首页> 外文会议>Symposiumon Nanotribology and Nanotechnology For 1 Tbit/in~2, Oct 21-24, 2001, San Francisco, California >PREDICTING FLY-HEIGHT MODULATION AND CONTACT FORCES IN ULTRA-LOW FLYING HEAD-DISK INTERFACES USING A TRI-STATE SWITCHING DYNAMIC CONTACT MODEL
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PREDICTING FLY-HEIGHT MODULATION AND CONTACT FORCES IN ULTRA-LOW FLYING HEAD-DISK INTERFACES USING A TRI-STATE SWITCHING DYNAMIC CONTACT MODEL

机译:利用三态切换动态接触模型预测超低飞行头盘界面中的飞行高度调制和接触力

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In order to achieve higher recording densities up to 1 Tbit/In~2 using conventional recording technologies, the recording slider will need to "fly" within 5 nm or less from the rotating disk. In such ultra-low flying height regimes, intermittent head/disk contact is unavoidable. Head/disk contact can cause large vibrations of the recording slider in the normal and lateral (off-track) directions as well as damage the disk due to large dynamic contact forces. This paper describes a simple continuum mechanics-based model that includes the dynamics of a flying head/disk interface (HDI) as well as the contact dynamics. Specifically, a lumped parameter one degree-of-freedom, three state nonlinear dynamic model representing the normal dynamics of the HDI and an asperity-based contact model are developed. The effects of realistic (dynamic microwaviness) and harmonic input excitations, contact stiffness (surface roughness) and air-bearing force during contact on fly-height modulation (FHM) and contact force are investigated. Based on the tri-state model predictions, design guidelines for reduced FHM and dynamic contact force are suggested.
机译:为了使用常规记录技术实现高达1 Tbit / In〜2的更高记录密度,记录滑块将需要在离旋转磁盘5 nm或更短的距离内“飞行”。在这种超低飞行高度状态下,磁头/磁盘间断接触是不可避免的。磁头/磁盘的接触会导致记录滑块在法线和横向(偏离磁道)方向上产生较大的振动,并且由于较大的动态接触力而损坏磁盘。本文介绍了一个简单的基于连续力学的模型,其中包括飞头/磁盘界面(HDI)的动力学以及接触动力学。具体来说,开发了一种集总参数一自由度,代表HDI正常动力学的三态非线性动力学模型和基于粗糙的接触模型。研究了实际(动态微波纹)和谐波输入激励,接触刚度(表面粗糙度)和接触期间气浮力对飞行高度调制(FHM)和接触力的影响。基于三态模型的预测,提出了降低FHM和动态接触力的设计指南。

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