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Air bearing dynamics of sub-ambient pressure sliders during dynamic unload

机译:动态卸载过程中低于环境压力的滑块的空气轴承动力学

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The increasing effort to use sub-ambient pressure air bearing sliders for dynamic load/unload applications in magnetic hard disk drives requires desirable air bearing characteristics during the dynamic unload event. This paper establishes airbearing design criteria for achieving a smooth head unload performance, through a correlation study between the modeled unloading air bearing dynamics of two 30 percent proximity recording sub-ambient pressure sliders and motion sequence of the samesliders by a high-speed video camera. It is shown that the air bearing lifting force quickly responds to changes in fly height and pitch, while the suction force is relatively resistant to changes in fly height, but somewhat more sensitive to changes inpitch. This unique distinction results in different decreasing rates between the air bearing lifting and suction forces during the unload process, creating a strong dependence of the unloading characteristics on the location of the suction cavities. Boththe modeled unloading air bearing dynamics and experimentally recorded motion sequence illustrate that a toward-trailing-edge located suction force acts to pitch the slider up, while the moment produced by a toward-leading-edge located suction forceinduces a negative pitch motion, resulting in an excessive flexure deformation and dimple separation. Therefore, placing the suction cavities towards the trailing edge offers a reliable unloading performance for the sub-ambient pressure air bearingsliders.
机译:将低于环境压力的空气轴承滑块用于磁性硬盘驱动器中的动态加载/卸载应用的工作越来越多,这需要在动态卸载事件期间具有理想的空气轴承特性。本文通过对两个30%接近记录低于环境压力滑块的卸载空气轴承动力学特性和高速摄像机对相同滑块的运动序列之间的相关性研究,建立了实现平稳的磁头卸载性能的轴承设计标准。结果表明,空气轴承的提升力快速响应飞行高度和俯仰的变化,而吸力相对抵抗飞行高度的变化,但对俯仰变化更敏感。这种独特的区别会导致在卸载过程中空气轴承的提升力和吸力之间的降低率有所不同,从而导致卸载特性对吸气腔位置的强烈依赖。建模的卸载空气轴承动力学和实验记录的运动序列都表明,位于后缘的吸力起到使滑块向上倾斜的作用,而位于前缘的吸力所产生的力矩则引起负的俯仰运动,从而导致过度的弯曲变形和酒窝分离。因此,将吸气腔朝后缘放置可为低于环境压力的空气轴承滑块提供可靠的卸载性能。

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