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Design of a curved stabilizer with damping orifices for reducing axial run-out of flexible optical disks

机译:带有阻尼孔的弯曲稳定器的设计,可减少柔性光盘的轴向跳动

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摘要

The idea of a curved stabilizer with damping orifices is applied to the high speed rotating flexible optical disk system in order to reduce the disk deflection and the axial run-out of the disk. A track of orifices is drilled along the edge of a curved annular stabilizer. The effects of the diameter and length of each orifice, number of orifices, and radial position of the orifices on the reduction of axial run-out of the disk are investigated experimentally together with the effects of the inner radius for the air flow, initial gap height, and rotational speed. The experimental results showed that the curved stabilizer with orifices can reduce the axial run-out of the disk at 10,000 rpm within 10 µm over the entire span of the disk.
机译:具有阻尼孔的弯曲稳定器的思想被应用于高速旋转的柔性光盘系统,以减少光盘的挠曲和光盘的轴向跳动。沿着弯曲的环形稳定器的边缘钻出孔口轨迹。实验研究了每个孔的直径和长度,孔的数量以及孔的径向位置对减少磁盘轴向跳动的影响,以及内径对气流,初始间隙的影响高度和转速。实验结果表明,带有孔的弯曲稳定器可以在整个磁盘范围内以10,000 rpm的速度在10 µm内减小磁盘的轴向跳动。

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