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Dynamic Analysis Schemes for Flying Head Sliders Over Discrete Track Media

机译:离散轨道介质上飞头滑块的动力学分析方案

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摘要

It is becoming increasingly important to analyze the static and dynamic characteristics of flying head sliders over discrete track media (DTM) and bit patterned media (BPM) using the molecular gas-film lubrication (MGL) equation. In this study, we obtained the dynamic characteristics of the air bearing of the read/write head by considering not only the stiffness and damping produced by the air film, but also the negative stiffness caused by the attractive van der Waals force; these quantities were calculated in the frequency domain using a perturbation method. The dependence of the dynamic characteristics on the groove depth and frequency were calculated numerically. Moreover, the cubic interpolated propagation (CIP) method, a highly accurate and numerically stable scheme, was extended to the two-dimensional MGL problem in the time domain and the time evolution of the pressure produced by a single projection on the running disk, which is the simplest configuration of BPM, was calculated numerically.
机译:使用分子气膜润滑(MGL)方程分析离散磁道介质(DTM)和钻头图案介质(BPM)上的飞头滑块的静态和动态特性变得越来越重要。在这项研究中,我们不仅考虑了气膜产生的刚度和阻尼,还考虑了由范德华力引起的负刚度,从而获得了读写头空气轴承的动态特性。使用扰动方法在频域中计算这些数量。数值计算了动力学特性对凹槽深度和频率的依赖性。此外,三次插值传播(CIP)方法是一种高度精确且数值稳定的方案,已扩展到二维MGL问题的时域和运行磁盘上单个投影产生的压力随时间的演化,是BPM的最简单配置,是通过数值计算得出的。

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