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Experimental study of slider–lubricant interaction with different slider designs

机译:不同滑块设计的滑块与润滑油相互作用的实验研究

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摘要

In this study, a new type of femto slider (Panda IV) with improved force arrangement and higher air pressure/higher stiffness at trailing edge of the slider was evaluated and compared experimentally with our previous type of femto sliders (Panda II and III). The evaluations were conducted on the Candela 5100 Optical Surface Analyzer (OSA) with the VENA CSS/load–unload system attached. Disks coated with a layer of 1.2 nm lubricant were specially prepared with a lubricant step for the comparison tests. Flying height (FH) of each slider was calibrated by bump disk with 3.5 nm bump height for maintaining the consistent FH during the tests. The relative amount of lubricant redistribution was analyzed with an OSA immediately after each slider is flown on-track for a period of time. It is found that the amount of lubricant transferred or the slider–lubricant interaction are minimized by reducing the size of slider’s central trailing pad. Finally, possible explanations on the lubricant transfer are discussed.
机译:在这项研究中,评估了一种新型的毫微微滑子(Panda IV),它具有改进的力布置和较高的气压/较高的刚度,并与我们以前的毫微微滑子(Panda II和III)进行了实验比较。评估是在带有VENA CSS /装卸系统的Candela 5100光学表面分析仪(OSA)上进行的。专门准备了涂有1.2 nm润滑剂层的磁盘,并在其润滑剂步骤中进行了对比测试。通过具有3.5 nm凸块高度的凸块盘校准每个滑块的浮动高度(FH),以在测试期间保持一致的FH。每个滑块在轨道上飞行一段时间后,立即用OSA分析润滑剂的重新分配的相对量。结果发现,通过减小滑块中央后垫板的尺寸,可以最大程度地减少润滑剂的转移或滑块与润滑剂之间的相互作用。最后,讨论了有关润滑剂转移的可能解释。

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  • 来源
    《Microsystem Technologies》 |2009年第11期|1515-1520|共6页
  • 作者单位

    Data Storage Institute 5 Engineering Drive 1 Singapore 117608 Singapore;

    Data Storage Institute 5 Engineering Drive 1 Singapore 117608 Singapore;

    Data Storage Institute 5 Engineering Drive 1 Singapore 117608 Singapore;

    Data Storage Institute 5 Engineering Drive 1 Singapore 117608 Singapore;

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  • 正文语种 eng
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