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Numerical Simulation of Thermal Fly-Height Control Slider Touchdown Test for Achieving Ideal Subnanometer Clearance Head Slider Touchdown Behaviors

机译:热蝇高控制滑块触阵测试的数值仿真,实现理想亚室仪间隙磁头滑块触阵行为

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Understanding the dynamics and instability of a thermal fly-height control (TFC) head slider close to and at touchdown (TD) on a magnetic recording disk is essential for developing a head slider with a clearance of similar to 0.5 nm to enhance the recording density of hard disk drives. This paper presents a theoretical simulation of a practical TD test, performed by continuously increasing the head protrusion according to the TFC power, and demonstrates ideal TD behaviors to be established in design guidelines for an effective head slider-suspension-disk system. The effects of the air-bearing stiffness and magnitude of disk waviness (DW) on the TD behaviors and their repeatability were extensively investigated. Comparison with the experimental TD behaviors of effective head sliders demonstrated that the different TD behaviors at different radial disk positions could be explained by the numerical TD simulation of the DW-excited response of a single-degree-of-freedom slider model. Possible reasons for the discrepancies between the experimental and simulation results in the light contact state were analyzed in detail, and a method of designing the head-disk interface conditions to achieve a head spacing of similar to 0.5 nm was developed. In addition, the deviation from the ideal TD behavior according to the DW magnitude was examined. The TD behavior of a head slider on a disk with a perfectly bonded lubricant was theoretically clarified, and the potential for realizing a head slider with reduced clearance was assessed.
机译:了解磁记录盘上的触摸和触摸触控器(TFC)的动态和不稳定性(TFC)磁头滑块对磁记录盘上的触摸(TD)是必不可少的,对于开发具有类似于0.5nm的磁头滑块来提高记录密度硬盘驱动器。本文提出了一种实用TD试验的理论模拟,通过根据TFC电源连续增加头部突起进行,并演示了在有效头滑块悬架盘系统的设计指南中建立的理想TD行为。广泛地研究了TD行为对Td行为的空气承载刚度和磁盘波纹(DW)的影响及其可重复性。与有效头滑块的实验TD行为的比较证明了不同径向盘位置的不同TD行为可以通过单级自由度滑块模型的DW激发响应的数值TD仿真来解释。详细分析了实验和模拟之间的差异的可能原因,并详细分析了光接触状态,并且开发了设计头部盘界面条件以实现类似于0.5nm的头部间距的方法。另外,检查了根据DW幅度的理想TD行为的偏差。理论上阐明了具有完美粘合的润滑剂的盘上的头滑块的TD行为,评估了实现具有降低的间隙的头滑块的电位。

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