首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology >Air-bearing surface design of an optical flying head considering dynamic characteristics
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Air-bearing surface design of an optical flying head considering dynamic characteristics

机译:考虑动态特性的光学飞行头的气浮表面设计

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The near-field recording (NFR) system requires the clearance between a slider and disk surface in order to maintain the significant effect on the evanescent wave. The optical flying head (OFH) should also have a small pitch to control the contamination effect. The larger the gap between the leading edge of the slider and the disk, the more the particles come into solid immersion lens (SIL), thereby causing a negative influence on the NFR system. However, the flying stability turns out to be ineffective as the pitch angle reduces. Accordingly, it is necessary to consider dynamic characteristics of OFH in air-bearing surface (ABS) design. The objective of the ABS design is such that the flying height (FH) of the OFH should be as flat as possible over the inner diameter (ID) and outer diameter (OD) of the disk, and FH should be controlled at about 50 nm for both ID and OD in the static state. The better NFR system can also be obtained by a smaller modulation. The numerical optimization in the static state is first carried out, and the dynamic optimization is subsequently performed based on the static optimal model. The dynamic simulation and experiments are additionally performed to verify the proposed design optimization results.
机译:近场记录(NFR)系统需要在滑块和磁盘表面之间留出间隙,以保持对e逝波的显着影响。光学飞行头(OFH)的间距也应较小,以控制污染效果。滑块的前缘和磁盘之间的间隙越大,越多的颗粒进入固体浸没透镜(SIL),从而对NFR系统产生负面影响。然而,随着俯仰角的减小,飞行稳定性证明是无效的。因此,有必要在空气支承表面(ABS)设计中考虑OFH的动态特性。 ABS设计的目的是使OFH的浮动高度(FH)在磁盘的内径(ID)和外径(OD)上尽可能平坦,并且FH应控制在约50 nm静态的ID和OD。更好的NFR系统也可以通过较小的调制获得。首先进行静态数值优化,然后基于静态最优模型进行动态优化。另外还进行了动态仿真和实验,以验证所提出的设计优化结果。

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