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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF DYNAMIC INSTABILITY IN THE HEAD DISK INTERFACE AT PROXIMITY

机译:头盘界面接近时动态失稳的实验与数值研究。

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摘要

As the flying height decreases to achieve greater areal density in hard disk drives, different proximity forces act on the air bearing slider, which results in fly height modulation and instability. Identifying and characterizing these forces has become important for achieving a stable fly height at proximity. One way to study these forces is by examining the fly height hysteresis, which is a result of many constituent phenomena. The difference in the touchdown and takeoff rpm (hysteresis) was monitored for different slider designs, varying the humidity and lubricant thickness of the disks, and the sliders were monitored for lubricant pickup while the disks were examined for lubricant depletion and modulation. Correlation was established between the observed hysteresis and different possible constituent phenomena. One such phenomenon was identified as the Intermolecular Force from the correlation between the lubricant thickness and the touchdown velocity. Simulations using 3D dynamic simulation software explain the experimental trends.
机译:随着浮动高度的降低,以实现硬盘驱动器更大的面密度,空气轴承滑块上会施加不同的接近力,从而导致浮动高度的调节和不稳定性。识别和表征这些力对于在附近实现稳定的飞行高度已经变得很重要。研究这些力的一种方法是检查飞行高度滞后现象,这是许多构成现象的结果。对于不同的滑块设计,改变磁盘的湿度和润滑剂厚度,监测着陆和起飞rpm(磁滞)的差异,并在检查磁盘的润滑剂消耗和调制时,监测滑块的润滑剂吸收。在观察到的磁滞和不同的可能构成现象之间建立了相关性。根据润滑剂厚度和接地速度之间的相关性,将这种现象称为分子间力。使用3D动态仿真软件进行的仿真说明了实验趋势。

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