Speck Alexis, Zelzer Benedikt, Kannengießer Marc, Langenbucher Achim, Eppig Timo
Experimental Ophthalmology, Saarland University, Homburg/Saar, Germany.
Appl Opt. 2013 Jun 20;52(18):4279-86. doi: 10.1364/AO.52.004279.
Manufacturing spherical, aspheric, and freeform surfaces requires testing throughout the development and production process. State-of-the-art topography measurement is limited in applicability for intraocular lenses (IOLs), and there is no dedicated commercial surface measurement system available for freeform IOLs. The purpose of this work was to validate a deflectometric setup for surface measurement, detection of defects, and shape fidelity analysis for the development and production of IOLs. The setup is based on a phase measuring deflectometer with a field-of-view of 80 mm×80 mm and a mean repetition accuracy of 1.6·10(-3) D. The technique is suitable for detection of global and local surface errors, extracted from geometry and topography analysis. For validation according to DIN ISO 5725:2002, spherical IOLs with radii of curvature of 10 and 20 mm, a commercial aspheric IOL, and single-sided freeform IOL samples were used.
制造球面、非球面和自由曲面需要在整个开发和生产过程中进行检测。目前最先进的形貌测量对于人工晶状体(IOL)的适用性有限,并且没有专门用于自由曲面IOL的商业表面测量系统。这项工作的目的是验证一种用于IOL开发和生产的表面测量、缺陷检测和形状保真度分析的偏折测量装置。该装置基于一台相移测量偏折仪,其视场为80 mm×80 mm,平均重复精度为1.6·10(-3) D。该技术适用于检测从几何形状和形貌分析中提取的全局和局部表面误差。为了根据DIN ISO 5725:2002进行验证,使用了曲率半径为10和20 mm的球面IOL、一种商用非球面IOL以及单面自由曲面IOL样品。