标题: | 近场光碟机的空气轴承分析与实验 Air Bearing Analysis and Experiments Air Bearing Analysis and Experiments |
作者: | 王宣智 Hsuan Chih Wang 吕宗熙 Tzong Shi Liu 机械工程学系 |
关键字: | 空气轴承;近场光碟机;Air Bearing;Near-Field Optical Disk Drives |
公开日期: | 2000 |
摘要: | 近场光学原理的应用得以大幅提升光碟片的容量。但因近场光学必须在极接近反射面处,约五十奈米的距离做读取的动作,所以采用了类似硬碟机飞行读写头的架构,利用飞行读写头与光碟片间的空气轴承来维持极低的稳定飞行高度。但主轴马达的高速转动引起碟片的振动、音圈马达寻轨时造成负荷臂的变形和读取头与光碟片间的流场产生变化,都会影响飞行姿态与高度。本研究旨在探讨近场光碟机飞行读写头与光碟片介面之磨润问题,首先建立悬吊组件与音圈马达之动态分析,了解音圈马达寻轨时所造成的悬吊组件之变形;再进行主轴马达与光碟片之动态分析,最后由修正雷诺方程式建立飞行读写头与光碟片介面之简化流场模型,分析飞行高度与姿态的变化。本研究并且执行实验,利用雷射都卜勒干涉仪的飞行高度量测数据比较模拟结果。 A near-field optical disk drive uses near-field optics to read/write disk data with a flying height at about 50 nm. However, there are some reasons that affect the flying height and attitude, such as disk vibration due to rotation of the spindle motor, deformation of the load-arm causing by a voice coil motor (VCM), fluid flow between the flying head and disk. This research aims to investigate dynamics of the air bearing between the flying head and disk. First, dynamic models of the suspension assembly and VCM are established to calculate deformation of the suspension assembly during seeking. This study employs a simplified fluid flow model based on a modified Reynolds equation for the air bearing to calculate variation of flying height. Finally, simulation results are compared by measurement results using a laser Doppler vibrometer. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT890489009 http://hdl.handle.net/11536/67507 |
显示于类别: | Thesis |