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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Lubrication studies of head-disk interfaces in a controlled environment. Part 2: degradation mechanisms of perfluoropolyether lubricants
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Lubrication studies of head-disk interfaces in a controlled environment. Part 2: degradation mechanisms of perfluoropolyether lubricants

机译:在受控环境中对磁头-磁盘接口进行润滑研究。第2部分:全氟聚醚润滑剂的降解机理

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摘要

The decomposition mechanisms of the perfluoropolyether (PFPE) lubricants were studied in this paper using several experimental approaches. The PFPE lubricant film can be bonded to disk surface by illuminating the lubricant film with ultraviolet (UV) light; then the durability of the head-disk interface can be improved. However, during the sliding process, the illumination with UV light can accelerate the decomposition of the lubricant, reducing the head-disk interface durability and causing more gaseous fragments because low-energy electrons created by the illumination interact with the lubricant molecules, activating and breaking up the molecules. A decomposition mechanism of the lubricant with the effect of low-energy electrons was proposed. Mechanical shear is also found to have an important effect on the decomposition of the lubricant. The partial pressures of the gaseous fragments of the lubricant increase rapidly with increase in the sliding velocity. No obvious effect of ambient temperature up to 70 ℃ on the decomposition of the PFPE lubricant was observed, although higher temperatures are expected to be detrimental.
机译:本文采用几种实验方法研究了全氟聚醚(PFPE)润滑剂的分解机理。 PFPE润滑膜可以通过用紫外线(UV)照射润滑膜来粘结到磁盘表面;然后可以改善磁头磁盘接口的耐用性。但是,在滑动过程中,用紫外线照射会加速润滑剂的分解,降低磁头-磁盘界面的耐用性,并导致更多的气态碎片,因为由照射产生的低能电子会与润滑剂分子相互作用,从而活化和破坏分子。提出了低能电子作用下润滑剂的分解机理。还发现机械剪切对润滑剂的分解具有重要影响。润滑剂的气态碎片的分压随着滑动速度的增加而迅速增加。最高温度为70℃时,未观察到对PFPE润滑剂的分解有明显影响,尽管预计高温会有害。

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