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A numerical investigation of different touchdown patterns of thermal-flying-height-control sliders

机译:热飞行高度控制滑块的不同触地模式的数值研究

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摘要

In this study we employ a numerical approach to explore the touchdown patterns of a thermal-flying-height-control (TFC) slider. Depending on the roughness of the head disk interface and thickness of the lubricant layer a TFC slider can experience different stages during touchdown. Three different touchdown patterns are shown. With a rougher interface profile the slider smoothly transfers from a flying stage to a sliding stage. With an intermediate smooth interface profile the slider experiences a flying-bouncing-sliding transition. With the smoothest interface the slider goes through a flying-bouncing-surfing-sliding transition. Different stages are characterized by different slider dynamics and slider-disk contact status. The different touchdown dynamic patterns shown here can result in a significant difference in the easiness of successful touchdown detection. The general approach proposed here may also be applied to investigate the effects of other important head disk interface factors, e.g., air bearing surface design, heater, suspension, etc. on the slider's touchdown dynamic behaviors.
机译:在这项研究中,我们采用一种数值方法来探索热飞行高度控制(TFC)滑块的触地模式。根据磁头磁盘界面的粗糙度和润滑剂层的厚度,TFC滑块在触地过程中可能会经历不同的阶段。显示了三种不同的触地得分模式。通过更粗糙的界面轮廓,滑块可以从飞行阶段平稳地过渡到滑动阶段。通过中间平滑的界面轮廓,滑块可实现弹跳-滑动过渡。通过最平滑的界面,滑块将经历弹跳,冲浪,滑动过渡。不同的阶段具有不同的滑块动态特性和滑块-磁盘接触状态。此处显示的不同触地动态模式可能会导致成功触地检测的难易程度发生重大差异。这里提出的通用方法也可以用于研究其他重要的磁头磁盘界面因素,例如,空气轴承表面设计,加热器,悬架等对滑块触地动力学行为的影响。

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