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Influence of servo characteristics on crack generation in ultra-precision grinding of optical glass lenses

机译:伺服特性对光学玻璃镜片超精密磨削中裂纹产生的影响

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摘要

Generally, manufacturing process of optical glass lenses, which are used for single lens reflex cameras, is classified into grinding and polishing for removing cracks generated by grinding. Thus, it is desired not to generate the cracks in grinding as much as possible. Because grinding condition with cracks differs depending on the material properties of the workpiece, suitable grinding condition needs to be selected based on a lot of experimental verifications. In addition, the controller’s gain of the tool spindle with grinding wheel may be intentionally set to low value in ultra-precision grinding. Thus, the spindle speed may decrease even under servo control because of grinding load. In this study, the influence of servo characteristics on crack generation is evaluated in ultra-precision grinding of optical glass lenses. Concretely, an optical glass lens was machined using an ultra-precision 5-axis grinding machine and servo information of tool spindle was monitored during the process. Comparison of the obtained servo information and the surface observation of the workpiece revealed that the spindle speed decreased and the number of the cracks increased at the outside of the workpiece. The experimental results suggested the possibility of estimating the grinding load and predicting the surface quality by monitoring the variation in the spindle speed.
机译:通常,用于单镜头反光照相机的光学玻璃透镜的制造过程分为打磨和抛光以去除由打磨产生的裂纹。因此,希望在磨削时尽可能不产生裂纹。由于裂纹的磨削条件因工件的材料特性而异,因此需要根据大量的实验验证来选择合适的磨削条件。此外,在超精密磨削中,可以故意将带有砂轮的刀具主轴的控制器增益设置为较低的值。因此,由于磨削负荷,即使在伺服控制下,主轴转速也可能降低。在这项研究中,在光学玻璃镜片的超精密磨削中评估了伺服特性对裂纹产生的影响。具体地,使用超精密五轴磨床对光学玻璃镜片进行加工,并在此过程中监视刀具主轴的伺服信息。比较所获得的伺服信息和工件的表面观察结果表明,主轴转速降低了,而工件外部的裂纹数量增加了。实验结果表明,可以通过监视主轴转速的变化来估计磨削负荷并预测表面质量。

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