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Optimization of Air Bearing Slider Design

机译:空气轴承滑块设计的优化

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摘要

Hard disk drives continue to increase the data storage density. The parameters of the head slider flying attitude must satisfy very strict performance goals. This paper focuses on the topic of the simulated annealing algorithm when it is applied to the problem of slider air bearing design in hard disk drives. The objective is to minimize the static flying height, to keep the pitch angle within a reasonable range, and to minimize the roll angle. The design variables include recess depth and geometry configuration of the slider air bearing surface. A typical tri-pad slider was taken as the physical model to demonstrate the validity of the optimal algorithm. Results show that simulated annealing is efficient for the optimization of the slider air bearing design. The static air bearing characteristics were enhanced significantly.
机译:硬盘驱动器继续增加数据存储密度。磁头滑块飞行姿态的参数必须满足非常严格的性能目标。本文将模拟退火算法应用于硬盘驱动器中的滑块空气轴承设计问题时,将其作为重点。目的是最小化静态飞行高度,将俯仰角保持在合理范围内,并最小化侧倾角。设计变量包括凹槽深度和滑块空气轴承表面的几何形状。以一个典型的三板滑块作为物理模型来证明最佳算法的有效性。结果表明,模拟退火对于优化滑块空气轴承设计是有效的。静态空气轴承特性大大提高。

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