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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Study on Design and Diamond Turning of Optical Freeform Surface for Progressive Addition Lenses
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Study on Design and Diamond Turning of Optical Freeform Surface for Progressive Addition Lenses

机译:渐进式透镜光学自由形状面设计与钻石转动研究

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摘要

Optical freeform surface components have attracted much attention due to their high degree of design freedom and small size. However, the design and processing difficulty of such components limit its wide application in optics industry. In recent years, diamond turning has been considered an efficient method for processing optical freeform surfaces, but the research on tool path generation of this processing method is not systematic. Progressive addition lens (PAL) is a typical optical freeform surface and is widely used to correct people’s vision problems. Firstly, this paper introduces a method of designing PAL. Then, an optimized tool path generation method for diamond turning of the optical freeform surface is proposed, the equal angle method is used to select the discrete points, and a tool nose radius compensation method suitable for both slow slide servo (SSS) and fast tool servo (FTS) is adopted. Finally, the turning experiment is carried out with a single point diamond lathe, and a PAL surface with a roughness of 0.087?μm was obtained. The power and astigmatism distributions were measured using a Rotlex freeform verifier to verify the rationality of the optical design.
机译:由于它们的高度设计自由度和体积小,光学自由形状表面部件引起了很多关注。然而,这些组件的设计和处理难度限制了光学行业的广泛应用。近年来,钻石转动已被认为是一种有效的处理光学自由形状表面的方法,但该处理方法的刀具路径生成的研究不是系统的。渐进式加法镜片(PAL)是典型的光学自由形状表面,广泛用于纠正人们的视力问题。首先,本文介绍了一种设计PAL的方法。然后,提出了一种用于光学自由形状表面的金刚石转动的优化工具路径生成方法,使用相等的角度方法选择离散点,以及适用于慢速滑动伺服(SSS)和快速工具的刀尖半径补偿方法采用伺服(FTS)。最后,用单点金刚石车床进行转动实验,获得粗糙度为0.087Ωμm的PAL表面。使用Rotlex Freeform Verifier测量功率和散光分布,以验证光学设计的合理性。

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