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Effect of volatile organic contamination on head-disk interface tribology and a method for its reduction

机译:挥发性有机污染物对磁头-磁盘界面摩擦学的影响及其减少方法

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Volatile organic contamination is known to be one of the factors to cause the failure of head-disk interface (HDI). Therefore, reduction of its harmful effects and improvement of the stability and reliability of HDI is becoming an important issue. In this study, the effects of some model compounds of volatile organic contamination on the tribological characteristics of HDI were systematically investigated using a contact start/stop (CSS) tester. The slider surface after the CSS tests was analyzed using Time-of-Flight Secondary Ion Mass Spectroscopy (TOF-SIMS). Transfer of lubricating oil onto the slider surface was detected after the CSS tests. The organic contaminants promoted the transfer and resulted in high and unstable friction force. Fluorinated self-assembled monolayers (SAMs) were applied on the slider surface for reducing the transferred amount of the lubricating oil. Tribological performance of the slider coated with the SAMs and the transfer amount of lubricating oil onto the slider surface in the presence of contaminant was investigated The friction force was low and stable in the case of the SAMs coated slider even under environmental contaminant. This result could be explained by the reduction of the transferred lubricating oil because the SAMs that coated on the slider surface were low surface energy..
机译:众所周知,挥发性有机污染物是导致磁头-磁盘接口(HDI)故障的因素之一。因此,减少其有害影响并提高HDI的稳定性和可靠性已成为重要的问题。在这项研究中,使用接触启动/停止(CSS)测试仪系统地研究了挥发性有机污染物的某些模型化合物对HDI摩擦学特性的影响。使用飞行时间二次离子质谱仪(TOF-SIMS)分析CSS测试后的滑块表面。 CSS测试后检测到润滑油在滑块表面上的转移。有机污染物促进了转移,并导致高而不稳定的摩擦力。将氟化的自组装单分子层(SAMs)施加在滑块表面上,以减少润滑油的转移量。研究了涂有SAMs的滑块的摩擦学性能以及在有污染物的情况下润滑油在滑块表面上的转移量。即使是在SAMs涂层的滑块中,即使在环境污染下,摩擦力也很低且稳定。该结果可以通过减少转移的润滑油来解释,因为涂覆在滑块表面上的SAM具有较低的表面能。

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