm~3/Nm) was observed with agglomerated nanodiamonds. One of the mechanisms of nanodiamond lubrication was observed to be the incorporation of nanodiamond particles in to the tribolayer.
机译:使用带钢埋球的销盘式摩擦计,在乙二醇润滑测试中比较了钢接触表面上均匀分布和团聚的纳米金刚石的摩擦学性能。使用扫描电子显微镜研究了纳米金刚石在硅和钢表面的分布。喷涂和团聚的纳米金刚石均观察到摩擦和磨损降低效果。当施加100 N负载时,使用聚乙二醇纳米金刚石时,纯乙二醇润滑触点的平均摩擦系数从0.16降低至0.12。团聚的纳米金刚石的圆盘磨损率(0.40×10〜(-6)mm〜3 / Nm)和球磨损率(0.29×10〜(-6)mm〜3 / Nm)最低。观察到纳米金刚石润滑的机制之一是将纳米金刚石颗粒掺入到摩擦层中。

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