Laser confocal measurement system for curvature radius of lenses based on grating ruler

Jiwei Tian, Yun Wang, Nan Zhou, Weirui Zhao, Weiqian Zhao
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Abstract

In the modern optical measurement field, the radius of curvature (ROC) is one of the fundamental parameters of optical lens. Its measurement accuracy directly affects the other optical parameters, such as focal length, aberration and so on, which significantly affect the overall performance of the optical system. To meet the demand of measurement instruments for radius of curvature (ROC) with high accuracy in the market, we develop a laser confocal radius measurement system with grating ruler. The system uses the peak point of the confocal intensity curve to precisely identify the cat-eye and confocal positions and then measure the distance between these two positions by using the grating ruler, thereby achieving the high-precision measurement for the ROC. The system has advantages of high focusing sensitivity and anti-environment disturbance ability. And the preliminary theoretical analysis and experiments show that the measuring repeatability can be up to 0.8 um, which can provide an effective way for the accurate measurement of ROC.
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基于光栅尺的激光共聚焦透镜曲率半径测量系统
在现代光学测量领域,曲率半径(ROC)是光学透镜的基本参数之一。其测量精度直接影响到其他光学参数,如焦距、像差等,从而显著影响光学系统的整体性能。为满足市场对曲率半径(ROC)高精度测量仪器的需求,研制了一种光栅尺激光共聚焦半径测量系统。该系统利用共焦强度曲线的峰值点精确识别猫眼和共焦位置,然后利用光栅尺测量这两个位置之间的距离,从而实现对ROC的高精度测量。该系统具有调焦灵敏度高、抗环境干扰能力强等优点。初步的理论分析和实验表明,测量重复性可达0.8 μ m,为准确测量ROC提供了有效途径。
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