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Machining of Smooth Optical Surfaces by Ultraprecision Milling with Compensated Feeding Mechanisms

机译:带有补偿进给机构的超精密铣削加工光滑的光学表面

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摘要

Waviness tends to be generated on cut surfaces even when an ultraprecision milling machine with a single-crystal diamond tool is used. The present study deals with the reduction of waviness by controlling the feeding mechanisms of the milling machine. A machining experiment on a spherical surface of a mirror element in a mirror array showed that the machined surface exhibited periodic waviness with a height of 30 run and a wavelength of 300 μm. To investigate the reason for such waviness, a slope was machined under simultaneous multiaxis motion control of the feeding mechanisms of the milling machine. This proved that the interpolation errors of the encoders used in the milling machine produce the waviness on the machined surface when machining is carried out under simultaneous multiaxis motion control. To reduce such interpolation errors, the positioning accuracy of the machine stages was measured using a laser interferometer. On the basis of the measured results, the feeding mechanisms were compensated such that the positioning errors including the interpolation errors were corrected. Using the machine with the compensated feeding system, a mirror element was shaped. Consequently, waviness was reduced and the surface smoothness was less than 10 nm, demonstrating that such compensation can produce superior optical surfaces.
机译:即使使用带有单晶金刚石工具的超精密铣床,也容易在切割面上产生波纹。本研究通过控制铣床的进给机制来解决波纹度的降低。在镜阵列中的镜元件的球形表面上的机加工实验表明,机加工的表面表现出周期性的波纹,其高度为30nm,波长为300μm。为了研究这种起伏的原因,在铣床进给机构的同时多轴运动控制下加工了一个坡度。这证明了,在同时多轴运动控制下进行加工时,铣床中使用的编码器的插补误差会在加工表面上产生波纹。为了减少这种内插误差,使用激光干涉仪测量了机器平台的定位精度。根据测量结果,对进给机构进行补偿,以便校正包括插补误差在内的定位误差。使用带有补偿进纸系统的机器,可以对镜面元件进行成型。因此,降低了波纹度并且表面平滑度小于10nm,表明这种补偿可以产生优良的光学表面。

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