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Injection Molding Technology for High Speed Optical Disk

机译:高速光盘的注射成型技术

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摘要

Recently great efforts have been made to increase the data access speed and the data storage density of the optical memory disks such as CD-ROM, DVD, ASMO disk, etc. In the viewpoint of increasing the data access speed of the optical disks, it is of great importance to characterize accurately the vibration phenomena of the rotating disk, which is related to the critical speed and the characteristics of the frequency response. In this paper, towards the goal of increasing the data access speed of the optical disks, we have proposed a novel method for improved characteristics of disk vibration without deteriorating any other specification for the 0optical memory disks such as geometrical and optical characteristics. A possible idea to improve the vibration characteristics of the optical disk is that the tensile initial stress in the radial direction is to be imposed within the optical disk on purpose. By the synergy effect from the residual (initial) tensile stress frozen within the optical disk combined with the stress induced by the centrifugal force occurring in rotating the optical disk, the stiffness of the disk would increase to have a stronger resistance to the disturbance resulting in increase of critical speed. With such a synergy effect in mind, modifications related to the optical disk substrate design, injection mold design and processing conditions of injection molding were presented and partially evaluated. The computer simulation and experiments indicate that the suggested ideas clearly improved the characteristics of disk vibration without deteriorating any other specification for the optical memory disks.
机译:近来,已经做出了很大的努力来提高诸如CD-ROM,DVD,ASMO盘等的光学存储盘的数据访问速度和数据存储密度。从提高光盘的数据访问速度的角度来看,它准确表征转盘的振动现象至关重要,这与临界速度和频率响应的特性有关。在本文中,为了提高光盘的数据访问速度,我们提出了一种新颖的方法来改善磁盘振动特性,而又不会降低0光学存储磁盘的任何其他规格,例如几何和光学特性。改善光盘的振动特性的一种可能的想法是,有目的地在光盘内施加径向上的拉伸初始应力。通过光盘中冻结的残余(初始)拉伸应力与光盘旋转时产生的离心力所产生的应力相结合产生的协同效应,光盘的刚度将提高,从而具有更强的抗干扰能力,临界速度的提高。考虑到这种协同效应,提出并部分评估了与光盘基板设计,注塑模设计和注塑工艺条件有关的修改。计算机仿真和实验表明,所提出的想法明显改善了盘振动的特性,而不会降低光学存储盘的任何其他规格。

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