An efficient scheme for analyzing unloading process

Meirong Wei, Yan Liu
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Abstract

As the air bearing flying height (a few nanometer levels) and the deformation of suspensions (micro-or millimeter level) run at two different scales, a dual-scale model for head disk interface (HDIs) has been proposed to analyze the unloading behavior of a subambient pressure slider. With the scheme developed, the unloading process can be simulated efficiently. The nonlinear vibrations of the air bearing forces and moments were described with analytical expression obtained from a surface fitting scheme. Combined with a 3 degree of freedom (DOF) suspension model whose parameters were estimated from a comprehensive FEM and experiments are applied to verify the value. The results from the FEM and the experiments are comparable and acceptable for simulations.
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一种有效的卸料过程分析方案
针对空气轴承的飞行高度(几个纳米级)和悬架的变形(微、毫米级)在两个不同的尺度下运行的情况,提出了一种双尺度的头盘界面(hmi)模型来分析亚环境压力滑块的卸载行为。该方案能够有效地模拟卸载过程。用曲面拟合的解析表达式描述了空气轴承力和矩的非线性振动。结合一个三自由度悬架模型,通过综合有限元法估算其参数,并进行了实验验证。有限元计算结果与实验结果具有可比性和可接受性。
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