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Study of Polishing Technology for Aspheric Surface with High Efficiency

机译:非球面高效抛光技术研究

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摘要

In recent years, for the compact system structure of aspheric lens, it has improved the image quality and excellent performance. More and more applications, in a variety of precision instruments, require the aspheric surface machining precision, fast, batch production. In order to further seek the effective method of aspheric surface processing, the aspheric NC machining technology is put forward. Therefore, this paper studies the aspheric surface in NC machining process of milling molding, polishing and polishing equipment related process parameters. Focusing on the milling process of various parameter settings, the resilient mold and small grinding head fixed combination method of polishing is introduced into the milling feedback compensation, solution of the elastic die polishing on the profile accuracy of destruction and processing to meet the requirements of the drawings of components: the contour measurement method on the profile accuracy of testing and surface shape accuracy of 0.5924um.
机译:近年来,由于非球面透镜的紧凑的系统结构,它提高了图像质量和优异的性能。越来越多的应用,在各种精密仪器中,要求非球面加工的精度,快速,批量生产。为了进一步寻求有效的非球面加工方法,提出了非球面数控加工技术。因此,本文研究了非球面在数控加工中的铣削成型,抛光和抛光设备的相关工艺参数。着眼于各种参数设置的铣削过程,将弹性模具和小磨头固定抛光的组合方法引入铣削反馈补偿中,解决了弹性模具抛光对轮廓破坏和加工精度的要求,以满足加工要求。零件图:轮廓测量法对轮廓精度的测试和表面形状精度为0.5924um。

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