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首页> 外文期刊>Journal of Tribology >Effects of Moving Three-Dimensional Nano-Textured Disk Surfaces on Thin Film Gas Lubrication Characteristics for Flying Head Slider Bearings in Magnetic Disk Storage
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Effects of Moving Three-Dimensional Nano-Textured Disk Surfaces on Thin Film Gas Lubrication Characteristics for Flying Head Slider Bearings in Magnetic Disk Storage

机译:移动三维纳米纹理化磁盘表面对磁盘存储中飞头滑块轴承薄膜气体润滑特性的影响

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摘要

This paper describes the effects of moving three-dimensional nano-textured or patterned disk surfaces on thin film gas lubrication characteristics for flying head slider bearings in magnetic disk storage. In order to perform the most realistic simulation of slider flying characteristics over the textured disk surfaces, the direct numerical simulation method is used, instead of using various averaging techniques. Therefore, a deterministic description of the texture is adopted in this study. A dynamic analysis of the slider responses can be carried out, by solving the air bearing equation based on the linearized Boltzmann equation with the equations of motion of the slider under the excitation of the moving texture simultaneously. The slider's dynamic responses to moving spaced bumps disk surfaces, including both the circumferentially and radially ridged disk surfaces, are computed systematically and basic slider dynamics over patterned disk surfaces is investigated. The effects of the texture area ratios (= texture width/texture pitch) in the circumferential and radial directions on the slider spacing dynamic modulations as well as the slider static flying characteristics are also studied Furthermore, the effects of three kinds of texture patterns on the slider flying characteristics are investigated. Considering those simulation results, the design optimization for the texture pattern that minimizes not only the slider static flying height increase but also spacing dynamic modulations is discussed in order to achieve ultra-high density proximity magnetic recording.
机译:本文介绍了移动三维纳米纹理化或有图案的磁盘表面对薄膜气体润滑特性的影响,该特性对磁盘存储中的飞头滑块轴承有帮助。为了在带纹理的磁盘表面上执行滑块浮动特性的最现实的模拟,使用直接数值模拟方法,而不是使用各种平均技术。因此,本研究采用了对纹理的确定性描述。通过基于线性化的玻尔兹曼方程求解空气轴承方程,同时在运动纹理的激发下,通过滑块的运动方程,可以对滑块响应进行动力学分析。系统地计算了滑块对移动间隔的凹凸盘表面(包括圆周和径向脊形磁盘表面)的动态响应,并研究了带图案的磁盘表面上的基本滑块动力学。还研究了圆周方向和径向方向的纹理面积比(=纹理宽度/纹理间距)对滑块间距动态调制以及滑块静态飞行特性的影响。此外,三种纹理图案对滑块的动态影响。研究了滑块的浮动特性。考虑到这些模拟结果,讨论了纹理图案的设计优化,该设计不仅使滑块静态飞行高度的增加最小,而且使间距动态调制最小化,以实现超高密度的接近磁记录。

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