Kong Lingbao, Ma Yingao, Ren Mingjun, Xu Min, Cheung Chifai
Shanghai Engineering Research Center of Ultra-Precision Optical Manufacturing, Fudan University, Shanghai, China.
Shanghai United Instrument Component Co., Ltd, Shanghai, China.
Sci Prog. 2020 Jan-Mar;103(1):36850419880112. doi: 10.1177/0036850419880112. Epub 2019 Oct 10.
Compound freeform surfaces are widely used in bionic and optical applications. The manufacturing and measurement of such surfaces are challenging due to the complex geometry with multi-scale features in a high precision level with sub-micrometer form accuracy and nanometer surface finish. This article presents a study of ultra-precision machining and characterization of compound freeform surfaces. A hybrid machining process by combining slow slide servo and fast tool servo is proposed to machine compound freeform surfaces. The machining process for this hybrid tool servo is explained, and tool path generation is presented. Then, a normal template-based matching and characterization method is proposed to evaluate such compound freeform surfaces. Experimental studies are undertaken to machine a compound freeform surface using the proposed method based on a four-axis ultra-precision machine tool. The machined compound freeform surface is also measured and characterized by the proposed analysis and characterization method. The experimental results are presented, and the machining errors for compound freeform surfaces are also discussed.
复合自由曲面在仿生和光学应用中有着广泛的应用。由于其复杂的几何形状,具有多尺度特征,且要求达到亚微米级的形状精度和纳米级的表面光洁度,因此这类曲面的制造和测量具有挑战性。本文介绍了对复合自由曲面的超精密加工及表征的研究。提出了一种结合慢滑伺服和快速刀具伺服的混合加工工艺来加工复合自由曲面。阐述了这种混合刀具伺服的加工过程,并给出了刀具路径生成方法。然后,提出了一种基于法线模板的匹配和表征方法来评估此类复合自由曲面。基于四轴超精密机床,采用所提出的方法对复合自由曲面进行加工的实验研究。利用所提出的分析和表征方法对加工后的复合自由曲面进行测量和表征。给出了实验结果,并讨论了复合自由曲面的加工误差。