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Tri-state dynamic model and adhesive effects on flying-height modulation for ultra-low flying head disk interfaces

机译:超低飞行头磁盘界面的三态动力学模型和粘附对飞行高度调制的影响

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摘要

Physical spacing between a flying slider and a rotating disk is projected to be 3 nm in order to achieve extremely high areal recording densities of 1 Tb/in2. In such ultra-low flying-height regimes, two imminent obstacles that need to be overcome are intermittent head/ disk contacts and strong intermolecular adhesive forces at the head/disk interface (HDI). Head/disk contact can cause large vibrations of the recording slider and possibly damage the disk and slider due to large contact forces. Strong adhesive forces disturb the balance of forces in a flying slider by pulling it down onto the disk and increasing the possibility of catastrophic HDI failures by doing so. This paper describes a dynamic model that includes contact and adhesive forces. Specifically, a lumped parameter single degree-of-freedom, three state nonlinear dynamic model representing the normal dynamics of the HDI and asperity-based contact and adhesive models were developed and coupled together to predict the performance of ultra-low flying sliders. The validity of the proposed dynamic model was confirmed in terms of flying-height modulation (FHM) by experimental measurements using ultra-low flying HDIs. It was found that the amplitude and frequency components of the dynamic micr-owaviness play an important role in slider dynamics, Furthermore, the effect of adhesive force on FHM was investigated and design guidelines for reduced FHM were suggested.
机译:为了实现1 Tb / in2的极高面积记录密度,浮动滑块和旋转磁盘之间的物理间距预计为3 nm。在这样的超低飞行高度状态下,需要克服的两个迫在眉睫的障碍是磁头/磁盘间断接触以及磁头/磁盘界面(HDI)上的强大的分子间粘合力。磁头/磁盘的接触会引起记录滑块的大振动,并可能由于较大的接触力而损坏磁盘和滑块。强大的粘附力通过将浮动滑块向下拉到磁盘上而破坏了浮动滑块中的力平衡,从而增加了灾难性的HDI故障的可能性。本文介绍了一个包含接触力和粘附力的动力学模型。具体而言,开发了集总参数单自由度,代表HDI正常动力学的三态非线性动力学模型以及基于凹凸的接触和粘合模型,并将其耦合在一起以预测超低飞行滑块的性能。通过使用超低飞行HDI进行的实验测量,在飞行高度调制(FHM)方面证实了所提出动态模型的有效性。研究发现,动态微低音的振幅和频率分量在滑块动力学中起重要作用。此外,研究了粘合力对FHM的影响,并提出了降低FHM的设计准则。

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