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NONLINEAR THERMAL PROTRUSION AND SLIDER DISK CONTACT FORCES

机译:非线性热突起和滑盘接触力

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摘要

Some of the recently shipped hard disk drives have a new technology to actively control the flying height between slider and disk. The slider to disk spacing is controlled by thermal protrusion actuation using a small heater coil which is located close to the read write element at the trailing end of the slider. By applying an electric current to the heater coil, the slider's trailing end protrudes towards the disk and can be driven into contact with sufficiently high heating power. The contact force and the thermal protrusion efficiency is mainly controlled by air bearing design. In this paper we want to discuss the trade offs in air bearing design to achieve low contact force and high thermal actuation efficiency. We have done both numerical simulation and experimental measurements to investigate contact force and air bearing stiffness. Typically a softer air bearings will produce less contact force but usually exhibit worse flying height tolerances We have found a nonlinear clearance change with applied heater power. At closer spacings, the pressure peak increases dramatically leading to reduced actuation efficiency. The actuation efficiency may also vary at different skew angles. For "calibration purpose slider to disk touchdown requires contact. Due to different actuation efficiencies at different radii different contact forces are estimated.
机译:最近发货的某些硬盘驱动器具有一项新技术,可以主动控制滑块和磁盘之间的浮动高度。通过使用小的加热器线圈的热突起致动来控制滑块到磁盘的间隔,该加热器线圈位于滑块后端处靠近读写元件的位置。通过向加热器线圈施加电流,滑块的尾端朝磁盘突出,并可以驱动成与足够高的加热功率接触。接触力和热突起效率主要由空气轴承设计控制。在本文中,我们要讨论在空气轴承设计中要取得低接触力和高热激励效率的权衡。我们已经进行了数值模拟和实验测量,以研究接触力和空气轴承刚度。通常,较软的空气轴承会产生较小的接触力,但通常表现出较差的浮动高度公差。我们发现,施加加热器功率会导致非线性游隙变化。在更近的间距处,压力峰值急剧增加,导致促动效率降低。致动效率也可以在不同的偏斜角处变化。为了“校准目的,滑块到磁盘的触地需要接触。由于在不同半径下的不同致动效率,估计了不同的接触力。

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