Microtribodynamics of pseudo-contacting head-disk interfaces intended for 1 Tbit/in/sup 2/

Sung-Chang Lee, A. Polycarpou
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引用次数: 38

Abstract

A nonlinear dynamic model that includes realistic roughness, adhesion and friction, as well as the dynamics of a flying and contacting HDI was developed to characterize a pseudo-contacting HDI, intended for 1 Tbit/in/sup 2/. A pseudo-contacting recording system is designed to fly at few nanometers using an air-bearing and at the same time some features of the air-bearing surface are designed to contact with the rotating disk during operation. The model was favorably compared with flyability measurements, and then applied to a pseudo-contacting interface to investigate adhesion, friction, and contact forces as well as bouncing vibration. Contrasting earlier studies adopting a simple Coulomb friction, the friction model used in this work calculates the friction force at the interface, accounting for roughness and adhesion. It was found that unlike a fully flying HDI, adhesion plays a positive role in attaining pseudo-contact recording by reducing bouncing vibrations.
1 Tbit/in/sup / 2/的伪接触头盘接口的微摩擦动力学
建立了一个非线性动力学模型,包括真实的粗糙度、附着力和摩擦,以及飞行和接触HDI的动力学,以表征拟接触HDI,预期为1 Tbit/in/sup / 2/。设计了一种利用空气轴承在几纳米范围内飞行的伪接触式记录系统,同时设计了空气轴承表面在工作时与旋转圆盘接触的一些特征。将该模型与可飞性测量结果进行了比较,然后将其应用于伪接触界面,研究了附着力、摩擦力、接触力以及弹跳振动。与早期采用简单库仑摩擦的研究相比,本工作中使用的摩擦模型计算了界面处的摩擦力,考虑了粗糙度和附着力。研究发现,与完全飞行的HDI不同,粘附性通过减少弹跳振动在实现伪接触记录方面发挥了积极作用。
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